Treatment of irradiated skin using extracellular vesicle compositions

By using a specific combination of microRNAs or proteins carried by CD63+, CD9-, and CD81- extracellular vesicles and administering it intravenously, the problem of fibrosis and hardening of the irradiated skin in radiation fibrosis syndrome has been resolved, achieving significant therapeutic effects.

CN122497513APending Publication Date: 2026-07-31DIRECT BIOLOGICS LLC
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
DIRECT BIOLOGICS LLC
Filing Date
2024-11-06
Publication Date
2026-07-31

AI Technical Summary

Technical Problem

Current treatments have limited efficacy for radiation fibrosis syndrome (RFS), and there is a lack of safe and effective treatments, especially for fibrosis and hardening of the irradiated skin.

Method used

Extracellular vesicles (EVs) containing specific CD63+, CD9-, and CD81- cells, and carrying specific microRNA or protein compositions, are administered intravenously to treat irradiated skin and fibrosis.

Benefits of technology

It significantly improves fibrosis, hardening, thickening and other related symptoms of irradiated skin, providing an effective treatment for radiation fibrosis syndrome.

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Abstract

This article discloses a method for treating radiation-induced skin damage, including the application of extracellular vesicles and protein compositions.
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Description

[0001] Cross-references This application claims the benefit of U.S. Provisional Patent Application No. 63 / 596,953, filed November 7, 2023, and U.S. Provisional Patent Application No. 63 / 712,045, filed October 25, 2024, each of which is incorporated herein by reference in its entirety. Background Technology

[0002] Radiation-induced fibrosis (RFS), or radiation-induced fibrosis (RIF), occurs within 4–12 months of radiation therapy and progresses over several years. Any tissue exposed to cumulative ionizing beams can be affected; in the skin, fibrosis and hardening occur with thickening and induration of the tissue, potentially adhering to underlying tissues. The syndrome progresses through a series of distinct mechanistic stages, and RFS is triggered by radiation damage to the DNA of the target and adjacent tissues, along with the generation of harmful oxygen and nitrogen free radicals. Months to years after radiation, the breast may experience skin retraction with fibrosis, glandular atrophy, dysgalactia, pulmonary fibrosis, and pericardial disease. Fibrosis can lead to RFS, a permanent alteration of breast tissue, and there is no single therapy for it. Approved drug and symptomatic treatments are limited in effectiveness, and the condition requires additional therapies to reverse breast tissue fibrosis. There is a need for safe and effective treatment for radiation-induced fibrosis. Summary of the Invention

[0003] In some respects, this article provides a method for treating irradiated skin in a subject in need, the method comprising administering to the subject a composition comprising one or more extracellular vesicles (EVs); wherein at least 80% of the EVs are CD63+, CD9-, or CD81-.

[0004] In some respects, this article provides a method for treating irradiated skin in a subject in need, the method comprising administering to the subject a composition comprising one or more extracellular vesicles (EVs); wherein the one or more EVs comprise hsa-miR-125b-5p, hsa-miR-145-5p, hsa-miR-191-5p, hsa-miR-199a-3p, hsa-miR-21-5p, hsa-miR-221-3p, hsa-miR-222-3p, hsa-miR-2 The miRNA sequences are 2-3p, hsa-miR-23a-3p, hsa-miR-23b-3p, hsa-miR-27a-3p, hsa-miR-27b-3p, hsa-miR-29a-3p, hsa-miR-29c-3p, hsa-miR-31-5p, hsa-miR-320a, hsa-miR-34a-5p, hsa-miR-423-3p, hsa-miR-424-5p, or hsa-miR-940, or combinations of two or more thereof. The miRNA sequences are available at https: / / www.mirbase.org / .

[0005] In some respects, this article provides a method for treating irradiated skin in a subject in need, the method comprising administering to the subject a composition comprising: ferritin, IGFBP-4 (insulin-like growth factor binding protein-4), IL-1 R6 (interleukin-1 receptor 6), LAMP2 (lysosome-associated membrane glycoprotein 2), bIG-H3 (transforming growth factor-β-inducible protein ig-h3), GPR115 (adhesion G protein-coupled receptor F4), CD63 antigen, CD109 antigen, serine protease inhibitor F1 (serpin F1) (pigmented epithelium-derived factor), IGFBP-6 (insulin-like growth factor binding protein-6), HS3ST4 (heparin sulfate glucosamine 3-O-sulfotransferase 4), OPN (osteopontin), PAI-1 (plasminogen activator inhibitor-1 or SERPINE 1), and cathepsin B. B), IGFBP-2 (insulin-like growth factor binding protein-2), Semaphorin 6C, IGF-2 (insulin-like growth factor-2), Sortilin, serine protease inhibitor B6, Dkk-3 (Dickkopf-related protein 3), CNTF (ciliary neurotrophic factor), TSP-1 (thrombospondin 1), GM-CSF Ra (granulocyte-macrophage colony-stimulating factor receptor subunit α), Thrombomomodulin, Endoglycan, Podocalyxin-like protein 2, IGFBP-3 (insulin-like binding protein-3), RGM-C (hemojuvelin), PF4 (platelet factor 4), MIF (macrophage migration inhibitory factor), TGM4 (protein-glutamine-γ-glutamyltransferase 4), Periostin, Furin, TIMP-1 (MMP tissue inhibitor 1), Decorin, PCK1 (cytosol-type phosphoenolpyruvate carboxykinase). The following are considered as a combination of two or more of the following: cytosolic, CD9 antigen, CD99 antigen, CA2 (carbonic anhydrase 2), PRDX4 (peroxidoreductase-4), transferrin, DcR3 (tumor necrosis factor receptor superfamily member 6B), GP73 (Golgi membrane protein 1), CD81 antigen, lumican, or TIMP-2 (MMP tissue inhibitor 2).

[0006] In some respects, this article provides a method for treating fibrosis in a subject in need, the method comprising administering to the subject a composition comprising one or more extracellular vesicles (EVs); wherein at least 80% of the EVs are CD63+, CD9-, or CD81-. The fibrosis may be fibrosis of the skin.

[0007] In some respects, this article provides a method for treating fibrosis in a subject in need, the method comprising administering to the subject a composition comprising one or more extracellular vesicles (EVs); wherein the one or more EVs comprise hsa-miR-125b-5p, hsa-miR-145-5p, hsa-miR-191-5p, hsa-miR-199a-3p, hsa-miR-21-5p, hsa-miR-221-3p, hsa-miR-222-3p, hsa-miR-22 The miRNA sequences are hsa-miR-23a-3p, hsa-miR-23b-3p, hsa-miR-27a-3p, hsa-miR-27b-3p, hsa-miR-29a-3p, hsa-miR-29c-3p, hsa-miR-31-5p, hsa-miR-320a, hsa-miR-34a-5p, hsa-miR-423-3p, hsa-miR-424-5p, or hsa-miR-940, or combinations of two or more thereof. The miRNA sequences are available from https: / / www.mirbase.org / . This fibrosis can be skin fibrosis.

[0008] In some respects, this article provides a method for treating fibrosis in subjects in need, the method comprising administering to the subject a composition comprising: ferritin, IGFBP-4 (insulin-like growth factor binding protein-4), IL-1 R6 (interleukin-1 receptor 6), LAMP2 (lysosome-associated membrane glycoprotein 2), bIG-H3 (transforming growth factor-β-inducible protein ig-h3), GPR115 (adhesion G protein-coupled receptor F4), CD63 antigen, CD109 antigen, serine protease inhibitor F1 (pigment epithelium-derived factor), IGFBP-6 (insulin-like growth factor binding protein-6), HS3ST4 (heparanol sulfate glucosamine 3-O-sulfotransferase 4), OPN (osteopontin), PAI-1 (plasminogen activator inhibitor-1 or sERPINE). 1) Cathepsin B, IGFBP-2 (insulin-like growth factor binding protein-2), brain signaling protein 6C, IGF-2 (insulin-like growth factor-2), sorting protein, serine protease inhibitor B6, Dkk-3 (Dickkopf-related protein 3), CNTF (ciliary neurotrophic factor), TSP-1 (thromboretin-1), GM-CSF Ra (granulocyte-macrophage colony-stimulating factor receptor subunit α), coagulation regulatory protein, endoglucan, (podocyte protein-like protein 2) IGFBP-3 (insulin-like binding protein-3), RGM-C (hepcidin regulatory protein), PF4 (platelet factor 4), MIF (macrophage migration inhibitory factor), TGM4 (protein-glutamine-γ-glutamyltransferase 4), periosteal protein, furin protease, TIMP-1 (MMP tissue inhibitor 1), gypsum proteoglycan, PCK1 (cytosol-type phosphoenolpyruvate carboxykinase), CD9 antigen, CD99 antigen, CA2 (carbonic anhydrase 2), PRDX4 (peroxide reductase-4), transferrin, DcR3 (tumor necrosis factor receptor superfamily member 6B), GP73 (Golgi membrane protein 1), CD81 antigen, phytoglucan, or TIMP-2 (MMP tissue inhibitor 2), or a combination of two or more thereof. This fibrosis can be fibrosis of the skin.

[0009] In some implementations, one or more EVs include hsa-miR-125b-5p, hsa-miR-145-5p, hsa-miR-191-5p, hsa-miR-199a-3p, hsa-miR-21-5p, hsa-miR-221-3p, hsa-miR-222-3p, hsa-miR-22-3p, hsa-miR-23a-3p, and hsa-miR-2 3b-3p, hsa-miR-27a-3p, hsa-miR-27b-3p, hsa-miR-29a-3p, hsa-miR-29c-3p, hsa-miR-31-5p, hsa-miR-320a, hsa-miR-34a-5p, hsa-miR-423-3p, hsa-miR-424-5p, or hsa-miR-940, or a combination of two or more thereof.In some embodiments, the composition comprises ferritin, IGFBP-4 (insulin-like growth factor binding protein-4), IL-1 R6 (interleukin-1 receptor 6), LAMP2 (lysosome-associated membrane glycoprotein 2), bIG-H3 (transforming growth factor-β-inducible protein ig-h3), GPR115 (adhesion G protein-coupled receptor F4), CD63 antigen, CD109 antigen, serine protease inhibitor F1 (pigment epithelial-derived factor), IGFBP-6 (insulin-like growth factor binding protein-6), HS3ST4 (heparanol sulfate glucosamine 3-O-sulfotransferase 4), OPN (osteopontin), and PAI-1 (plasminogen activator inhibitor-1 or sERPINE). 1) Cathepsin B, IGFBP-2 (insulin-like growth factor binding protein-2), brain signaling protein 6C, IGF-2 (insulin-like growth factor-2), sorting protein, serine protease inhibitor B6, Dkk-3 (Dickkopf-related protein 3), CNTF (ciliary neurotrophic factor), TSP-1 (thromboretin-1), GM-CSF Ra (granulocyte-macrophage colony-stimulating factor receptor subunit α), coagulation regulatory protein, endosaccharide, (podocyte protein-like protein 2) IGFBP-3 (insulin-like binding protein-3), RGM-C (hepcidin regulatory protein), PF4 (platelet factor 4), MIF (macrophage migration inhibitory factor), TGM4 (protein-glutamine-γ-glutamyltransferase 4), periosteal protein, furin protease, TIMP-1 (MMP tissue inhibitor 1), gypsum proteoglycan, PCK1 (cytosol-type phosphoenolpyruvate carboxykinase), CD9 antigen, CD99 antigen, CA2 (carbonic anhydrase 2), PRDX4 (peroxide reductase-4), transferrin, DcR3 (tumor necrosis factor receptor superfamily member 6B), GP73 (Golgi membrane protein 1), CD81 antigen, luminescent proteoglycan, or TIMP-2 (MMP tissue inhibitor 2), or a combination of two or more thereof.

[0010] In some embodiments, the subject suffers from radiation-induced fibrosis syndrome (RFS) or radiation-induced fibrosis (RIF). In some embodiments, the irradiated skin has been exposed to ionizing radiation. In some embodiments, the irradiated skin exhibits one or more of the following: fibrosis, hardening, thickening, induration, inflammation, skin stiffness, elastin content, and / or collagen content. In some embodiments, the subject has been diagnosed with cancer. In some embodiments, the subject has been diagnosed with breast cancer. In some embodiments, the subject has fibrotic irradiated breast tissue. In some embodiments, the subject experiences improvement after treatment in one or more of the following skin characteristics: fibrosis, hardening, thickening, induration, inflammation, skin stiffness, elastin content, and / or collagen content, or combinations thereof.

[0011] In some embodiments, the dosage of the composition administered to the subject is a cell equivalent dose of 700,000 to 7,000,000 cells / kg. In some embodiments, administration includes intravenous administration. In some embodiments, the composition is prepared by a method comprising the steps of: (a) culturing bone marrow mesenchymal stem cells (BM-MSCs) under conditions of: (i) oxygen tension less than 5%; and (ii) a medium with a pH less than 7; (b) harvesting the MSC conditioned medium; and (c) preparing the MSC conditioned medium to produce the composition. In some embodiments, the method comprises preparing the composition prior to administration, wherein the preparation of the composition is performed by a method comprising the steps of: (a) culturing bone marrow mesenchymal stem cells (BM-MSCs) under conditions of: (i) oxygen tension less than 5%; and (ii) a medium with a pH less than 7; (b) harvesting the MSC conditioned medium; and (c) preparing the MSC conditioned medium to produce the composition. In some embodiments, the medium is serum-free. In some embodiments, the medium has a glucose concentration of less than 4.5 g / L. In some embodiments, preparing MSC conditioned medium involves replacing the conditioned medium with a pharmaceutically acceptable formulation. In some embodiments, the pharmaceutically acceptable formulation comprises saline. In some embodiments, the composition contains at least 6 × 10⁶ 10 Up to 8 × 10 10The composition contains approximately 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, or 20 ml of extracellular vesicles per ml (EVs / mL), and is administered at a dose of 10, 11, 12, 13, 14, or 20 ml. The composition may have an EV concentration of at least about 60 billion EVs / mL, for example, from about 60 billion to about 250 billion EVs / mL. Optionally, about 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, or 15 mL is administered. As a non-limiting example, 5 mL is used. The number of EVs in the composition may be from about 10 million to about 1 trillion. The composition may be administered intradermally.

[0012] Some embodiments disclose methods for treating radiation-induced skin damage, including the administration of an extracellular vesicle composition derived from MSCs cultured under hypoxic, hypoglycemic, and hypopH conditions. One aspect of this disclosure is a method for treating irradiated skin in a subject, comprising administering to the subject a composition containing a therapeutic mesenchymal stem cell (MSC) secretome composition prepared by a method comprising the steps of: (a) culturing bone marrow-derived MSCs under conditions of: (i) oxygen tension below 5%; and (ii) a pH below 7; (b) harvesting the MSC conditioned medium; and (c) preparing the MSC conditioned medium to produce the therapeutic MSC secretome composition, wherein the therapeutic MSC secretome composition comprises proteins and extracellular vesicles produced in step (a) from bone marrow-derived MSCs. The subject suffers from radiation fibrosis syndrome (RFS) or radiation-induced fibrosis (RIF). In some embodiments, the irradiated skin has been subjected to ionizing radiation. In some embodiments, the irradiated skin exhibits one or more of the following: fibrosis, hardening, thickening, induration, inflammation, skin firmness, elastin content, and / or collagen content. In some embodiments, the subject has been diagnosed with cancer. In some embodiments, the subject has been diagnosed with breast cancer. In some embodiments, the subject has fibrotic irradiated breast tissue. In some embodiments, the subject experiences improvement after treatment in one or more of the following skin characteristics: fibrosis, hardening, thickening, induration, inflammation, skin firmness, elastin content, and / or collagen content, and combinations thereof. In some embodiments, the therapeutic MSC secretome composition administered to the subject is at a cell equivalent dose of 700,000 to 7,000,000 cells / kg. In some embodiments, the culture medium is serum-free. In some embodiments, the culture medium has a glucose concentration of less than 4.5 g / L. In some embodiments, at least 80% of the extracellular vesicles in the therapeutic MSC secretome composition are CD63+CD9-CD81-. In some embodiments, the therapeutic MSC secretome composition comprises one or more of the following proteins: ferritin, NUP85, LAMP2, GPR115, serine protease inhibitor F1 (Serpin F1), OPN, PAI-1, DAPP1, cathepsin B, semaphorin 6C, PDGF Rα, sortilin, serine protease inhibitor B6 (Serpin B6), Dkk-3, thrombomodulin, PF4, MIF, periodin, furin, TIMP-1,Decorin, PCK1, CD99, CD63, CD9, CD81, Transferrin, DcR3, Lumican, TIMP-2, SLITRK5, FAP, Artemin, DPPII, cIAP-1, Pentraxin 3, Visfatin, Neprilysin, Albumin, Galectin-1, UNC5H3, IL-20 Rβ, SREC-II, JAM-C, TNF-α, htPAPP-A, eNOS, MSP R, TPP1, LAMP1, B2M, NCAM-1, HIF-1 α, ST6GAL1, CD99-L2, Plexin A4 A4), EMMPRIN, p53, Semaphorin 7A, NKp80, Cystatin B, Osteoadherin, Midkine, Calreticulin, Osteoactivin, Legumin, TAZ, Catepsin L, RBP4, Serpin A4, JAM-A, MCSF, LIMPII, OPG, IL-22, Galectin-3, MOG, Trypsin 3, SIRP α, Syndecan-4, IGFBP-4, IL-1 R6, GSTM1, NUP85, LAMP2, MeprinA, IL-1 F10, bIG-H3, GPR115, TGFb1, Ephrin-A4, CD109, Serpin F1, IGFBP-6, HS3ST4, Aminopeptidase LRAP, OPN, PAI-1, DAPP1, GDF-9, Cathepsin B, IGFBP-2, Semaphorin 6C, IGF-2, PDGF Rα, Sortilin, Serpin B6, Dkk-3, CNTF, TSP-1, GM-CSF Ra, Thrombomomodulin, EndoglycanIGFBP-3, RGM-C, PF4, MIF, TGM4, Periostin, Furin, TIMP-1, PAPP-A, Decorin, PCK1, Arylsulfatase A, CD99, CA2, PRDX4, Transferrin, DcR3, GP73, LAIR2, ULBP-4, Lumican, TIMP-2, TFPI, SOX2, SLITRK5, FAP, Spinesin, ENPP-2, CD97, CTACK, Integrin alpha 1, EXTL3, IL-18 BPa, PD-L2, PSMA, IL-20 Ra, Glyoxalase II, Trypsin I 1) IGF-2R, ADAMTSL-1, Erythropoietin, Plexin D1, DNMT3A, BCL-2, CL-P1, Ephrin-B3, FABP6, CHI3L1, FCRLS, TFF3, Artemin, DPPII, cIAP-1, PDGF Rb, Pentraxin 3, Angiotensinogen, Follicle-Stabilizing Inhibitor, CF VII, Persephin, TRAIL R1, THAP11, CD200, CLEC-2, AMIGO, IGFBP-5, PON1, SOX7, GALNT10, Visfatin, Progranulin, PCSK2, GKN1, IL-18, Neprilysin, Stabilin-2, IL-17RD, Albumin, Follistatin-like 1, MMP-10, FKBP51, LRRC4, Pref-1, Galectin-1, Troponin C, UNC5H3, FLRT2, CD314, Semaphorin 6B, Netrin-4, CD27 ligand, IL-20Rβ, Semaphorin 6A 6A), TSK, Cytokeratin-8, CHST3, Mcl-1, DPPIV, SREC-II,Norrin, JAM-C, Bcl-10, Wnt-4, LSECtin, Kell, TNF RI, PTP1B, htPAPP-A, IDO, PDGF-CC, Galanin, Activin A, TLR2, SCCA2, FABP1, eNOS, SHP-1, ICOS, C1qTNF9, MMP-1, TC-PTP, IL-24, gp130, C-myc, LILRB4, BMP-2, MIA, CD34, CD63, CD9, CD81, IFNab R2, Glypican 2, MSP R, DSCAM, membrane serine protease (Matriptase), KIR2DL3, CD30, Siglec-10, CLEC-1, TPP1, Ubiquitin+1, ANGPTL4, TWEAK R, Nidogen-1, CD2, Kallikrein 1, TSLP R, LAMP1, TROY, VCAM-1, Siglec-11, S100A1, PAR1, Thyroid peroxidase, Aminopeptidase P2, IL-1 RI, ADAMS, OSM R β, Thrombospondin-2, SMPD1, B2M, MFRP, LRP-6, ST3GAL1, NCAM-1 (CD56), Granzyme B B) Adiponectin, IL-22BP, TPST2, PD-ECGF, LH, LEDGF, Cyr61, ULBP-3, IFNb, THSD1, FGF-23, LAMA4, Adipsin, AIF, SorCS2, SULT2A1, CD39L2, Insulin R, HIF-1 α, OX40 ligand, Pax3, UCH-L3, cMASP3, Langerin, Desmin, SOX9, ST6GAL1, MEP1B, CD99-L2, Plexin A4, Semaphorin 4D 4D), ROBO2, PDX-1, APRIL, Neuroturin, Kremen-2 (a transmembrane protein with a ring structure), EMMPRIN, ActivinRIB, Neuroligin 2Epiiregulin, CASA, MMP-12, GALNT2, CEACAM-5, VEGF R1, DSPG3, SorCS1, Matrilin-2, sFRP-3, p53, EphB3, NCK1, Semaphorin 7A, NKp80, Prolactin, Cystatin B, Sirtuin 1, FGF-16, FGF R5, NQO-1, Semaphorin 6D, FGF-3, GATA-4, VAP-A, CHST2, Pappalysin-2, Syndecan-3, Jagged protein 1 1) AKR1C4, Olfactomedin-2, Osteoadherin, NKp44, Thyroglobulin, IL-21R, Chemerin, EphA1, CD48, MICB, FGF-5, TRANCE, CES2, ULBP-1, Integrin alpha 5, VAMP-2, FLRG, Ret Midkine, CD73, TRACP, proGRP, Granzyme H H), PRX2, p2'7, Siglec-6, Dendritic Cell-Associated C-type Lectin-1, CD51, Notch-1, Calreticulin, DR3, DCTN1, CDC25B, Osteoactivin, ACE, CA125, HAO-1, ​​PSMA1, FCRLB, BMP-9, CRIM1, LIF, SPINK1, EphB6, RGM-B, HS3ST1, ROR1, CMG-2, 4-1BB ligand, L1CAM-2, p63, Cathepsin V, Testican 2, Glypican 5 5) CD6, Siglec-2, Legumin, PRELP, CES1, TAZ, NSE, TECK, HTRA2, HIF-1β, TAFA1, Podocalyxin, RalA, CRELD2, GRAP2, SP-D, BID, GFR α-2, Notch-3, VEGF R3, DLL4, TGFb2LIGHT, XIAP, ST8SIA1, Catepsin L, 6-Ckine, MIS RII, Kallikrein 5, TGM3, FCAR, Contactin-2, CD83, IL-1 R3, SALM4, GBA3, ROBO4, OSCAR, VEGF, IGSF3, Biglycan, Neudesin, ILT4, uPAR, Axl, WIF-1, IL-7 Rα, GPR56, CEACAM-3, MCEMP1, FABP2, Plexin B3, MEPE, Activin RIIA, ANG-2, Cochlin, Presenilin 1 1) NPTXR, SLAM, COMT, SPHK1, RBP4, Nectin-1, GUSB, Nidogen-2, IL-17F, SR-AI, TAFA2, N-Cadherin, IL-17B, IL-17RC, MIP-3b, Cystatin C, Cystatin D, AMSH, FcERI, CLEC10A, HGF R, ANG-1, Prolactin R, FGF-20, CD28, Nogo-A, HSD17B1, IL-19, Enteropeptidase, Catepsin E, TSLP, TCN2, GDF-15, Epimorphin, GRKS, PD-1, Serine protease inhibitor A4 A4), ADAM23, NOV, Galectin-2, Neuroxin 3 beta, TLR3, Sirtuin 2, Numb, IL-28 Rα, IL-33, Lin28, FCRL1, KLF4, NKp30, Lymphotactin, Cystatin SN, JAM-A, Calreticulin-2, ErbB4, BMP-8, IL-27 Ra, Fas, IL-4 Ra, Kallikrein 14, Matrilin-3, Olig2, Kallikrein 12, CA13IL-9, Nectin-3, MPIF-1, Cystatin S, ADA, IL-2 Rb, GFR α-1, Smad4, ICAM-1, MEF2C, TREM-1, L-Selectin, Hepsin, CD42b, MCSF, RANK, CHST4, CA8, FCRL3, ASAH2, CF XIV, PYY, HGF, I-TAC, Semaphorin 4C, SorCS3, Tie-1, IL-31 RA, Arginase 1, POGLUT1, IL-1ra, Podoplanin, TIM-3, CREG, CD300f, uPA, EphA2, LLRTM4, LIMPII, Tenasin R R), CPE, PECAM-1, DNAM-1, DKK-1, OPG, CPB1, TSH, MMP-2, Siglec-9, ICAM-3, Cystatin SA, Galectin-4, Pepsinogen II, Desmoglein-3, Nectin-4, SCF, Serpin A5, PTH, FGF-19, MSP, IL-28A, FGF-12, METAP2, ASAHL, EDIL3, NTAL, EGF R, TAFAS, Galectin-9, vWF-A2, TACE, Activin RIM, Cathepsin S, LDL R, BMPR-IA, OX40, IL-13 R2, B7-H4, MMP-13, ANGPTL7, TRAIL R4, IGSF4B, Sirtuin 5, PEAR1, SH2D1A, Cerberus 1, GDF-11, Nrf2, TROP-2, NUDTS, ROR2, EphB4, Glypican 1, LAP (TGFb1), Gash, Contactin-1, IL-27, UNC5H4, ICAM-2, MBL, HS3ST3B1, RCOR1, IL-10 Rb, XEDAR, IL-22, PILR-α, NRG1-131, FABP4, RGM-A, RELT, TrkC, CSa, SREC-INestin, TPO, ErbB3, Kirrel3, FLRT1, Galectin-3, CXCL16, JAM-B, DR6, Nogo receptor, TLR4, VEGF R2, Tie-2, IL-15 R, Caspr2, LTbR, LAMP, ALCAM, GLP-1, NG2, IL-22 Rα1, AMIGO2, HCC-1, TFPI-2, ULBP-2, Desmoglein 2, Aggrecan, Syntaxin 4, VAMP-1, Nectin-2, FGF-21, Flt-3, GFAP, TIM-1, Inhibin A A) Cadherin-4, PIGF-2, Neurogranin, HE4, IL-23R, Galectin-7, GALNT3, GITR L, CD14, R-Spondin 2, CK19, Cardiotrophin-1, TREML1, HAPLN1, CD27, ANG-4, Siglec-7, CD155, VEGF-C, TNF-α, PGRP-S, SDF-1α, PDGF-AB, GPVI, CD40, SCF R, Thrombospondin-5, IL-1 RII, Neuropilin-2, Cadherin-13, E-Selectin, GITR, WISP-1, Renin, AgRP, MDL-1, ROBO3, RANTES, Endocan, Granulin, hCGb, Mesothelin, TLR1, TRAIL, MOG, DDR1, NGF R, TRAIL R3, Trypsin 3, ARSB, LIF Rα, BAFF R, CD157, Granzyme A, 2B4, ESAM, IL-1R4, CXCL14, IL-31, SIRP α, Uromodulin, CTRC, CEACAM-1, TARC, MIP-3a, SDF-1b, NKp46, MCP-3, IL-32 α, TGFb3 FOLR2, CD58, IL-23, CD36, TNFb,Shh-N, Ficolin-1, Reg4, ILT2, Mer, TREM-2, Flt-3L, CDS, IL-6, CD229, Insulin, Syntaxin 6, GRO, Bcl-w, Lipocalin-2, PDGF-AA, IL-2 Ra, Angiogenin, LYVE-1, CD4, RAGE, CDNF, Brevican, NAP-2, PU.1, EDAR, ADAMTS13, Kynureninase, PTH1R, IFN-γ R1, CrkL, B7-1, PARC, Draxin, VE-cadherin, Procalcitonin, SOX15, Kallikrein 11, BCMA, Dendritic cell-associated C-type lectin-2, EpCAM, HCC-4, TGFa, IP-10, BLAME, CILP-1, PIGF, LOX-1, MCP-2, Resistin, HVEM, ENPP-7, Syndecan-4, IL-2 Rg, MICA, Dopa decarboxylase, NPDC-1, MCP-4, EG-VEGF, Glycoprotein V, Semaphorin 4G 4G), IL-12p40, total PSA (PSA-total), IL-15, MAP1D, C1q, TNF4, Dtk, endothelial glycoprotein (Endoglin), ENA-78, Reg3A, MIP-1b, FGF-17, IL-6R, IL-8, galectin-8, CA4, cysteine ​​protease protein EM (Cystatin EM), FUT8, B7-H3, GCP-2, CD40L, MDC, 4-1BB, HO-1, SOST, S100A13, kallikrein 7, or IL-13. In some embodiments, the therapeutic MSC secretome composition comprises one or more of the following nucleic acids: hsa-let-7a-5p, hsa-let-7b-5p, hsa-let-7c-5p, hsa-let-7d-3p, hsa-let-7e-5p, hsa-let-7g-5p, hsa-let-7i, hsa-let-7i-5p, hsa-miR-100-5p, hsa-miR-103a-3p,hsa-miR-106a-5p、hsa-miR-106b-5p、hsa-mir-10b、hsa-miR-10b-5p、hsa-mir-1246、 hsa-miR-1246、hsa-miR-125a-5p、hsa-miR-125b-5p、hsa-miR-130a-3p、hsa-mir-130b hsa-miR-130b-3p hsa-miR-132-3p hsa-miR-136-5p hsa-miR-138-5p hsa-miR-139-5p hsa-mir-140 hsa-miR-140-3p hsa-miR-145-5p hsa-mir-146a hsa-miR-146a- 5p, hsa-miR-148a-3p, hsa-miR-152-3p, hsa-miR-15a-5p, hsa-miR-15b-5p, hsa-mir-16-1, hsa-mir-16-2, hsa-miR-16-5p, hsa-miR-1'7-5p, hsa-miR-181a-5p, hsa-miR-191-5p, hsa-miR-193a-5p, hsa-miR- 193b-3p、hsa-miR-19'7-3p、hsa-miR-199a-3p、hsa-miR-199a-5p、hsa-miR-199b-5p、hsa-miR-19a-3p、 hsa-miR-19b-3p、hsa-miR-20a-5p、hsa-mir-203a、hsa-miR-203a-3p、hsa-miR-214-3p、hsa-mir-21、hs a-miR-21-3p, hsa-miR-21-5p, hsa-mir-221, hsa-miR-221-3p, hsa-mir-222, hsa-miR-222-3p, hsa-miR-22-3p, hsa-miR-23a-3p, hsa-miR-23b-3p, hsa-mir-24-1, hsa-mir-24-2, hsa-miR-24-3p, hsa-mir-25 hsa-miR-25-3p hsa-miR-26a-5p hsa-miR-27a-3p hsa-mir-27b hsa-miR-27b-3p hsa-miR-29a-3p hsa-miR-29c-3p hsa-miR-30a-5p hsa-miR-30a-5p hsa-miR-30b-5p hsa-miR-30c-5p hsa-mir-30dhsa-miR-30d-5p, hsa-mir-30e, hsa-miR-30e-5p, hsa-miR-31-3p, hsa-miR-31-5p, hsa-miR-320a, hsa-miR-342-3p, hsa-miR-345-5p, h sa-miR-34a-5p, hsa-miR-361-5p, hsa-miR-376a-3p, hsa-miR-376c-3p, hsa-miR-423-3p, hsa-miR-423-5p, hsa-miR-424-5p, hsa-miR-4 84. hsa-mir-486-1, hsa-mir-486-2, hsa-miR-486-5p, hsa-miR-570-3p, hsa-miR-574-3p, hsa-miR-663a, hsa-miR-874-3p, hsa-mir-92a-1, hsa-mir-92a-2, hsa-miR-92a-3p, hsa-miR-92b-3p, hsa-mir-93, hsa-miR-93-5p, hsa-miR-940, hsa-miR-99a-5p, or hsa-miR-99b-5p. This composition can have an EV concentration of at least about 60 billion EVs / mL, for example, from about 60 billion to about 250 billion EVs / mL. Optionally, apply about 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, or 15 mL. As a non-limiting example, 5 mL. The number of EVs in the composition can be from about 10 million to about 1 trillion. The composition can be administered intradermally.

[0013] One aspect of this disclosure is a method for treating irradiated skin of a subject, the method comprising administering to the subject a composition comprising a therapeutic MSC secretome composition containing extracellular vesicles, wherein at least 80% of the extracellular vesicles in the therapeutic MSC secretome composition are CD63+CD9-CD81-. In some embodiments, the therapeutic MSC secretome composition further comprises one or more of the following proteins: ferritin, NUP85, LAMP2, GPR115, serine protease inhibitor F1, OPN, PAI-1, DAPP1, cathepsin B, brain signaling protein 6C, PDGF Rα, sorting protein, serine protease inhibitor B6, Dkk-3, coagulation regulatory protein, PF4, MIF, periosteal protein, furin, TIMP-1, tectonic proteoglycan, PCK1, CD99, CD63, CD9, CD81, transferrin, DcR3, photoglucan, TIMP-2, SLITRK5, FAP, leptospirin, DPPII, cIAP-1, pentameric protein 3, lactone, enkephalin, albumin, galactolectin-1, UNC5H3, IL-20 Rβ, SREC-II, JAM-C, TNF. RI, htPAPP-A, eNOS, MSP R, TPP1, LAMP1, B2M, NCAM-1, HIF-1 α, ST6GAL1, CD99-L2, convolutional protein A4, EMMPRIN, p53, brain signaling protein 7A, NKp80, cysteine ​​protease protein B, osteoadhesion, mid-term factor, calreticulin, osteoactivin, asparagine endopeptidase, TAZ, cathepsin L, RBP4, serine protease inhibitor A4, JAM-A, MCSF, LIMPII, OPG, IL-22, galactolectin-3, MOG, trypsin 3, SIRP α, cohesin-4, IGFBP-4, IL-1 R6, GSTM1, NUP85, LAMP2, transmembrane peptidase A, IL-1 F10, bIG-H3, GPR115, TGFb1, liver glycoside-A4, CD109, serine protease inhibitor F1, IGFBP-6, HS3ST4, aminopeptidase LRAP, OPN, PAI-1, DAPP1, GDF-9, cathepsin B, IGFBP-2, brain signaling protein 6C, IGF-2, PDGF Rα, sorting protein, serine protease inhibitor B6, Dkk-3, CNTF, TSP-1, GM-CSF Ra, coagulation regulatory protein, endosaccharide, IGFBP-3, RGM-C, PF4, MIF, TGM4, periostealin, furin, TIMP-1, PAPP-A, dermal proteoglycan, PCK1, arylsulfatase A, CD99, CA2, PRDX4, transferrin, DcR3, GP73.LAIR2, ULBP-4, photoglucan, TIMP-2, TFPI, SOX2, SLITRK5, FAP, spinal cord protein, ENPP-2, CD97, CTACK, integrin α1, EXTL3, IL-18 BPa, PD-L2, PSMA, IL-20 Ra, glyoxalase II, trypsin I, IGF-2R, ADAMTSL-1, erythropoietin, globulin D1, DNMT3A, BCL-2, CL-P1, liver glycoside-B3, FABP6, CHI3L1, FCRLS, TFF3, leptospirin, DPPII, cIAP-1, PDGF Rb, pentamin 3, angiotensinogen, follicle-stimulating hormone, CFVII, persephin, TRAIL R1, THAP11, CD200, CLEC-2, AMIGO, IGFBP-5, PON1, SOX7, GALNT10, endothelin, granulosa protein precursor, PCSK2, GKN1, IL-18, enkephalin, stabilizer-2, IL-17 RD, albumin, follicle-stimulating protein 1, MMP-10, FKBP51, LRRC4, Pref-1, galactoglobin-1, troponin C, UNC5H3, FLRT2, CD314, brain signaling protein 6B, cytokeratin-4, CD27 ligand, IL-20 Rβ, brain signaling protein 6A, TSK, cytokeratin-8, CHST3, Mcl-1, DPPIV, SREC-II, norin, JAM-C, Bcl-10, Wnt-4, LSECtin, Kell, TNF RI, PTP1B, htPAPP-A, IDO, PDGF-CC, Glycopropyl peptide, Activator Protein A, TLR2, SCCA2, FABP1, eNOS, SHP-1, ICOS, C1qTNF9, MMP-1, TC-PTP, IL-24, gp130, C-myc, LILRB4, BMP-2, MIA, CD34, CD63, CD9, CD81, IFNab R2, Phosphatidylinositol Proteoglycan 2, MSP R, DSCAM, Membrane-type Serine Protease, KIR2DL3, CD30, Salivary Agglutinin-10, CLEC-1, TPP1, Ubiquitin+1, ANGPTL4, TWEAK R, Nestin-1, CD2, Kallikrein 1, TSLPR, LAMP1, TROY, VCAM-1, Salivary agglutinin-11, S100A1, PAR1, Thyroid peroxidase, Aminopeptidase P2, IL-1RI, ADAMS, OSM Rβ, Platelet-Reactive Protein-2, SMPD1, B2M, MFRP, LRP-6, ST3GAL1, NCAM-1 (CD56), Granulase B, Lipocontin, IL-22BP, TPST2PD-ECGF, LH, LEDGF, Cyr61, ULBP-3, IFNb, THSD1, FGF-23, LAMA4, lipoprotein, AIF, SorCS2, SULT2A1, CD39L2, insulin R, HIF-1 α, OX40 ligand, Pax3, UCH-L3, cMASP3, Langerin, desmin, SOX9, ST6GAL1, MEP1B, CD99-L2, conglomerate A4, brain signaling protein 4D, ROBO2, PDX-1, APRIL, neuronal rankin, transmembrane protein-2 with ring structure, EMMPRIN, activator protein RIB, neuroligand 2, epithelial regulatory protein, CASA, MMP-12, GALNT2, CEACAM-5, VEGF R1, DSPG3, SorCS1, extracellular matrix protein-2, sFRP-3, p53, EphB3, NCK1, brain signaling protein 7A, NKp80, prolactin, cysteine ​​agonist protein B, Sirtuin 1, FGF-16, FGF R5, NQO-1, brain signaling protein 6D, FGF-3, GATA-4, VAP-A, CHST2, pregnancy-associated plasma protein-2, cohesin-3, serrated protein 1, AKR1C4, olfactory mesrin-2, osteoadhesion, NKp44, thyroglobulin, IL-21R, chemokines, EphA1, CD48, MICB, FGF-5, TRANCE, CES2, ULBP-1, integrin α 5. VAMP-2, FLRG, Ret metaphase factor, CD73, TRAP, proGRP, granzyme H, PRX2, p2'7, salivary lectin-6, dendritic cell-associated C-type lectin-1, CD51, Notch-1, calreticulin, DR3, DCTN1, CDC25B, bone activator, ACE, CA125, HAO-1, ​​PSMA1, FCRLB, BMP-9, CRIM1, LIF, SPINK1, EphB6, RGM-B, HS3ST1, ROR1, CMG-2, 4-1BB ligand, L1CAM-2, p63, cathepsin V, testosterone-2, phosphatidylinositol proteoglycan 5, CD6, salivary lectin-2, asparagine endopeptidase, PRELP, CES1, TAZ, NSE, TECK, HTRA2, HIF-1 β, TAFA1, podocyte protein, RalA, CRELD2, GRAP2, SP-D, BID, GFR α-2, Notch-3, VEGF R3, DLL4, TGFb2, LIGHT, XIAP, ST8SIA1, cathepsin L, 6-Ckine, MIS RII, kallikrein 5, TGM3, FCAR, contactin-2, CD83, IL-1R3, SALM4, GBA3ROBO4, OSCAR, VEGF, IGS F3, disaccharide proteoglycans, neurodevelopmental factor, ILT4, uPAR, Axl, WIF-1, IL-7 Rα, GPR56, CEACAM-3, MCEMP1, FABP2, plexin B3, MEPE, activator RIIA, ANG-2, Cochlin, presenilin 1, NPTXR, SLAM, COMT, SPHK1, RBP4, stalkin-1, GUSB, nestin-2, IL-17F, SR-AI, TAFA2, N-cadherin, IL-17B, IL-17RC, MIP-3b, cysteine ​​protease C, cysteine ​​protease D, AMSH, FcERI, CLEC10A, HGF R, ANG-1, prolactin R, FGF-20, CD28, Nogo-A, HSD17B1, IL-19, intestinal peptidase, cathepsin E, TSLP, TCN2, GDF-15, epidermal morphogenetics, GRKS, PD-1, serine protease inhibitor A4, ADAM23, NOV, galactoglobulin-2, neuronal surface protein 3β, TLR3, Sirtuin2, Numb, IL-28 Rα, IL-33, Lin28, FCRL1, KLF4, NKp30, lymphocyte chemokine, cysteine ​​protease protein SN, JAM-A, calreticulin-2, ErbB4, BMP-8, IL-27 Ra, Fas, IL-4 Ra, kallikrein 14, extracellular matrix protein-3, Oligo2, kallikrein 12, CA13, IL-9, stalk protein-3, MPIF-1, cysteine ​​protease protein S, ADA, IL-2 Rb, GFR α-1, Smad4, ICAM-1, MEF2C, TREM-1, L-selectin, transmembrane serine protease, CD42b, MCSF, RANK, CHST4, CA8, FCRL3, ASAH2, CF XIV, PYY, HGF, I-TAC, brain signaling protein 4C, SorCS3, Tie-1, IL-31 RA, Arginase 1, POGLUT1, IL-1ra, Flatfoot protein, TIM-3, CREG, CD300f, uPA, EphA2, LLRTM4, LIMPII, Tenosynovin R, CPE, PECAM-1, DNAM-1, DKK-1, OPG, CPB1, TSH, MMP-2, Salivary lectin-9, ICAM-3, Cysteine ​​protease inhibitor SA, Galactohemagglutinin-4, Pepsinogen II, Desmosome core protein-3, Stalk protein-4, SCF, Serine protease inhibitor A5, PTH, FGF-19, MSP, IL-28A, FGF-12, METAP2, ASAHL, EDIL3, NTALEGF R, TAFAS, galactoglobulin-9, vWF-A2, TACE, activator protein RIM, cathepsin S, LDL R, BMPR-IA, OX40, IL-13 R2, B7-H4, MMP-13, ANGPTL7, TRAIL R4, IGSF4B, Sirtuin 5, PEAR1, SH2D1A, Cerberus 1, GDF-11, Nrf2, TROP-2, NUDTS, ROR2, EphB4, phosphatidylinositol proteoglycan 1, LAP (TGFb1), Gash, contactin-1, IL-27, UNC5H4, ICAM-2, MBL, HS3ST3B1, RCOR1, IL-10 Rb, XEDAR, IL-22, PILR-α, NRG1-131, FABP4, RGM-A, RELT, TrkC, CSa, SREC-I, neural epithelial stem cell protein, TPO, ErbB3, Kirrel3, FLRT1, galactoglobulin-3, CXCL16, JAM-B, DR6, Nogo receptor, TLR4, VEGF R2, Tie-2, IL-15 R, Caspr2, LTbR, LAMP, ALCAM, GLP-1, NG2, IL-22 Rα 1, AMIGO2, HCC-1, TFPI-2, ULBP-2, desmosome core protein 2, agglutinin, synaptic fusion protein 4, VAMP-1, stalkin-2, FGF-21, Flt-3, GFAP, TIM-1, inhibin A, cadherin-4, PIGF-2, neurogranulin, HE4, IL-23 R, galactoglobulin-7, GALNT3, GITR L, CD14, R-vertebral protein 2, CK19, cardiotrophin-1, TREML1, HAPLN1, CD27, ANG-4, salivary immunoglobulin-7, CD155, VEGF-C, TNF RII, PGRP-S, SDF-1a, PDGF-AB, GPVI, CD40, SCF R, platelet-reactive protein-5, IL-1 RII, neurofeedin-2, cadherin-13, E-selectin, GITR, WISP-1, renin, AgRP, MDL-1, ROBO3, RANTES, endothelial cell-specific molecules, granzyme, hCGb, mesothelin, TLR1, TRAIL, MOG, DDR1, NGF R, TRAIL R3, trypsin 3, ARSB, LIF Rα, BAFFR, CD157, granzyme A, 2B4, ESAM, IL-1 R4, CXCL14, IL-31, SIRP α, urinary modulatory proteins, CTRC, CEACAM-1, TARC, MIP-3a, SDF-1b, NKp46, MCP-3IL-32α, TGFb3, FOLR2, CD58, IL-23, CD36, TNFb, Shh-N, fibrinogen-1, Reg4, ILT2, Mer, TREM-2, Flt-3L, CDS, IL-6, CD229, insulin, synaptic fusion protein 6, GRO, Bcl-w, lipocalin-2, PDGF-AA, IL-2 Ra, angiopoietin, LYVE-1, CD4, RAGE, CDNF, short proteoglycans, NAP-2, PU.1, EDAR, ADAMTS13, kynurenase, PTH1R, IFN-γ R1, CrkL, B7-1, PARC, Draxin, VE-cadherin, procalcitonin, SOX15, kallikrein 11, BCMA, dendritic cell-associated C-lectin-2, EpCAM, HCC-4, TGFa, IP-10, BLAME, CILP-1, PIGF, LOX-1, MCP-2, resistin, HVEM, ENPP-7, cohesin-4, IL-2 Rg, MICA, dopa decarboxylase, NPDC-1, MCP-4, EG-VEGF, glycoprotein V, brain signaling protein 4G, IL-12p40, total PSA, IL-15, MAP1D, C1q, TNF4, Dtk, endothelial glycoprotein, ENA-78, Reg3A, MIP-1b, FGF-17, IL-6R, IL-8, galactolectin-8, CA4, cysteine ​​protease protein EM, FUT8, B7-H3, GCP-2, CD40L, MDC, 4-1BB, HO-1, SOST, S100A13, kallikrein 7 or IL-13. In some implementations, the extracellular vesicles comprise one or more of the following nucleic acids: hsa-let-7a-5p, hsa-let-7b-5p, hsa-let-7c-5p, hsa-let-7d-3p, hsa-let-7e-5p, hsa-let-7g-5p, hsa-let-7i, hsa-let-7i-5p, hsa-miR-100-5p, hsa-miR-103a-3p, hsa-miR-106a-5p, hsa-miR-106b-5p, h sa-mir-10b, hsa-miR-10b-5p, hsa-mir-1246, hsa-miR-1246, hsa-miR-125a-5p, hsa-miR-125b-5p, hsa-miR-130a-3p, hsa-mir-130b, hsa-miR-130b-3p, hsa-miR-132-3p, hsa-miR-136-5p, hsa-miR-138-5p, hsa-miR-139-5p, hsa-mir-140,hsa-miR-140-3p, hsa-miR-145-5p, hsa-mir-146a, hsa-miR-146a- 5p、hsa-miR-148a-3p、hsa-miR-152-3p、hsa-miR-15a-5p、hsa-miR-1 5b-5p、hsa-mir-16-1、hsa-mir-16-2、hsa-miR-16-5p、hsa-miR-1'7-5 p、hsa-miR-181a-5p、hsa-miR-191-5p、hsa-miR-193a-5p、hsa-miR-19 3b-3p、hsa-miR-19'7-3p、hsa-miR-199a-3p、hsa-miR-199a-5p、hsa-m iR-199b-5p, hsa-miR-19a-3p, hsa-miR-19b-3p, hsa-miR-20a-5p, hsa-mir-203a, hsa-miR-203a-3p, hsa-miR-214-3p, hsa-mir-21, hsa-miR-21-3p, hsa-miR-21-5p, hsa-mir-221, hsa-miR-221-3p, hsa-mir-222, hsa-miR-222-3p, hsa-miR-22-3p, hsa-miR-23a-3p, hsa-miR-23b-3p hsa-mir-24-1 hsa-mir-24-2 hsa-miR-24-3p hsa-mir-25 hsa-miR-25-3p hsa-miR-26a-5p hsa-miR-27a-3p hsa-mir-27b hsa-miR-27b-3p hsa-miR-29a-3p hsa-miR-29c-3p hsa-miR-30a-5p hsa-miR-30a-5p hsa-miR-30b-5p hsa-miR-30c-5p hsa-mir-30d hsa-miR-30 d-5p, hsa-mir-30e, hsa-miR-30e-5p, hsa-miR-31-3p, hsa-miR-31-5p, hsa-miR-320a, hsa-miR-342-3p, hsa-miR-345-5p, hsa-miR-34a-5p, hsa-miR-361-5p, hsa-miR-376a-3p, hsa-miR-376c-3p, hsa-miR-423-3p, hsa-miR-423-5p, hsa-miR-424-5p, hsa-miR-484, hsa-mir-486-1hsa-mir-486-2, hsa-miR-486-5p, hsa-miR-570-3p, hsa-miR-574-3p, hsa-miR-663a, hsa-miR-874-3p, hsa-mir-92a-1, hsa-mir-92a-2, hsa-miR-92a-3p, hsa-miR-92b-3p, hsa-mir-93, hsa-miR-93-5p, hsa-miR-940, hsa-miR-99a-5p, or hsa-miR-99b-5p. In some embodiments, the subject suffers from radiation-induced fibrosis (RIF). In some embodiments, the subject suffers from radiation fibrosis syndrome (RFS). In some embodiments, the subject has been exposed to ionizing radiation. In some embodiments, the irradiated skin exhibits one or more of the following: fibrosis, hardening, thickening, induration, inflammation, skin firmness, elastin content, and / or collagen content. In some embodiments, the subject has been diagnosed with cancer. In some embodiments, the subject has been diagnosed with breast cancer. In some embodiments, the subject has fibrotic irradiated breast tissue. In some embodiments, the subject experiences improvement after treatment in one or more of the following skin characteristics: fibrosis, hardening, thickening, induration, inflammation, skin firmness, elastin content, and / or collagen content, and combinations thereof. The composition may have an EV concentration of at least about 60 billion EVs / mL, for example, about 60 billion to about 250 billion EVs / mL. Optionally, about 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, or 15 mL is administered. As a non-limiting example, 5 mL. The number of EVs in the composition may be about 10 million to about 1 trillion. The composition may be administered intradermally.

[0014] One aspect of this disclosure is a method for treating irradiated skin of a subject, the method comprising administering to the subject a composition comprising a therapeutic mesenchymal stem cell (MSC) secretome composition containing extracellular vesicles (EVs), wherein the therapeutic MSC secretome comprises: (i) ferritin, NUP85, LAMP2, GPR115, serine protease inhibitor F1, OPN, PAI-1, DAPP1, cathepsin B, brain signaling protein 6C, PDGF R α, Sorting protein, Serine protease inhibitor B6, Dkk-3, Coagulation regulator protein, PF4, MIF, Periostrin, Flin protease, TIMP-1, Gynostemma pentaglycoside, PCK1, CD99, CD63, CD9, CD81, Transferrin, DcR3, Optical proteoglycan, TIMP-2, SLITRK5, FAP, Neurosphingomyelin, DPPII, cIAP-1, Pentanoic acid 3, Lactopeptidase, Enkephalin, Albumin, Galactoglobin-1, UNC5H3, IL-20 Rβ, SREC-II, JAM-C, TNF-α, htPAPP-A, eNOS, MSP-R, TPP1, LAMP1, B2M, NCAM-1, HIF-1 α, ST6GAL1, CD99-L2, convolutional protein A4, EMMPRIN, p53, brain signaling protein 7A, NKp80, cysteine ​​protease protein B, osteoadhesion, mid-term factor, calreticulin, osteoactivin, asparagine endopeptidase, TAZ, cathepsin L, RBP4, serine protease inhibitor A4, JAM-A, MCSF, LIMPII, OPG, IL-22, galactoglobulin-3, MOG, trypsin 3, SIRP α, cohesin-4, IGFBP-4, IL-1 R6, GSTM1, NUP85, LAMP2, transmembrane peptidase A, IL-1 F10, bIG-H3, GPR115, TGFb1, liver glycoside A4, CD109, serine protease inhibitor F1, IGFBP-6, HS3ST4, aminopeptidase LRAP, OPN, PAI-1, DAPP1, GDF-9, cathepsin B, IGFBP-2, brain signaling protein 6C, IGF-2, PDGFR α, sorting protein, serine protease inhibitor B6, Dkk-3, CNTF, TSP-1, GM-CSF Ra, coagulation regulatory protein, endosaccharides, IGFBP-3, RGM-C, PF4, MIF, TGM4, periosteal protein, furin protease, TIMP-1, PAPP-A, dermal proteoglycans, PCK1, arylsulfatase A, CD99, CA2, PRDX4, transferrin, DcR3, GP73, LAIR2, ULBP-4, optical proteoglycans, TIMP-2, TFPI, SOX2, SLITRK5, FAP, spinal proteinENPP-2, CD97, CTACK, integrin α1, EXTL3, IL-18, BPa, PD-L2, PSMA, IL-20 Ra, glyoxalase II, trypsin I, IGF-2R, ADAMTSL-1, erythropoietin, plexin D1, DNMT3A, BCL-2, CL-P1, hepatocyte glycoside-B3, FABP6, CHI3L1, FCRLS, TFF3, leptospirin, DPPII, cIAP-1, PDGF Rb, pentameric protein 3, angiotensinogen, follicle-stimulating hormone, CF VII, persephin, TRAIL R1, THAP11, CD200, CLEC-2, AMIGO, IGFBP-5, PON1, SOX7, GALNT10, endothelin, granulosin precursor, PCSK2, GKN1, IL-18, enkephalin, stabilizer-2, IL-17 RD, albumin, follicle-stimulating protein 1, MMP-10, FKBP51, LRRC4, Pref-1, galactoglobin-1, troponin C, UNC5H3, FLRT2, CD314, brain signaling protein 6B, cytokinin-4, CD27 ligand, IL-20 Rβ, brain signaling protein 6A, TSK, cytokeratin-8, CHST3, Mcl-1, DPPIV, SREC-II, norin, JAM-C, Bcl-10, Wnt-4, LSECtin, Kell, TNF RI, PTP1B, htPAPP-A, IDO, PDGF-CC, Glycopropyl peptide, Activator Protein A, TLR2, SCCA2, FABP1, eNOS, SHP-1, ICOS, C1qTNF9, MMP-1, TC-PTP, IL-24, gp130, C-myc, LILRB4, BMP-2, MIA, CD34, CD63, CD9, CD81, IFNab R2, Phosphatidylinositol Proteoglycan 2, MSP R, DSCAM, Membrane-type Serine Protease, KIR2DL3, CD30, Salivary Agglutinin-10, CLEC-1, TPP1, Ubiquitin+1, ANGPTL4, TWEAK R, Nestin-1, CD2, Kallikrein 1, TSLPR, LAMP1, TROY, VCAM-1, Salivary agglutinin-11, S100A1, PAR1, Thyroid peroxidase, Aminopeptidase P2, IL-1RI, ADAMS, OSM Rβ, Platelet-Reactive Protein-2, SMPD1, B2M, MFRP, LRP-6, ST3GAL1, NCAM-1 (CD56), Granulase B, Lipocontin, IL-22BP, TPST2, PD-ECGF, LH, LEDGF, Cyr61, ULBP-3, IFNb, THSD1, FGF-23, LAMA4, LipoproteinAIF, SorCS2, SULT2A1, CD39L2, Insulin R, HIF-1 α, OX40 ligand, Pax3, UCH-L3, cMASP3, Langerin, Desmin, SOX9, ST6GAL1, MEP1B, CD99-L2, Convolutional protein A4, Brain signaling protein 4D, ROBO2, PDX-1, APRIL, Neural rank protein, cyclic transmembrane protein-2, EMMPRIN, activator protein RIB, neuroligand 2, epithelial regulatory protein, CASA, MMP-12, GALNT2, CEACAM-5, VEGF R1, DSPG3, SorCS1, Extracellular matrix protein-2, sFRP-3, p53, EphB3, NCK1, Brain signaling protein 7A, NKp80, Prolactin, Cysteine ​​protease protein B, Sirtuin 1, FGF-16, FGF R5, NQO-1, Brain signaling protein 6D, FGF-3, GATA-4, VAP-A, CHST2, Pregnancy-associated plasma protein-2, Cohesin-3, Serpentin-1, AKR1C4, Oligosin-2, Osteoadhesin, NKp44, Thyroglobulin, IL-21R, Chemokines, EphA1, CD48, MICB, FGF-5, TRANCE, CES2, ULBP-1, Integrin α 5. VAMP-2, FLRG, Ret metaphase factor, CD73, TRAP, proGRP, granzyme H, PRX2, p2'7, salivary lectin-6, dendritic cell-associated C-type lectin-1, CD51, Notch-1, calreticulin, DR3, DCTN1, CDC25B, bone activator, ACE, CA125, HAO-1, ​​PSMA1, FCRLB, BMP-9, CRIM1, LIF, SPINK1, EphB6, RGM-B, HS3ST1, ROR1, CMG-2, 4-1BB ligand, L1CAM-2, p63, cathepsin V, testosterone-2, phosphatidylinositol proteoglycan 5, CD6, salivary lectin-2, asparagine endopeptidase, PRELP, CES1, TAZ, NSE, TECK, HTRA2, HIF-1 β, TAFA1, podocyte protein, RalA, CRELD2, GRAP2, SP-D, BID, GFR α-2, Notch-3, VEGF R3, DLL4, TGFb2, LIGHT, XIAP, ST8SIA1, cathepsin L, 6-Ckine, MIS RII, kallikrein 5, TGM3, FCAR, contactin-2, CD83, IL-1R3, SALM4, GBA3, ROBO4, OSCAR, VEGF, IGSF3, disaccharide proteoglycan, neurodevelopmental factor, ILT4, uPAR, Axl, WIF-1IL-7 Rα, GPR56, CEACAM-3, MCEMP1, FABP2, plexin B3, MEPE, activator RIIA, ANG-2, Cochlin, progerin 1, NPTXR, SLAM, COMT, SPHK1, RBP4, stalkin-1, GUSB, nestin-2, IL-17F, SR-AI, TAFA2, N-cadherin, IL-17B, IL-17RC, MIP-3b, cysteine ​​protease C, cysteine ​​protease D, AMSH, FcERI, CLEC10A, HGF R, ANG-1, prolactin R, FGF-20, CD28, Nogo-A, HSD17B1, IL-19, intestinal peptidase, cathepsin E, TSLP, TCN2, GDF-15, epidermal morphogenetics, GRKS, PD-1, serine protease inhibitor A4, ADAM23, NOV, galactoglobulin-2, neuronal surface protein 3β, TLR3, Sirtuin2, Numb, IL-28 Rα, IL-33, Lin28, FCRL1, KLF4, NKp30, lymphocyte chemokine, cysteine ​​protease protein SN, JAM-A, calreticulin-2, ErbB4, BMP-8, IL-27 Ra, Fas, IL-4 Ra, kallikrein 14, extracellular matrix protein-3, Oligo2, kallikrein 12, CA13, IL-9, stalk protein-3, MPIF-1, cysteine ​​protease protein S, ADA, IL-2 Rb, GFR α-1, Smad4, ICAM-1, MEF2C, TREM-1, L-selectin, transmembrane serine protease, CD42b, MCSF, RANK, CHST4, CA8, FCRL3, ASAH2, CF XIV, PYY, HGF, I-TAC, brain signaling protein 4C, SorCS3, Tie-1, IL-31 RA, Arginase 1, POGLUT1, IL-1ra, Flatfoot protein, TIM-3, CREG, CD300f, uPA, EphA2, LLRTM4, LIMPII, Tenosynovin R, CPE, PECAM-1, DNAM-1, DKK-1, OPG, CPB1, TSH, MMP-2, Salivary lectin-9, ICAM-3, Cysteine ​​protease inhibitor SA, Galactohemagglutinin-4, Pepsinogen II, Desmosome core protein-3, Stalk protein-4, SCF, Serine protease inhibitor A5, PTH, FGF-19, MSP, IL-28A, FGF-12, METAP2, ASAHL, EDIL3, NTAL, EGF R, TAFAS, Galactohemagglutinin-9, vWF-A2, TACE, Activator protein RIM, Cathepsin S, LDL RBMPR-IA, OX40, IL-13 R2, B7-H4, MMP-13, ANGPTL7, TRAIL R4, IGSF4B, Sirtuin 5, PEAR1, SH2D1A, Cerberus 1, GDF-11, Nrf2, TROP-2, NUDTS, ROR2, EphB4, phosphatidylinositol proteoglycan 1, LAP (TGFb1), Gash, contactin-1, IL-27, UNC5H4, ICAM-2, MBL, HS3ST3B1, RCOR1, IL-10 Rb, XEDAR, IL-22, PILR-α, NRG1-131, FABP4, RGM-A, RELT, TrkC, CSa, SREC-I, neural epithelial stem cell protein, TPO, ErbB3, Kirrel3, FLRT1, galactoglobulin-3, CXCL16, JAM-B, DR6, Nogo receptor, TLR4, VEGF R2, Tie-2, IL-15 R, Caspr2, LTbR, LAMP, ALCAM, GLP-1, NG2, IL-22 Rα 1, AMIGO2, HCC-1, TFPI-2, ULBP-2, desmosome core protein 2, agglutinin, synaptic fusion protein 4, VAMP-1, stalkin-2, FGF-21, Flt-3, GFAP, TIM-1, inhibin A, cadherin-4, PIGF-2, neurogranulin, HE4, IL-23 R, galactoglobulin-7, GALNT3, GITR L, CD14, R-vertebral protein 2, CK19, cardiotrophin-1, TREML1, HAPLN1, CD27, ANG-4, salivary immunoglobulin-7, CD155, VEGF-C, TNF RII, PGRP-S, SDF-1a, PDGF-AB, GPVI, CD40, SCF R, platelet-reactive protein-5, IL-1 RII, neurofeedin-2, cadherin-13, E-selectin, GITR, WISP-1, renin, AgRP, MDL-1, ROBO3, RANTES, endothelial cell-specific molecules, granzyme, hCGb, mesothelin, TLR1, TRAIL, MOG, DDR1, NGF R, TRAIL R3, trypsin 3, ARSB, LIF Rα, BAFFR, CD157, granzyme A, 2B4, ESAM, IL-1 R4, CXCL14, IL-31, SIRP α, urinary modulatory proteins, CTRC, CEACAM-1, TARC, MIP-3a, SDF-1b, NKp46, MCP-3, IL-32 α, TGFb3, FOLR2, CD58, IL-23, CD36, TNFb, Shh-N, fibrinogen-1, Reg4ILT2, Mer, TREM-2, Flt-3L, CDS, IL-6, CD229, Insulin, Synaptic Fusion Protein 6, GRO, Bcl-w, Lipocrine-2, PDGF-AA, IL-2 Ra, Angiopoietin, LYVE-1, CD4, RAGE, CDNF, Short Proteoglycan, NAP-2, PU.1, EDAR, ADAMTS13, Kynureninase, PTH1R, IFN-γ R1, CrkL, B7-1, PARC, Draxin, VE-cadherin, Procalcitonin, SOX15, Kallikrein 11, BCMA, Dendritic Cell-Associated C-Lectin-2, EpCAM, HCC-4, TGFa, IP-10, BLAME, CILP-1, PIGF, LOX-1, MCP-2, Resistin, HVEM, ENPP-7, Cohesin-Glycan-4, IL-2 Rg, MICA, dopa decarboxylase, NPDC-1, MCP-4, EG-VEGF, glycoprotein V, brain signaling protein 4G, IL-12p40, total PSA, IL-15, MAP1D, C1q, TNF4, Dtk, endothelial glycoprotein, ENA-78, Reg3A, MIP-1b, FGF-17, IL-6R, IL-8, galactolectin-8, CA4, cysteine ​​protease protein EM, FUT8, B7-H 3. GCP-2, CD40L, MDC, 4-1BB, HO-1, SOST, S100A13, kallikrein 7 or IL-13 or a combination of two or more thereof; (ii) hsa-let-7a-5p, hsa-let-7b-5p, hsa-let-7c-5p, hsa-let-7d-3p, hsa-let-7e-5p, hsa-let-7g-5p, hsa-let-7i, hs a-let-7i-5p, hsa-miR-100-5p, hsa-miR-103a-3p, hsa-miR-106a-5p, hsa-miR-106b-5p, hsa-mir- 10b, hsa-miR-10b-5p, hsa-mir-1246, hsa-miR-1246, hsa-miR-125a-5p, hsa-miR-125b-5p, hsa-mi R-130a-3p, hsa-mir-130b, hsa-miR-130b-3p, hsa-miR-132-3p, hsa-miR-136-5p, hsa-miR-138-5p , hsa-miR-139-5p, hsa-mir-140, hsa-miR-140-3p, hsa-miR-145-5p, hsa-mir-146a, hsa-miR-146a- 5p, hsa-miR-148a-3p,hsa-miR-152-3p, hsa-miR-15a-5p, hsa-miR-15b-5p, hsa-mir-16-1, hsa-mir-16-2, hsa-miR-16-5p, hsa-miR-1'7-5p, hsa-miR-181a-5p, hsa-miR-191-5p, hsa-miR-193a-5p, hsa-miR-193b-3p, hsa-miR-19'7-3p, hsa-miR-199a-3p, hsa-miR-199a-5p, hsa-miR-199b-5p, hsa-miR-19a-3p, hsa-mi R-19b-3p, hsa-miR-20a-5p, hsa-mir-203a, hsa-miR-203a-3p, hsa-miR-214-3p, hsa-mir-21, hsa-miR-21-3p, hsa-miR-21-5p, hsa-mir-221, hsa-miR-221-3p, hsa-mir-222, hsa-miR-222-3p, hsa-miR-22-3p, hsa-miR-23a-3p, hsa-miR-23b-3p, hsa-mir-24-1, hsa-mir-24-2, hsa-miR-24-3p, hsa- mir-25, hsa-miR-25-3p, hsa-miR-26a-5p, hsa-miR-27a-3p, hsa-mir-27b, hsa-miR-27b-3p, hsa-miR-29a-3p, hsa-miR-29c-3p, hsa-miR-30a-5p, hsa-miR-30a-5p, hsa-miR-30b-5p, hsa-miR-30c-5p, hsa-mir-30d, hsa-miR-30d-5p, hsa-mir-30e, hsa-miR-30e-5p, hsa-miR-31-3p, hsa-miR-31-5p hsa-miR-320a hsa-miR-342-3p hsa-miR-345-5p hsa-miR-34a-5p hsa-miR-361-5p hsa-miR-376a-3p hsa-miR-376c-3p hsa-miR-423-3p hsa -miR-423-5p, hsa-miR-424-5p, hsa-miR-484, hsa-mir-486-1, hsa-mir-486-2, hsa-miR-486-5p, hsa-miR-570-3p, hsa-miR-574-3p, hsa-miR-663ahsa-miR-874-3p, hsa-mir-92a-1, hsa-mir-92a-2, hsa-miR-92a-3p, hsa-miR-92b-3p, hsa-mir-93, hsa-miR-93-5p, hsa-miR-940, hsa-miR-99a-5p, or hsa-miR-99b-5p, or a combination of two or more thereof; or both (iii), (i), and (ii). Another aspect of this disclosure is a method for treating radiation-induced fibrosis (RIF), comprising administering a therapeutic MSC secretion group composition to a subject. Another aspect of this disclosure is a method for treating radiation fibrosis syndrome (RFS), comprising administering a therapeutic MSC secretion group composition to a subject. Another aspect of this disclosure is a method for alleviating radiation therapy-related symptoms of the skin in a subject, comprising administering a therapeutic MSC secretion group composition to the subject. Another aspect of this disclosure is a method for improving one or more skin characteristics selected from: fibrosis, hardening, thickening, induration, inflammation, skin firmness, elastin content and / or collagen content, and combinations thereof, the method comprising applying a therapeutic MSC secretome composition to a subject. In some embodiments, the extracellular vesicles in the therapeutic MSC secretome composition are CD63+CD9-CD81-. In some implementations, the therapeutic MSC secretion group includes: (i) ferritin, NUP85, LAMP2, GPR115, serine protease inhibitor F1, OPN, PAI-1, DAPP1, cathepsin B, brain signaling protein 6C, PDGF Rα, sorting protein, serine protease inhibitor B6, Dkk-3, coagulation regulator protein, PF4, MIF, periostealin, furin, TIMP-1, tretinoin, PCK1, CD99, CD63, CD9, CD81, transferrin, DcR3, photoglucan, TIMP-2, SLITRK5, FAP, sphingomyelin, DPPII, cIAP-1, pentamericin 3, lactone, enkephalinase, albumin, galactolectin-1, UNC5H3, IL-20 Rβ, SREC-II, JAM-C, TNF-α, htPAPP-A, eNOS, MSP R, TPP1, LAMP1, B2M, NCAM-1, HIF-1 α, ST6GAL1, CD99-L2, plexin A4, EMMPRIN, p53, brain signaling protein 7A, NKp80, cysteine ​​protease protein B, osteoadhesion, mid-term factor, calreticulin, osteoactivin, asparagine endopeptidase, TAZ, cathepsin L, RBP4, serine protease inhibitor A4, JAM-A, MCSF, LIMPII, OPG, IL-22, galactolectin-3, MOG, trypsin 3SIRP α, cohesin-4, IGFBP-4, IL-1 R6, GSTM1, NUP85, LAMP2, transmembrane peptidase A, IL-1 F10, big-H3, GPR115, TGFb1, liver glycoside A4, CD109, serine protease inhibitor F1, IGFBP-6, HS3ST4, aminopeptidase LRAP, OPN, PAI-1, DAPP1, GDF-9, cathepsin B, IGFBP-2, brain signaling protein 6C, IGF-2, PDGF R α, sorting protein, serine protease inhibitor B6, Dkk-3, CNTF, TSP-1, GM-CSF Ra, coagulation regulatory protein, endosaccharides, IGFBP-3, RGM-C, PF4, MIF, TGM4, periosteal protein, furin, TIMP-1, PAPP-A, dermal proteoglycan, PCK1, arylsulfatase A, CD99, CA2, PRDX4, transferrin, DCR3, GP73, LAIR2, ULBP-4, optical proteoglycan, TIMP-2, TFPI, SOX2, SLITRK5, FAP, spinal cord protein, ENPP-2, CD97, CTACK, integrin α1, EXTL3, IL-18, BPa, PD-L2, PSMA, IL-20 Ra, Glyoxalase II, Trypsin I, IGF-2R, ADAMTS L1-1, Erythropoietin, Convolutional D1, DNMT3A, BCL-2, CL-P1, Hepatocyte-B3, FABP6, CHI3L1, FCRLS, TFF3, Nephlebotomycin, DPPII, cIAP-1, PDGF Rb, Pentanoic Acid 3, Angiotensinogen, Follicle-Stapressin, CFVII, Persephin, TRAIL R1, THAP11, CD200, CLEC-2, AMIGO, IGFBP-5, PON1, SOX7, GALNT10, Lactobacillus, Pre-granulosin, PCSK2, GKN1, IL-18, Enkephalin, Stabilin-2, IL-17 RD, albumin, follicle-stimulating protein 1, MMP-10, FKBP51, LRRC4, Pref-1, galactoglobin-1, troponin C, UNC5H3, FLRT2, CD314, brain signaling protein 6B, cytokinin-4, CD27 ligand, IL-20 Rβ, brain signaling protein 6A, TSK, cytokeratin-8, CHST3, Mcl-1, DPPIV, SREC-II, norin, JAM-C, Bcl-10, Wnt-4, LSECtin, Kell, TNF-α, PTP1B, htPAPP-A, IDO, PDGF-CC, glycopeptide, activator protein A, TLR2, SCCA2, FABP1, eNOS, SHP-1, ICOSC1qTNF9, MMP-1, TC-PTP, IL-24, gp130, C-myc, LILRB4, BMP-2, MIA, CD34, CD63, CD9, CD81, IFNab R2, phosphatidylinositol proteoglycan 2, MSP R, DSCAM, membrane serine protease, KIR2DL3, CD30, salivary lectin-10, CLEC-1, TPP1, ubiquitin+1, ANGPTL4, TWEAK R, nestin-1, CD2, kallikrein 1, TSLPR, LAMP1, TROY, VCAM-1, salivary lectin-11, S100A1, PAR1, thyroid peroxidase, aminopeptidase P2, IL-1RI, ADAMS, OSM Rβ, platelet-reactive protein-2, SMPD1, B2M, MFRP, LRP-6, ST3GAL1, NCAM-1 (CD56), Granulase B, Lipconin, IL-22BP, TPST2, PD-ECGF, LH, LEDGF, Cyr61, ULBP-3, IFNb, THSD1, FGF-23, LAMA4, Lipoprotein, AIF, SorCS2, SULT2A1, CD39L2, Insulin R, HIF-1 α, OX40 ligand, Pax3, UCH-L3, cMASP3, Langerin, Desmin, SOX9, ST6GAL1, MEP1B, CD99-L2, Convolutional protein A4, Brain signaling protein 4D, ROBO2, PDX-1, APRIL, Neuro-rankin, Circular transmembrane protein-2, EMMPRIN, Activator protein RIB, Neuroligand 2, Epithelial regulatory protein, CASA, MMP-12, GALNT2, CEACAM-5, VEGF R1, DSPG3, SorCS1, extracellular matrix protein-2, sFRP-3, p53, EphB3, NCK1, brain signaling protein 7A, NKp80, prolactin, cysteine ​​agonist protein B, Sirtuin 1, FGF-16, FGF R5, NQO-1, brain signaling protein 6D, FGF-3, GATA-4, VAP-A, CHST2, pregnancy-associated plasma protein-2, cohesin-3, serrated protein 1, AKR1C4, olfactory mesrin-2, osteoadhesion, NKp44, thyroglobulin, IL-21R, chemokines, EphA1, CD48, MICB, FGF-5, TRANCE, CES2, ULBP-1, integrin α 5. VAMP-2, FLRG, Ret metaphase factor, CD73, TRACP, proGRP, granzyme H, PRX2, p27, salivary lectin-6, dendritic cell-associated C-type lectin-1, CD51, Notch-1, calreticulin, DR3, DCTN1, CDC25B, bone activatorACE, CA125, HAO-1, ​​PSMA1, FCRLB, BMP-9, CRIM1, LIF, SPINK1, EphB6, RGM-B, HS3ST1, ROR1, CMG-2, 4-1BB ligand, L1CAM-2, p63, cathepsin V, testis proteoglycan 2, phosphatidylinositol proteoglycan 5, CD6, salivary lectin-2, asparagine endopeptidase, PRELP, CES1, TAZ, NSE, TECK, HTRA2, HIF-1 β, TAFA1, podocyte protein, RalA, CRELD2, GRAP2, SP-D, BID, GFR α-2, Notch-3, VEGF R3, DLL4, TGFb2, LIGHT, XIAP, ST8SIA1, cathepsin L, 6-Ckine, MIS RII, kallikrein 5, TGM3, FCAR, contactin-2, CD83, IL-1R3, SALM4, GBA3, ROBO4, OSCAR, VEGF, IGSF3, disaccharide proteoglycan, neurodevelopmental factor, ILT4, uPAR, Axl, WIF-1, IL-7Rα, GPR56, CEACAM-3, MCEMP1, FABP2, plexin B3, MEPE, activator protein RIIA, ANG-2, Cochlin, progerin 1, NPTXR, SLAM, COMT, SPHK1, RBP4, stalkin-1, GUSB, nestin-2, IL-17F, SR-AI, TAFA2, N-cadherin, IL-17B, IL-17RC, MIP-3b, cysteine ​​protease protein C, cysteine ​​protease protein D, AMSH, FcERI, CLEC10A, HGF R, ANG-1, prolactin R, FGF-20, CD28, Nogo-A, HSD17B1, IL-19, intestinal peptidase, cathepsin E, TSLP, TCN2, GDF-15, epidermal morphogenetics, GRKS, PD-1, serine protease inhibitor A4, ADAM23, NOV, galactoglobulin-2, neuronal surface protein 3β, TLR3, Sirtuin2, Numb, IL-28 Rα, IL-33, Lin28, FCRL1, KLF4, NKp30, lymphocyte chemokine, cysteine ​​protease protein SN, JAM-A, calreticulin-2, ErbB4, BMP-8, IL-27 Ra, Fas, IL-4 Ra, kallikrein 14, extracellular matrix protein-3, Olig2, kallikrein 12, CA13, IL-9, stalk protein-3, MPIF-1, cysteine ​​protease protein S, ADA, IL-2, Rb, GFR α-1, Smad4, ICAM-1, MEF2C, TREM-1L-selectin, transmembrane serine protease, CD42b, MCSF, RANK, CHST4, CA8, FCRL3, ASAH2, CF XIV, PYY, HGF, I-TAC, brain signaling protein 4C, SorCS3, Tie-1, IL-31 RA, Arginase 1, POGLUT1, IL-1ra, Flatfoot protein, TIM-3, CREG, CD300f, uPA, EphA2, LLRTM4, LIMPII, Tenosynovin R, CPE, PECAM-1, DNAM-1, DKK-1, OPG, CPB1, TSH, MMP-2, Salivary lectin-9, ICAM-3, Cysteine ​​protease inhibitor SA, Galactohemagglutinin-4, Pepsinogen II, Desmosome core protein-3, Stalk protein-4, SCF, Serine protease inhibitor A5, PTH, FGF-19, MSP, IL-28A, FGF-12, METAP2, ASAHL, EDIL3, NTAL, EGF R, TAFAS, Galactohemagglutinin-9, vWF-A2, TACE, Activator protein RIM, Cathepsin S, LDL R, BMPR-IA, OX40, IL-13 R2, B7-H4, MMP-13, ANGPTL7, TRAIL R4, IGSF4B, Sirtuin 5, PEAR1, SH2D1A, Cerberus 1, GDF-11, Nrf2, TROP-2, NUDTS, ROR2, EphB4, phosphatidylinositol proteoglycan 1, LAP (TGFb1), Gash, contactin-1, IL-27, UNC5H4, ICAM-2, MBL, HS3ST3B1, RCOR1, IL-10 Rb, XEDAR, IL-22, PILR-α, NRG1-131, FABP4, RGM-A, RELT, TrkC, CSa, SREC-I, neural epithelial stem cell protein, TPO, ErbB3, Kirrel3, FLRT1, galactoglobulin-3, CXCL16, JAM-B, DR6, Nogo receptor, TLR4, VEGF R2, Tie-2, IL-15 R, Caspr2, LTbR, LAMP, ALCAM, GLP-1, NG2, IL-22 Rα 1, AMIGO2, HCC-1, TFPI-2, ULBP-2, desmosome core protein 2, agglutinin, synaptic fusion protein 4, VAMP-1, stalkin-2, FGF-21, Flt-3, GFAP, TIM-1, inhibin A, cadherin-4, PIGF-2, neurogranulin, HE4, IL-23 R, galactolectin-7, GALNT3, GITR L, CD14, R-vertebral protein 2, CK19, cardiotrophin-1, TREML1HAPLN1, CD27, ANG-4, sialohemagglutinin-7, CD155, VEGF-C, TNF RII, PGRP-S, SDF-1a, PDGF-AB, GPVI, CD40, SCF R, thromboretin-5, IL-1 RII, neurofeedin-2, cadherin-13, E-selectin, GITR, WISP-1, renin, AgRP, MDL-1, ROBO3, RANTES, endothelial cell-specific molecules, granzyme, hCGb, mesothelin, TLR1, TRAIL, MOG, DDR1, NGF R, TRAIL R3, trypsin 3, ARSB, LIF Rα, BAFFR, CD157, granzyme A, 2B4, ESAM, IL-1 R4, CXCL14, IL-31, SIRP α, Urinary Modulatory Protein, CTRC, CEACAM-1, TARC, MIP-3a, SDF-1b, NKp46, MCP-3, IL-32, α, TGFb3, FOLR2, CD58, IL-23, CD36, TNFb, Shh-N, Fibrin-1, Reg4, ILT2, Mer, TREM-2, Flt-3L, CDS, IL-6, CD229, Insulin, Synaptic Fusion Protein 6, GRO, Bcl-w, Lipocrine-2, PDGF-AA, IL-2 Ra, Angiopoietin, LYVE-1, CD4, RAGE, CDNF, Short Proteoglycan, NAP-2, PU.1, EDAR, ADAMTS13, Kynurenin, PTH1R, IFN-γ R1, CrkL, B7-1, PARC, Draxin, VE-cadherin, procalcitonin, SOX15, kallikrein 11, BCMA, dendritic cell-associated C-lectin-2, EpCAM, HCC-4, TGFa, IP-10, BLAME, CILP-1, PIGF, LOX-1, MCP-2, resistin, HVEM, ENPP-7, cohesin-4, IL-2 Rg, MICA, dopa decarboxylase, NPDC-1, MCP-4, EG-VEGF, glycoprotein V, brain signaling protein 4G, IL-12p40, total PSA, IL-15, MAP1D, C1q, TNF4, Dtk, endothelial glycoprotein, ENA-78, Reg3A, MIP-1b, FGF-17, IL-6R, IL-8, galactoglobulin-8, CA4, cysteine ​​protease protein EM, FUT8, B7-H3, GCP-2, CD40L, MDC, 4-1BB, HO-1, SOST, S100A13, kallikrein 7 or IL-13 or a combination of two or more thereof; (ii) hsa-let-7a-5p, hsa-let-7b-5p,hsa-let-7c-5p、hsa-let-7d-3p、hsa-let-7e-5p、hsa-let-7g-5p、hsa-let-7i、hsa-let-7i-5p、hsa-miR-100-5p、hsa-miR-103a-3p、hsa-miR-106a-5p、hsa-miR-106b-5p、hsa-mir-10b、hsa-miR-10b-5p、hsa-mir-1246、hsa-miR-1246、hsa-miR-125a-5p、hsa-miR-125b-5p、hsa-miR-130a-3p、hsa-mir-130b、hsa-miR-130b-3p、hsa-miR-132-3p、hsa-miR-136-5p、hsa-miR-138-5p、hsa-miR-139-5p、hsa-mir-140、hsa-miR-140-3p、hsa-miR-145-5p、hsa-mir-146a、hsa-miR-146a- 5p、hsa-miR-148a-3p、hsa-miR-152-3p、hsa-miR-15a-5p、hsa-miR-15b-5p、hsa-mir-16-1、hsa-mir-16-2、hsa-miR-16-5p、hsa-miR-1’7-5p、hsa-miR-181a-5p、hsa-miR-191-5p、hsa-miR-193a-5p、hsa-miR-193b-3p、hsa-miR-19’7-3p、hsa-miR-199a-3p、hsa-miR-199a-5p、hsa-miR-199b-5p、hsa-miR-19a-3p、hsa-miR-19b-3p、hsa-miR-20a-5p、hsa-mir-203a、hsa-miR-203a-3p、hsa-miR-214-3p、hsa-mir-21、hsa-miR-21-3p、hsa-miR-21-5p、hsa-mir-221、hsa-miR-221-3p、hsa-mir-222、hsa-miR-222-3p、hsa-miR-22-3p、hsa-miR-23a-3p、hsa-miR-23b-3p、hsa-mir-24-1、hsa-mir-24-2、hsa-miR-24-3p、hsa-mir-25、hsa-miR-25-3p、hsa-miR-26a-5p、hsa-miR-27a-3p、hsa-mir-27b、hsa-miR-27b-3p、hsa-miR-29a-3p, hsa-miR-29c-3p, hsa-miR-30a-5p, hsa-miR-30a-5p, hsa-miR-30b-5 p, hsa-miR-30c-5p, hsa-mir-30d, hsa-miR-30d-5p, hsa-mir-30e, hsa-miR-30e-5p, hsa -miR-31-3p, hsa-miR-31-5p, hsa-miR-320a, hsa-miR-342-3p, hsa-miR-345-5p, hsa-m iR-34a-5p, hsa-miR-361-5p, hsa-miR-376a-3p, hsa-miR-376c-3p, hsa-miR-423-3p, hs a-miR-423-5p, hsa-miR-424-5p, hsa-miR-484, hsa-mir-486-1, hsa-mir-486-2, hsa-miR-486-5p, hsa-miR-570-3p, hsa-miR-574-3p, hsa-miR-663a, hsa-miR-874-3p, hsa-mir-92a-1, hsa-mir-92a-2, hsa-miR-92a-3p, hsa-miR-92b-3p, hsa-mir-93, hsa-miR-93-5p, hsa-miR-940, hsa-miR-99a-5p or hsa-miR-99b-5p, or a combination of two or more thereof; or both (iii), (i) and (ii). In some embodiments, the therapeutic MSC secretome composition is prepared by a method comprising the following steps: (a) culturing bone marrow-derived MSCs under conditions of (i) oxygen tension below 5%; and (ii) a pH below 7; (b) harvesting the MSC conditioned medium; and (c) preparing the MSC conditioned medium to produce the therapeutic MSC secretome composition, wherein the therapeutic MSC secretome composition comprises proteins and extracellular vesicles produced by the bone marrow-derived MSCs in step (a). In some embodiments, the subject has been diagnosed with cancer. In some embodiments, the subject has been diagnosed with skin cancer. In some embodiments, the subject has fibrotic irradiated breast tissue. In some embodiments, the subject experiences improvement after treatment in one or more of the following skin characteristics: fibrosis, hardening, thickening, induration, inflammation, skin stiffness,Elastin content and / or collagen content, and combinations thereof. In some embodiments, the composition comprises 5 mL of a therapeutic MSC secretory composition. In some embodiments, the composition is injected into irradiated skin. The composition may have an EV concentration of at least about 60 billion EVs / mL, for example, about 60 billion to about 250 billion EVs / mL. Optionally, about 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, or 15 mL is administered. As a non-limiting example, 5 mL. The number of EVs in the composition may be about 10 million to about 1 trillion. The composition may be administered intradermally.

[0015] One aspect of this disclosure is a method for treating irradiated skin of a subject, the method comprising administering to the subject a composition comprising a therapeutic mesenchymal stem cell (MSC) secretome composition containing extracellular vesicles (EVs), wherein the composition comprises 5 mL of the therapeutic MSC secretome composition. Another aspect of this disclosure is a method for treating irradiated skin of a subject, the method comprising administering to the subject a composition comprising a therapeutic mesenchymal stem cell (MSC) secretome composition containing extracellular vesicles (EVs), wherein the administration improves one or more of the following skin characteristics: fibrosis, hardening, thickening, induration, inflammation, skin firmness, elastin content and / or collagen content, and combinations thereof. In some embodiments, the administration reduces skin firmness. In some embodiments, skin firmness is measured using a SkinFibroMeter reading. In some embodiments, the administration reduces the SkinFibroMeter reading by at least 5%, 10%, 15%, 20%, 25%, 30%, 35%, 40%, 45%, or 50%. In some embodiments, skin firmness is measured in Newtons. In some embodiments, application reduces skin stiffness by at least 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, or 25 Newtons. In some embodiments, application results in improvement in one or more of fibrosis, necrosis, type I collagen, and / or elastin scores. In some embodiments, improvement in elastin scores includes improvement in the quality, quantity, and / or distribution of elastin fibers. In some embodiments, application improves inflammation.

[0016] One aspect of this disclosure is the use of a composition comprising a therapeutic mesenchymal stem cell (MSC) secretome composition containing extracellular vesicles in irradiated skin of a subject, wherein at least 80% of the extracellular vesicles in the therapeutic MSC secretome composition are CD63+CD9-CD81-. Another aspect of this disclosure is the use of a composition comprising a therapeutic mesenchymal stem cell (MSC) secretome composition containing extracellular vesicles (EVs) in treating irradiated skin of a subject in need, wherein the therapeutic mesenchymal stem cell (MSC) secretome composition comprises: (i) ferritin, NUP85, LAMP2, GPR115, serine protease inhibitor F1, OPN, PAI-1, DAPP1, cathepsin B, brain signaling protein 6C, PDGF R. α, Sorting protein, serine protease inhibitor B6, Dkk-3, coagulation regulator protein, PF4, MIF, periosteal protein, furin, TIMP-1, dermal proteoglycan, PCK1, CD99, CD63, CD9, CD81, transferrin, DcR3, photoglycan, TIMP-2, SLITRK5, FAP, leptospirin, DPPII, cIAP-1, pentameric protein 3, lactone, enkephalin, albumin, galactoglobin-1, UNC5H3, IL-20, β-reactive protein, SREC-II, JAM-C, TNF-α, htPAPP-A, eNOS, MSP, TPP1, LAMP1, B2M, NCAM-1, HIF-1 α, ST6GAL1, CD99-L2, convolutional protein A4, EMMPRIN, p53, brain signaling protein 7A, NKp80, cysteine ​​protease protein B, osteoadhesion, mid-term factor, calreticulin, osteoactivin, asparagine endopeptidase, TAZ, cathepsin L, RBP4, serine protease inhibitor A4, JAM-A, MCSF, LIMPII, OPG, IL-22, galactoglobulin-3, MOG, trypsin 3, SIRP α, cohesin-4, IGFBP-4, IL-1 R6, GSTM1, NUP85, LAMP2, transmembrane peptidase A, IL-1 F10, bIG-H3, GPR115, TGFb1, liver glycoside-A4, CD109, serine protease inhibitor F1, IGFBP-6, HS3ST4, aminopeptidase LRAP, OPN, PAI-1, DAPP1, GDF-9, cathepsin B, IGFBP-2, brain signaling protein 6C, IGF-2, PDGF Rα, sorting protein, serine protease inhibitor B6, Dkk-3, CNTF, TSP-1, GM-CSF Ra, coagulation regulatory protein, endosaccharide, IGFBP-3, RGM-C, PF4, MIF, TGM4, periosteal protein, furin, TIMP-1, PAPP-AGlycoprotein, PCK1, arylsulfatase A, CD99, CA2, PRDX4, transferrin, DCR3, GP73, LAIR2, ULBP-4, photoglycan, TIMP-2, TFPI, SOX2, SLITRK5, FAP, spinal cord protein, ENPP-2, CD97, CTACK, integrin α1, EXTL3, IL-18 BPa, PD-L2, PSMA, IL-20 Ra, glyoxalase II, trypsin I, IGF-2R, ADAMTSL-1, erythropoietin, globulin D1, DNMT3A, BCL-2, CL-P1, hepatocyte glycoside-B3, FABP6, CHI3L1, FCRLS, TFF3, leptospirin, DPPII, cIAP-1, PDGF Rb, pentamericin 3, angiotensinogen, follicle-stimulating hormone, CF VII, persephin, TRAIL R1, THAP11, CD200, CLEC-2, AMIGO, IGFBP-5, PON1, SOX7, GALNT10, endothelin, granulosa protein precursor, PCSK2, GKN1, IL-18, enkephalin, stabilizer-2, IL-17 RD, albumin, follicle-stimulating protein 1, MMP-10, FKBP51, LRRC4, Pref-1, galactoglobin-1, troponin C, UNC5H3, FLRT2, CD314, brain signaling protein 6B, cytokeratin-4, CD27 ligand, IL-20 Rβ, brain signaling protein 6A, TSK, cytokeratin-8, CHST3, Mcl-1, DPPIV, SREC-II, norin, JAM-C, Bcl-10, Wnt-4, LSECtin, Kell, TNF RI, PTP1B, htPAPP-A, IDO, PDGF-CC, Glycopropyl peptide, Activator Protein A, TLR2, SCCA2, FABP1, eNOS, SHP-1, ICOS, C1qTNF9, MMP-1, TC-PTP, IL-24, gp130, C-myc, LILRB4, BMP-2, MIA, CD34, CD63, CD9, CD81, IFNab R2, Phosphatidylinositol Proteoglycan 2, MSP R, DSCAM, Membrane-type Serine Protease, KIR2DL3, CD30, Salivary Agglutinin-10, CLEC-1, TPP1, Ubiquitin+1, ANGPTL4, TWEAK R, Nestin-1, CD2, Kallikrein 1, TSLP R, LAMP1, TROY, VCAM-1, salivary immunoglobulin-11, S100A1, PAR1, thyroid peroxidase, aminopeptidase P2, IL-1 RI, ADAMS, OSM R β, platelet-reactive protein-2, SMPD1, B2M, MFRP, LRP-6ST3GAL1, NCAM-1 (CD56), Granulase B, Lipconin, IL-22BP, TPST2, PD-ECGF, LH, LEDGF, Cyr61, ULBP-3, IFNb, THSD1, FGF-23, LAMA4, Lipoprotein, AIF, SorCS2, SULT2A1, CD39L2, Insulin R, HIF-1 α, OX40 ligand, Pax3, UCH-L3, cMASP3, Langerin, Desmin, SOX9, ST6GAL1, MEP1B, CD99-L2, Convolutional protein A4, Brain signaling protein 4D, ROBO2, PDX-1, APRIL, Neuro-rankin, Circular transmembrane protein-2, EMMPRIN, Activator protein RIB, Neuroligand 2, Epithelial regulatory protein, CASA, MMP-12, GALNT2, CEACAM-5, VEGF R1, DSPG3, SorCS1, extracellular matrix protein-2, sFRP-3, p53, EphB3, NCK1, brain signaling protein 7A, NKp80, prolactin, cysteine ​​agonist protein B, Sirtuin 1, FGF-16, FGF R5, NQO-1, brain signaling protein 6D, FGF-3, GATA-4, VAP-A, CHST2, pregnancy-associated plasma protein-2, cohesin-3, serrated protein 1, AKR1C4, olfactory mesrin-2, osteoadhesion, NKp44, thyroglobulin, IL-21R, chemokines, EphA1, CD48, MICB, FGF-5, TRANCE, CES2, ULBP-1, integrin α 5. VAMP-2, FLRG, Ret metaphase factor, CD73, TRAP, proGRP, granzyme H, PRX2, p2'7, salivary lectin-6, dendritic cell-associated C-type lectin-1, CD51, Notch-1, calreticulin, DR3, DCTN1, CDC25B, bone activator, ACE, CA125, HAO-1, ​​PSMA1, FCRLB, BMP-9, CRIM1, LIF, SPINK1, EphB6, RGM-B, HS3ST1, ROR1, CMG-2, 4-1BB ligand, L1CAM-2, p63, cathepsin V, testosterone-2, phosphatidylinositol proteoglycan 5, CD6, salivary lectin-2, asparagine endopeptidase, PRELP, CES1, TAZ, NSE, TECK, HTRA2, HIF-1 β, TAFA1, podocyte protein, RalA, CRELD2, GRAP2, SP-D, BID, GFR α-2, Notch-3, VEGF R3, DLL4, TGFb2, LIGHT, XIAP, ST8SIA1, cathepsin L, 6-Ckine, MIS RII,Kallikrein 5, TGM3, FCAR, Contactin-2, CD83, IL-1 R3, SALM4, GBA3, ROBO4, OSCAR, VEGF, IGSF3, Disaccharide proteoglycan, Neurodevelopmental factor, ILT4, uPAR, Axl, WIF-1, IL-7 Rα, GPR56, CEACAM-3, MCEMP1, FABP2, Convolutionin B3, MEPE, Activator Protein RIIA, ANG-2, Cochlin, Presenilin 1, NPTXR, SLAM, COMT, SPHK1, RBP4, Stalkin-1, GUSB, Nestin-2, IL-17F, SR-AI, TAFA2, N-cadherin, IL-17B, IL-17RC, MIP-3b, Cysteine ​​protein C, Cysteine ​​protein D, AMSH, FcERI, CLEC10A, HGF R, ANG-1, prolactin R, FGF-20, CD28, Nogo-A, HSD17B1, IL-19, intestinal peptidase, cathepsin E, TSLP, TCN2, GDF-15, epidermal morphogenetics, GRKS, PD-1, serine protease inhibitor A4, ADAM23, NOV, galactoglobulin-2, neuronal surface protein 3β, TLR3, Sirtuin 2, Numb, IL-28 Rα, IL-33, Lin28, FCRL1, KLF4, NKp30, lymphocyte chemokine, cysteine ​​protease protein SN, JAM-A, calreticulin-2, ErbB4, BMP-8, IL-27 Ra, Fas, IL-4 Ra, kallikrein 14, extracellular matrix protein-3, Oligo2, kallikrein 12, CA13, IL-9, stalk protein-3, MPIF-1, cysteine ​​protease protein S, ADA, IL-2 Rb, GFR α-1, Smad4, ICAM-1, MEF2C, TREM-1, L-selectin, transmembrane serine protease, CD42b, MCSF, RANK, CHST4, CA8, FCRL3, ASAH2, CF XIV, PYY, HGF, I-TAC, brain signaling protein 4C, SorCS3, Tie-1, IL-31 RA, Arginase 1, POGLUT1, IL-1ra, Flatfoot protein, TIM-3, CREG, CD300f, uPA, EphA2, LLRTM4, LIMPII, Tenosynovin R, CPE, PECAM-1, DNAM-1, DKK-1, OPG, CPB1, TSH, MMP-2, Salivary lectin-9, ICAM-3, Cysteine ​​protease inhibitor SA, Galactohemagglutinin-4, Pepsinogen II, Desmosome core protein-3, Stalk protein-4, SCF, Serine protease inhibitor A5, PTHFGF-19, MSP, IL-28A, FGF-12, METAP2, ASAHL, EDIL3, NTAL, EGF R, TAFAS, galactoglobulin-9, vWF-A2, TACE, activator protein RIM, cathepsin S, LDL R, BMPR-IA, OX40, IL-13 R2, B7-H4, MMP-13, ANGPTL7, TRAIL R4, IGSF4B, Sirtuin 5, PEAR1, SH2D1A, Cerberus1, GDF-11, Nrf2, TROP-2, NUDTS, ROR2, EphB4, phosphatidylinositol proteoglycan 1, LAP (TGFb1), Gash, contactin-1, IL-27, UNC5H4, ICAM-2, MBL, HS3ST3B1, RCOR1, IL-10 Rb, XEDAR, IL-22, PILR-α, NRG1-131, FABP4, RGM-A, RELT, TrkC, CSa, SREC-I, neural epithelial stem cell protein, TPO, ErbB3, Kirrel3, FLRT1, galactoglobulin-3, CXCL16, JAM-B, DR6, Nogo receptor, TLR4, VEGF R2, Tie-2, IL-15 R, Caspr2, LTbR, LAMP, ALCAM, GLP-1, NG2, IL-22 Rα1, AMIGO2, HCC-1, TFPI-2, ULBP-2, desmosome core protein 2, agglutinin, synaptic fusion protein 4, VAMP-1, stalkin-2, FGF-21, Flt-3, GFAP, TIM-1, inhibin A, cadherin-4, PIGF-2, neurogranulin, HE4, IL-23 R, galactoglobulin-7, GALNT3, GITR L, CD14, R-vertebral protein 2, CK19, cardiotrophin-1, TREML1, HAPLN1, CD27, ANG-4, salivary immunoglobulin-7, CD155, VEGF-C, TNF RII, PGRP-S, SDF-1a, PDGF-AB, GPVI, CD40, SCF R, platelet-reactive protein-5, IL-1 RII, neurofeedin-2, cadherin-13, E-selectin, GITR, WISP-1, renin, AgRP, MDL-1, ROBO3, RANTES, endothelial cell-specific molecules, particulate lysin, hCGb, mesothelin, TLR1, TRAIL, MOG, DDR1, NGF R, TRAIL R3, trypsin 3, ARSB, LIF Rα, BAFF R, CD157, granzyme A, 2B4, ESAM, IL-1R4, CXCL14, IL-31, SIRP α, urinary modulatory proteins,CTRC, CEACAM-1, TARC, MIP-3a, SDF-1b, NKp46, MCP-3, IL-32α, TGFb3, FOLR2, CD58, IL-23, CD36, TNFb, Shh-N, Fibrin-1, Reg4, ILT2, Mer, TREM-2, Flt-3L, CDS, IL-6, CD229, Insulin, Synaptic Fusion Protein 6, GRO, Bcl-w, Lipocrine-2, PDGF-AA, IL-2 Ra, Angiopoietin, LYVE-1, CD4, RAGE, CDNF, Short Proteoglycan, NAP-2, PU.1, EDAR, ADAMTS13, Kynurenase, PTH1R, IFN-γ R1, CrkL, B7-1, PARC, Draxin, VE-cadherin, procalcitonin, SOX15, kallikrein 11, BCMA, dendritic cell-associated C-lectin-2, EpCAM, HCC-4, TGFa, IP-10, BLAME, CILP-1, PIGF, LOX-1, MCP-2, resistin, HVEM, ENPP-7, cohesin-4, IL-2 Rg, MICA, dopa decarboxylase, NPDC-1, MCP-4, EG-VEGF, glycoprotein V, brain signaling protein 4G, IL-12p40, total PSA, IL-15, MAP1D, C1q, TNF4, Dtk, endothelial glycoprotein, ENA-78, Reg3A, MIP-1b, FGF-17, IL-6R, IL-8, galactoglobulin-8, CA4, cysteine ​​protease protein EM, FUT8, B7-H3, GCP-2, CD40L, MDC, 4-1BB, HO-1, SOST, S100A13, kallikrein 7 or IL-13 or a combination of two or more thereof; (ii) hsa-let-7a-5p, hsa-let-7b-5p, hsa-let-7c-5p, hsa-le t-7d-3p, hsa-let-7e-5p, hsa-let-7g-5p, hsa-let-7i, hsa-let-7i-5p, hsa-miR-10 0-5p, hsa-miR-103a-3p, hsa-miR-106a-5p, hsa-miR-106b-5p, hsa-mir-10b, hsa-mi R-10b-5p, hsa-mir-1246, hsa-miR-1246, hsa-miR-125a-5p, hsa-miR-125b-5p, hsa- miR-130a-3p, hsa-mir-130b, hsa-miR-130b-3p, hsa-miR-132-3p, hsa-miR-136-5p,hsa-miR-138-5p, hsa-miR-139-5p, hsa-mir-140, hsa-miR-140-3p, hsa-miR-145-5p, hsa-mir-146a, hsa-miR-146a- 5p, hsa-miR-148a-3p, hsa-miR-152-3p, hsa-miR-15a-5p, hsa-miR-15b-5p, hsa-mir-16-1, hsa-mir-16-2, hsa-miR-16-5p, hsa-miR-1'7-5p, hsa-miR-181a-5p, hsa-miR-191-5p, hsa-miR-193a-5p, hsa-miR-193b-3p, hsa-miR-19'7-3p, hsa-miR-199a-3p, hsa-miR-199 a-5p, hsa-miR-199b-5p, hsa-miR-19a-3p, hsa-miR-19b-3p, hsa-miR-20a-5p, hsa-mir-203a, hsa-miR-203a-3p, hsa-miR-214-3p, hsa-mir-21, hsa-miR-21-3p, hsa-miR-21-5p, hsa-mir-221, hsa-miR-221-3p, hsa-mir-222, hsa-miR-222-3p, hsa-miR-22-3p, hsa-miR- 23a-3p, hsa-miR-23b-3p, hsa-mir-24-1, hsa-mir-24-2, hsa-miR-24-3p, hsa-mir-25, hsa-miR-25-3p, hsa-miR-26a-5p, hsa-miR-27a-3p, hsa-mir-27b, hsa-miR-27b-3p, hsa-miR-29a-3p, hsa-miR-29c-3p, hsa-miR-30a-5p, hsa-miR-30a-5p, hsa-miR-30b-5p, hsa-mi R-30c-5p、hsa-mir-30d、hsa-miR-30d-5p、hsa-mir-30e、hsa-miR-30e-5p、hsa-miR-31-3p、hsa-miR-31-5p、hsa-miR-320a、hsa-miR-3 42-3p、hsa-miR-345-5p、hsa-miR-34a-5p、hsa-miR-361-5p、hsa-miR-376a-3p、hsa-miR-376c-3p、hsa-miR-423-3p、hsa-miR-423-5p、hsa-miR-424-5p, hsa-miR-484, hsa-mir-486-1, hsa-mir-486-2, hsa-miR-486-5p, hsa-miR-570-3p, hsa-miR-574-3p, hsa-miR-663a, hsa-miR-874-3p, hsa-mir-92a-1, hsa-mir-92a-2, hsa-miR-92a-3p, hsa-miR-92b-3p, hsa-mir-93, hsa-miR-93-5p, hsa-miR-940, hsa-miR-99a-5p or hsa-miR-99b-5p, or a combination of two or more thereof; or both (iii), (i) and (ii). Another aspect of this disclosure is the use of a composition comprising a therapeutic mesenchymal stem cell (MSC) secretome composition containing extracellular vesicles (EVs) in the irradiated skin of a subject, wherein the composition comprises 5 mL of the therapeutic MSC secretome composition. The composition may have an EV concentration of at least about 60 billion EVs / mL, for example, about 60 billion to about 250 billion EVs / mL. Optionally, about 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, or 15 mL is administered. As a non-limiting example, 5 mL is used. The number of EVs in the composition may be from about 10 million to about 1 trillion. The composition may be administered intradermally. Attached Figure Description

[0017] The novel features of this disclosure are set forth in the appended claims. A better understanding of the features and advantages of this disclosure will be obtained by referring to the following detailed description and accompanying drawings, which illustrate illustrative embodiments utilizing the principles of this disclosure, in which: Figure 1A -B shows a graph illustrating the effect of treatment on the hardness of irradiated skin.

[0018] Figure 2 The charts show a quantitative representation of the histopathological results of skin biopsy samples before and after treatment.

[0019] Figure 3 A graph showing the quantification of inflammation by immune cell type in skin biopsy samples before and after treatment is presented. Detailed Implementation

[0020] Therapeutic Composition Extracellular vesicles (EVs) are membrane-bound globules containing proteins and RNA (exosomes are a subset of them). Exosomes are small (e.g., 30–170 nm) diameter lipid bilayer vesicles secreted by cells to initiate paracrine communication. Other EV populations originate directly from the plasma membrane or form during apoptosis (apoptotic bodies). This article discloses compositions containing therapeutically effective amounts of MSC secretory components (e.g., including but not limited to MSC growth factors, MSC exosomes, MSC extracts, and / or compositions containing extracellular vesicles).

[0021] The exemplary compositions described herein comprise therapeutic compositions comprising biomolecules (which may include proteins, lipids, and / or ribonucleic acid) secreted from mesenchymal lineage cells and / or extracellular vesicles containing biomolecules. In one aspect, the therapeutic composition comprises a therapeutically effective amount of a component secreted from MSCs (i.e., the MSC secretome), such as, but not limited to, MSC growth factors, MSC exosomes, MSC extracts, and / or compositions comprising extracellular vesicles. In an exemplary embodiment, the MSC is bone marrow MSC. The MSC secretome can be purified or otherwise isolated from MSC growth and / or culture conditions. For example, the MSC secretome may comprise exosomes isolated from MSC cultures. Thus, references to the MSC secretome include purified secretome components, such as exosomes or extracellular vesicles. Purified secretome components may be therapeutic compositions. Partially purified secretome components may be therapeutic compositions. For example, a therapeutic composition may comprise extracellular vesicles from the MSC secretome and one or more growth factors. The therapeutic composition may comprise reconstructed extracellular vesicles, such as those reconstructed from lyophilized or otherwise powdered or dried compositions. The therapeutic composition may contain reconstructed extracellular vesicles and one or more growth factors, for example, reconstructed from a lyophilized or otherwise powdered or dried composition.

[0022] In some embodiments, the MSC secretome comprises an MSC growth factor composition. In some embodiments, the MSC secretome is an MSC growth factor composition. The MSC growth factor composition may comprise one or more growth factors secreted from MSCs. One or more of the one or more growth factors secreted from MSCs may be present in exosomes secreted from MSCs. One or more of the one or more growth factors secreted from MSCs may be present in extracellular vesicles secreted from MSCs. One or more of the one or more growth factors secreted from MSCs may not be present in exosomes or extracellular vesicles secreted from MSCs. In an exemplary embodiment, the MSC is a bone marrow MSC.

[0023] In some embodiments, the MSC secretome comprises an MSC exosome composition. In some embodiments, the MSC secretome is an MSC exosome composition. The MSC exosome composition may comprise one or more exosomes secreted from MSCs. MSC exosomes may comprise one or more biomolecules, such as peptides, polypeptides, proteins, siRNA, shRNA, and / or microRNAs (miRNAs). MSC exosomes may comprise growth factors. Growth factors may be present in one or more exosomes secreted from MSCs. Growth factors may not be present in one or more exosomes secreted from MSCs. MSC exosomes may comprise nucleic acids, such as miRNAs. Nucleic acids may be present in one or more exosomes secreted from MSCs. Nucleic acids may not be present in one or more exosomes secreted from MSCs. In an exemplary embodiment, the MSC is a bone marrow MSC.

[0024] In some embodiments, the MSC secretome comprises an MSC extracellular vesicle composition. In some embodiments, the MSC secretome is an MSC extracellular vesicle composition. The MSC extracellular vesicle composition may comprise one or more extracellular vesicles secreted from MSCs. The MSC extracellular vesicle composition may comprise one or more biomolecules, such as peptides, polypeptides, proteins, siRNA, shRNA, and / or microRNAs (miRNAs). MSC extracellular vesicles may contain growth factors. Growth factors may be present within one or more extracellular vesicles secreted from MSCs. Growth factors may not be present within one or more extracellular vesicles secreted from MSCs. MSC extracellular vesicles may contain nucleic acids, such as miRNAs. Nucleic acids may be present within one or more extracellular vesicles secreted from MSCs. Nucleic acids may not be present within one or more extracellular vesicles secreted from MSCs. In an exemplary embodiment, the MSC is a bone marrow MSC.

[0025] In some embodiments, the MSC secretome comprises an MSC extract composition. In an exemplary embodiment, the MSC is a bone marrow MSC. In some embodiments, the MSC secretome is an MSC extract composition. The MSC extract composition may comprise one or more biomolecules, such as peptides, polypeptides, proteins, siRNA, shRNA, and / or microRNAs (miRNAs). The MSC extract composition may comprise exosomes and one or more biomolecules, wherein the exosomes are secreted from MSCs and one or more biomolecules are secreted from MSCs. One or more of the one or more biomolecules may be present in the exosomes. One or more of the one or more biomolecules may not be present in the exosomes. The MSC extract composition may comprise extracellular vesicles and one or more biomolecules, wherein the extracellular vesicles are secreted from MSCs and one or more biomolecules are secreted from MSCs. One or more of the one or more biomolecules may be present within the extracellular vesicles. One or more of the one or more biomolecules may not be present in the extracellular vesicles. One of the one or more biomolecules may be a growth factor. One of the one or more biomolecules may be a nucleic acid, such as miRNA.

[0026] In some embodiments, the MSC secretome comprises an MSC growth factor composition and an MSC exosome composition. In an exemplary embodiment, the MSC is a bone marrow MSC. The MSC growth factor composition may comprise one or more growth factors secreted from MSCs. One or more of the one or more growth factors secreted from MSCs may be present in the MSC exosome composition. One or more of the one or more growth factors secreted from MSCs may not be present in the exosomes. The MSC exosome composition may comprise one or more exosomes secreted from MSCs. MSC exosomes may comprise one or more biomolecules, such as peptides, polypeptides, proteins, siRNA, shRNA, and / or microRNAs (miRNAs). One of the one or more biomolecules may be a nucleic acid, such as miRNA.

[0027] In some embodiments, the MSC secretory group comprises an MSC growth factor composition and an MSC extracellular vesicle composition. In an exemplary embodiment, the MSC is a bone marrow MSC. The MSC growth factor composition may comprise one or more growth factors secreted from MSCs. One or more of the one or more growth factors secreted from MSCs may be present in the MSC extracellular vesicle composition. One or more of the one or more growth factors secreted from MSCs may not be present in the extracellular vesicles. The MSC extracellular vesicles may comprise one or more extracellular vesicles secreted from MSCs. The MSC extracellular vesicles may comprise one or more biomolecules, such as peptides, polypeptides, proteins, siRNA, shRNA, and / or microRNAs (miRNAs). One of the one or more biomolecules may be a nucleic acid, such as miRNA.

[0028] In some embodiments, the therapeutic composition (e.g., an MSC secretome composition) comprises one or more peptide biomolecules. At least one of the one or more peptide biomolecules may be a growth factor. For example, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, 32, 33, 34, 35, 40, 45, 50, 55, 60, 65, 70, 75, 80, 85, 90, 95, or 100 or more proteins may be present in the MSC secretome. Non-restricted exemplary growth factors or growth factor-related proteins that may be present in the MSC secretome include: ferritin, NUP85, LAMP2, GPR115, serine protease inhibitor F1, OPN, PAI-1, DAPP1, cathepsin B, brain signaling protein 6C, PDGF Rα, sorting protein, serine protease inhibitor B6, Dkk-3, coagulation regulator protein, PF4, MIF, periostealin, furin, TIMP-1, gypsum proteoglycan, PCK1, CD99, CD63, CD9, CD81, transferrin, DcR3, photoglucan, TIMP-2, SLITRK5, FAP, leptospirin, DPPII, cIAP-1, pentamericin 3, lactone, enkephalin, albumin, galactolectin-1, UNC5H3, IL-20 Rβ, SREC-II, JAM-C, TNF. RI, htPAPP-A, eNOS, MSP R, TPP1, LAMP1, B2M, NCAM-1, HIF-1 α, ST6GAL1, CD99-L2, conglomerate A4, EMMPRIN, p53, brain signaling protein 7A, NKp80, cysteine ​​protease protein B, osteoadhesion, mid-term factor, calreticulin, osteoactivin, asparagine endopeptidase, TAZ, cathepsin L, RBP4, serine protease inhibitor A4, JAM-A, MCSF, LIMPII, OPG, IL-22, galactoglobulin-3, MOG, trypsin 3, SIRP α, and cohesin-glycan-4. Non-restricted exemplary proteins that may be present in the MSC secretome include: ferritin, IGFBP-4, IL-1 R6, GSTM1, NUP85, LAMP2, transmembrane peptidase A, IL-1 F10, bIG-H3, GPR115, TGFb1, hepatocyte glycoside A4, CD109, serine protease inhibitor F1, IGFBP-6, HS3ST4, aminopeptidase LRAP, OPN, PAI-1, DAPP1, GDF-9, cathepsin B, IGFBP-2, brain signaling protein 6C, IGF-2, and PDGF R.α, Sorting protein, Serine protease inhibitor B6, Dkk-3, CNTF, TSP-1, GM-CSF Ra, Coagulation regulator protein, Endoglycosides, IGFBP-3, RGM-C, PF4, MIF, TGM4, Periostrin, Flintase, TIMP-1, PAPP-A, Glycerin proteoglycan, PCK1, Arylsulfatase A, CD99, CA2, PRDX4, Transferrin, DcR3, GP73, LAIR2, ULBP-4, Optical proteoglycan, TIMP-2, TFPI, SOX2, SLITRK5, FAP, Spinal cord protein, ENPP-2, CD97, CTACK, Integrin α1, EXTL3, IL-18, BPa, PD-L2, PSMA, IL-20 Ra, Glyoxalase II, Trypsin I, IGF-2R, ADAMTS L1-1, Erythropoietin, Convolutional D1, DNMT3A, BCL-2, CL-P1, Hepatocyte-B3, FABP6, CHI3L1, FCRLS, TFF3, Nephlebotomycin, DPPII, cIAP-1, PDGF Rb, Pentanoic Acid 3, Angiotensinogen, Follicle-Stapressin, CF VII, Persephin, TRAIL R1, THAP11, CD200, CLEC-2, AMIGO, IGFBP-5, PON1, SOX7, GALNT10, Lactone, Granulosin Progenitor, PCSK2, GKN1, IL-18, Enkephalin, Stabilin-2, IL-17 RD, albumin, follicle-stimulating protein 1, MMP-10, FKBP51, LRRC4, Pref-1, galactoglobin-1, troponin C, UNC5H3, FLRT2, CD314, brain signaling protein 6B, cytokinin-4, CD27 ligand, IL-20 Rβ, brain signaling protein 6A, TSK, cytokeratin-8, CHST3, Mcl-1, DPPIV, SREC-II, norin, JAM-C, Bcl-10, Wnt-4, LSECtin, Kell, TNF RI, PTP1B, htPAPP-A, IDO, PDGF-CC, Glycopropyl peptide, Activator Protein A, TLR2, SCCA2, FABP1, eNOS, SHP-1, ICOS, C1qTNF9, MMP-1, TC-PTP, IL-24, gp130, C-myc, LILRB4, BMP-2, MIA, CD34, CD63, CD9, CD81, IFNab R2, Phosphatidylinositol Proteoglycan 2, MSP R, DSCAM, Membrane-type Serine Protease, KIR2DL3, CD30, Salivary Agglutinin-10, CLEC-1, TPP1, Ubiquitin+1, ANGPTL4, TWEAKR, Nestin-1, CD2, Kallikrein 1, TSLP R, LAMP1, TROY, VCAM-1, Salivary agglutinin-11, S100A1, PAR1, Thyroid peroxidase, Aminopeptidase P2, IL-1 RI, ADAMS, OSM R β, Platelet-Reactive Protein-2, SMPD1, B2M, MFRP, LRP-6, ST3GAL1, NCAM-1 (CD56), Granulase B, Lipocontin, IL-22BP, TPST2, PD-ECGF, LH, LEDGF, Cyr61, ULBP-3, IFNb, THSD1, FGF-23, LAMA4, Lipoprotein, AIF, SorCS2, SULT2A1, CD39L2, Insulin R, HIF-1 α, OX40 ligand, Pax3, UCH-L3, cMASP3, Langerin, desmin, SOX9, ST6GAL1, MEP1B, CD99-L2, conglomerate A4, brain signaling protein 4D, ROBO2, PDX-1, APRIL, neuronal rank protein, transmembrane protein-2 with ring structure, EMMPRIN, activating protein RIB, neuroligand 2, epithelial regulatory protein, CASA, MMP-12, GALNT2, CEACAM-5, VEGF R1, DSPG3, SorCS1, extracellular matrix protein-2, sFRP-3, p53, EphB3, NCK1, brain signaling protein 7A, NKp80, prolactin, cysteine ​​agonist protein B, Sirtuin 1, FGF-16, FGF R5, NQO-1, Brain signaling protein 6D, FGF-3, GATA-4, VAP-A, CHST2, Pregnancy-associated plasma protein-2, Cohesin-3, Serpentin-1, AKR1C4, Oligosin-2, Osteoadhesin, NKp44, Thyroglobulin, IL-21R, Chemokines, EphA1, CD48, MICB, FGF-5, TRANCE, CES2, ULBP-1, Integrin α5. VAMP-2, FLRG, Ret metaphase factor, CD73, TRAP, proGRP, granzyme H, PRX2, p2'7, salivary lectin-6, dendritic cell-associated C-type lectin-1, CD51, Notch-1, calreticulin, DR3, DCTN1, CDC25B, bone activator, ACE, CA125, HAO-1, ​​PSMA1, FCRLB, BMP-9, CRIM1, LIF, SPINK1, EphB6, RGM-B, HS3ST1, ROR1, CMG-2, 4-1BB ligand, L1CAM-2, p63, cathepsin V, testosterone-2, phosphatidylinositol proteoglycan 5, CD6, salivary lectin-2, asparagine endopeptidase, PRELP, CES1, TAZ, NSE, TECK, HTRA2, HIF-1 β, TAFA1, podocyte protein, RalA, CRELD2, GRAP2, SP-D, BID, GFRα-2, Notch-3, VEGF R3, DLL4, TGFb2, LIGHT, XIAP, ST8SIA1, cathepsin L, 6-Ckine, MIS RII, kallikrein 5, TGM3, FCAR, contactin-2, CD83, IL-1 R3, SALM4, GBA3, ROBO4, OSCAR, VEGF, IGSF3, disaccharide proteoglycan, neurodevelopmental factor, ILT4, uPAR, Axl, WIF-1, IL-7 R α, GPR56, CEACAM-3, MCEMP1, FABP2, plexin B3, MEPE, activator RIIA, ANG-2, Cochlin, presenilin 1, NPTXR, SLAM, COMT, SPHK1, RBP4, stalkin-1, GUSB, nestin-2, IL-17F, SR-AI, TAFA2, N-cadherin, IL-17B, IL-17RC, MIP-3b, cysteine ​​protease C, cysteine ​​protease D, AMSH, FcERI, CLEC10A, HGF R, ANG-1, prolactin R, FGF-20, CD28, Nogo-A, HSD17B1, IL-19, intestinal peptidase, cathepsin E, TSLP, TCN2, GDF-15, epidermal morphogenetics, GRKS, PD-1, serine protease inhibitor A4, ADAM23, NOV, galactoglobulin-2, neuronal surface protein 3β, TLR3, Sirtuin 2, Numb, IL-28 Rα, IL-33, Lin28, FCRL1, KLF4, NKp30, lymphocyte chemokine, cysteine ​​protease protein SN, JAM-A, calreticulin-2, ErbB4, BMP-8, IL-27 Ra, Fas, IL-4Ra, kallikrein 14, extracellular matrix protein-3, Oligo2, kallikrein 12, CA13, IL-9, stalk protein-3, MPIF-1, cysteine ​​protease protein S, ADA, IL-2 Rb, GFR α-1, Smad4, ICAM-1, MEF2C, TREM-1, L-selectin, transmembrane serine protease, CD42b, MCSF, RANK, CHST4, CA8, FCRL3, ASAH2, CF XIV, PYY, HGF, I-TAC, brain signaling protein 4C, SorCS3, Tie-1, IL-31 RA, Arginase 1, POGLUT1, IL-1ra, Flatfoot protein, TIM-3, CREG, CD300f, uPA, EphA2, LLRTM4, LIMPII, Tenosynovin R, CPE, PECAM-1, DNAM-1, DKK-1, OPG, CPB1, TSH, MMP-2, Salivary lectin-9, ICAM-3, Cysteine ​​protease inhibitor SA, Galactohemagglutinin-4, Pepsinogen II, Desmosome core protein-3, Stalk protein-4, SCF, Serine protease inhibitor A5, PTH, FGF-19, MSP, IL-28A, FGF-12, METAP2, ASAHL, EDIL3, NTAL, EGF R, TAFAS, Galactohemagglutinin-9, vWF-A2, TACE, Activator protein RIM, Cathepsin S, LDL R, BMPR-IA, OX40, IL-13 R2, B7-H4, MMP-13, ANGPTL7, TRAIL R4, IGSF4B, Sirtuin 5, PEAR1, SH2D1A, Cerberus1, GDF-11, Nrf2, TROP-2, NUDTS, ROR2, EphB4, phosphatidylinositol proteoglycan 1, LAP (TGFb1), Gash, contactin-1, IL-27, UNC5H4, ICAM-2, MBL, HS3ST3B1, RCOR1, IL-10 Rb, XEDAR, IL-22, PILR-α, NRG1-131, FABP4, RGM-A, RELT, TrkC, CSa, SREC-I, neural epithelial stem cell protein, TPO, ErbB3, Kirrel3, FLRT1, galactolectin-3, CXCL16, JAM-B, DR6, Nogo receptor, TLR4, VEGF R2, Tie-2, IL-15 R, Caspr2, LTbR, LAMP, ALCAM, GLP-1, NG2, IL-22 R α1. AMIGO2, HCC-1, TFPI-2, ULBP-2, desmosome core protein 2, agglutinin, synaptic fusion protein 4, VAMP-1, stalkin-2, FGF-21, Flt-3, GFAP, TIM-1, inhibin A, cadherin-4, PIGF-2, neurogranulin, HE4, IL-23R, galactolectin-7, GALNT3, GITR L, CD14, R-vertebral protein 2, CK19, cardiotrophin-1, TREML1, HAPLN1, CD27, ANG-4, salivary lectin-7, CD155, VEGF-C, TNF-α, PGRP-S, SDF-1α, PDGF-AB, GPVI, CD40, SCF-R, platelet-reactive protein-5, IL-1 RII, neurofeltin-2, cadherin-13, E-selectin, GITR, WISP-1, renin, AgRP, MDL-1, ROBO3, RANTES, endothelial cell-specific molecules, granzyme, hCGb, mesothelin, TLR1, TRAIL, MOG, DDR1, NGF R, TRAIL R3, trypsin 3, ARSB, LIF Rα, BAFF R, CD157, granzyme A, 2B4, ESAM, IL-1R4, CXCL14, IL-31, SIRP α, urinary modulatory proteins, CTRC, CEACAM-1, TARC, MIP-3a, SDF-1b, NKp46, MCP-3, IL-32 α, TGFb3 FOLR2, CD58, IL-23, CD36, TNFb, Shh-N, fibrinogen-1, Reg4, ILT2, Mer, TREM-2, Flt-3L, CDS, IL-6, CD229, Insulin, Synaptic Fusion Protein 6, GRO, Bcl-w, Lipocrine-2, PDGF-AA, IL-2 Ra, Angiopoietin, LYVE-1, CD4, RAGE, CDNF, Short Proteoglycan, NAP-2, PU.1, EDAR, ADAMTS13, Kynurenase, PTH1R, IFN-γ R1, CrkL, B7-1, PARC, Draxin, VE-cadherin, procalcitonin, SOX15, kallikrein 11, BCMA, dendritic cell-associated C-lectin-2, EpCAM, HCC-4, TGFa, IP-10, BLAME, CILP-1, PIGF, LOX-1, MCP-2, resistin, HVEM, ENPP-7, cohesin-4, IL-2Rg, MICA, dopa decarboxylase, NPDC-1, MCP-4, EG-VEGF, glycoprotein V, brain signaling protein 4G, IL-12p40, total PSA, IL-15, MAP1D, C1q, TNF4, Dtk, endothelial glycoprotein, ENA-78, Reg3A, MIP-1b, FGF-17, IL-6R, IL-8, galactolectin-8, CA4, cysteine ​​protease protein EM, FUT8, B7-H3, GCP-2, CD40L, MDC, 4-1BB, HO-1, SOST, S100A13, kallikrein 7, and IL-13. Table 1 below shows non-limiting examples of the selection of growth factors or growth factor proteins.

[0029] Table 1 In some embodiments, the therapeutic composition (e.g., an MSC secretome composition) comprises one or more nucleic acid biomolecules. At least one of the one or more nucleic acid biomolecules may be miRNA. For example, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, 25, 26, 27, 28, 29, 30, 31, 32, 33, 34, 35, 40, 45, 50, 55, 60, 65, 70, 75, 80, 85, 90, 95, or 100 or more nucleic acids may be present in the MSC secretome. Unrestricted example miRNAs that may be present in the MSC secretome include: hsa-let-7a-5p, hsa-let-7b-5p, hsa-let-7c-5p, hsa-let-7d-3p, hsa-let-7e-5p, hsa-let-7g-5p, hsa-let-7i, hsa-let-7i-5p, hsa-miR-100-5p, hsa-miR-103a-3p, hsa-miR-106a-5p, hsa-miR-106b-5p, hsa-mir-10b, hsa-miR-10b-5p, hsa -mir-1246, hsa-miR-1246, hsa-miR-125a-5p, hsa-miR-125b-5p, hsa-miR-130a-3p, hsa-mir-130b, hsa-miR-130b-3p, hsa-miR-132-3p , hsa-miR-136-5p, hsa-miR-138-5p, hsa-miR-139-5p, hsa-mir-140, hsa-miR-140-3p, hsa-miR-145-5p, hsa-mir-146a, hsa-miR-146a- 5p, hsa-miR-148a-3p, hsa-miR-152-3p, hsa-miR-15a-5p, hsa-miR-15b-5p, hsa-mir-16-1 , hsa-mir-16-2, hsa-miR-16-5p, hsa-miR-1'7-5p, hsa-miR-181a-5p, hsa-miR-191-5p, hs a-miR-193a-5p, hsa-miR-193b-3p, hsa-miR-19'7-3p, hsa-miR-199a-3p, hsa-miR-199a-5 p, hsa-miR-199b-5p, hsa-miR-19a-3p, hsa-miR-19b-3p, hsa-miR-20a-5p, hsa-mir-203a,hsa-miR-203a-3p, hsa-miR-214-3p, hsa-mir-21, hsa-miR-21-3p, hsa-miR-21-5p, hsa-mir-221, hsa-miR-221-3p, hsa-mir-222, hsa-miR-222-3p, hsa-miR-22-3p, hsa-miR-23a-3p, hsa-miR-23b-3p, hsa-mir-24-1, hsa-mir-24-2, hsa-miR-24-3p, hsa-mir-25, hsa-miR-25-3p, hsa-miR-26a-5p, hsa-miR-27a-3p, hsa-mir-27b, hsa-miR-27b-3p, hsa-miR-29a-3p, hsa-miR-29c-3p, hsa-miR-30a-5p, hsa-miR-30a-5p, hsa-miR-30b-5p, hsa-miR-30c-5p, hsa-mir-30d, hsa-miR-30d-5p, hsa-mir-30e, hsa-miR-30e-5p, hsa-miR-31-3p, hsa-miR-31-5p, hsa-miR-320a, hsa-miR-342-3p, hsa-miR-345-5p, hsa-miR-34a-5p, hsa-miR-361-5p, hsa-miR-376a-3p, hsa-miR-376c-3p, hsa-miR-423-3p, hsa-miR-423-5p, hsa-miR-424-5p, hsa-miR-484, hsa-mir-486-1, hsa-mir-486-2, hsa-miR-486-5p, hsa-miR-570-3p, hsa-miR-574-3p, hsa-miR-663a, hsa-miR-874-3p, hsa-mir-92a-1, hsa-mir-92a-2, hsa-miR-92a-3p, hsa-miR-92b-3p, hsa-mir-93, hsa-miR-93-5p, hsa-miR-940, hsa-miR-99a-5p and hsa-miR-99b-5p.

[0030] Exemplary microRNAs that may be present in therapeutic compositions (e.g., MSC secretomes) include hsa-let-7a-5p, hsa-let-7b-5p, hsa-let-7c-5p, hsa-let-7g-5p, hsa-let-7i-5p, hsa-miR-214-3p, and hsa-miR-27a-3p, and combinations of two or more thereof, each of which has a binding site for TMPRSS2 in the mRNA.

[0031] In some embodiments, the therapeutic composition (e.g., MSC secretome) contains CD63 + CD9 - CD81 - Extracellular vesicles of the phenotype. In some embodiments, at least 70%, 75%, 80%, 85%, 90%, 91%, 92%, 93%, 94%, or 95% of the extracellular vesicles in the therapeutic composition are CD63. + CD9 - CD81 - In some embodiments, at least 50%, 60%, 70%, 80%, 85%, 90%, 91%, 92%, 93%, 94%, or 95% of the extracellular vesicles in the therapeutic composition are CD9-. In some embodiments, at least 50%, 60%, 70%, 80%, 85%, 90%, 91%, 92%, 93%, 94%, or 95% of the extracellular vesicles in the therapeutic composition are CD81-. In one exemplary embodiment, the MSC is bone marrow MSC.

[0032] In some embodiments, the MSCs cultured to produce the therapeutic composition have the ability to differentiate in vitro into three lineages: adipocytes, osteoblasts, and chondrocytes. In some embodiments, the MSCs are positive for CD73, CD105, CD166, and CD90, and negative for CD14, CD31, CD34, and CD45. In one exemplary embodiment, the MSCs are bone marrow MSCs.

[0033] The therapeutic compositions described herein may comprise one or more exosomes and one or more growth factors. The growth factors and / or exosomes may be heterologous or homologous. The growth factors and / or exosomes may be derived from any cells in the human body, such as ectoderm cells, endoderm cells, or mesodermal cells. For example, the therapeutic composition may comprise growth factors derived from mesenchymal stem cells (MSCs), MSC-derived exosomes, or both MSC-derived growth factors and exosomes. In some embodiments, the therapeutic composition comprises one or more components derived from the MSC secretome and additives of components not derived from the MSC secretome. In one aspect, this article discloses a therapeutic composition comprising MSC secretome and one or more additional additives, wherein the one or more additional additives comprise prostaglandin E2 (PGE2), transforming growth factor 131 (TGF-131), hepatocyte growth factor (HGF), stromal cell-derived factor-1 (SDF-1), nitric oxide, indoleamine 2,3-dioxygenase, interleukin-4 (IL-4), IL-6, interleukin-10 (IL-10), IL-1 receptor antagonist and soluble TNF-α receptor, insulin-like growth factor, fibroblasts Growth factors (FGF) 1-23 (especially FGF1 and FGF2), bone morphogenetic protein (BMP) 1-15, epidermal growth factor (EGF), transforming growth factor-a (TGF-a), macrophage stimulating protein (MSP), platelet-derived growth factor (PLGF), vascular endothelial growth factor (VEGF), macrophage colony-stimulating factor (M-CSF), insulin, granulocyte colony-stimulating factor (G-CSF), granulocyte-macrophage colony-stimulating factor (GM-CSF), estrogen or thyroid hormone, or a combination of two or more thereof.

[0034] Embodiments of the therapeutic composition described herein may include proteins and microRNAs, some of which may be embedded in or surrounded by a lipid membrane to generate vesicles ranging in size from about >20 nm to about 200 nm. The number of vesicles in the composition may be about 1 million to about 100 billion vesicles / mL when in suspension, or about 10 million to about 1 trillion when formulated as a lyophilized powder. The vesicles may be extracellular vesicles. Extracellular vesicles may be components of the MSC secretome. The vesicles may be exosomes. Exosomes may be components of the MSC secretome. The composition may have an EV concentration of at least about 60 billion EVs / mL, for example, about 60 billion to about 250 billion EVs / mL. Optionally, about 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, or 15 mL is administered. As a non-limiting example, 5 mL is used. The number of EVs in the composition may be about 10 million to about 1 trillion. The composition may be administered intradermally.

[0035] mesenchymal stem cells The example therapeutic compositions described herein comprise MSC secretome compositions and / or components derived from mesenchymal stem cells (MSCs) (e.g., biomolecules such as nucleic acids like miRNAs, and peptides such as growth factors). In one aspect, this document discloses MSC secretome compositions (including, but not limited to, MSC growth factors, MSC exosomes, MSC extracts, and / or compositions comprising extracellular vesicles) for the treatment, inhibition, relief, reduction, improvement, and / or prevention of conditions (e.g., irradiated skin).

[0036] MSCs are pluripotent cells capable of differentiating into multiple cell types, including myocytes, chondrocytes, adipocytes, and osteoblasts. These cells are typically found in the placenta, umbilical cord blood, adipose tissue, bone marrow, or amniotic fluid, including perivascular tissue. As used herein, “MSC” refers to non-terminally differentiated cells, including but not limited to pluripotent stem cells, pluripotent stromal cells, stromal vascular cells, pericytes, vascular pericytes, stromal cells, pluripotent cells, fibroblast-like cells derived from adipose tissue, stromal vascular fractions derived from adipose tissue, MSCs derived from bone marrow, fibroblast-like cells derived from bone marrow, stromal vascular fractions derived from bone marrow, MSCs derived from bone marrow, fibroblast-like cells derived from tissue, adult stem cells, adult stromal cells, keratinocytes, and / or melanocytes.

[0037] In some embodiments, the MSC secretome composition comprises MSC growth factors, MSC exosomes, extracellular vesicles, extracellular vesicle isolates (EVIPs), cell-free extracts of MSCs, or MSC lysates, or combinations of two or more thereof, derived from MSCs. MSCs can be human MSCs, fibroblast-like cells, or non-human animal MSCs, including but not limited to MSCs from horses, cattle, pigs, sheep, non-human primates, dogs, cats, rabbits, rats, or mice. In embodiments, MSCs can be derived from the patient to whom the composition will be applied (autologous) or from another individual (allogeneic). MSCs can be cultured and expanded to collect conditioned medium and / or increase the cell count of the lysates, or used fresh before incorporation into the therapeutic composition of this disclosure.

[0038] MSC secretome compositions (including, but not limited to, MSC growth factors, MSC exosomes, MSC extracts and / or compositions containing extracellular vesicles) may contain about 0.00001 to about 20 wt.%, such as about 0.01 to about 10 wt.% of mesenchymal stem cell (MSC) extracts, MSC exosomes or MSC growth factor formulations.

[0039] The MSC secretome composition or its components can be obtained by culturing MSCs under normal hyperoxia conditions or under artificial wound healing conditions.

[0040] MSCs can be selectively stimulated to produce the MSC secretome compositions or components thereof disclosed herein. Stimulated MSCs can produce MSC growth factors, secretomes, cytokines, chemokines, mesenchymal stem cell proteins, peptides, glycosaminoglycans, extracellular matrix (ECM), proteoglycans, or extracellular vesicles (e.g., exosomes), or combinations of two or more thereof. MSC growth factors include, but are not limited to, prostaglandin E2 (PGE2), transforming growth factor 131 (TGF-131), hepatocyte growth factor (HGF), stromal cell-derived factor-1 (SDF-1), nitric oxide, indoleamine 2,3-dioxygenase, interleukin-4 (IL-4), IL-6, interleukin-10 (IL-10), IL-1 receptor antagonists and soluble TNF-α receptors, insulin-like growth factor, fibroblast growth factor (FGF) 1-23 (especially FGF1 and FGF2), bone morphogenetic protein (BMP) 1-15, epidermal growth factor (EGF), transforming growth factor-a (TGF-a), macrophage-stimulating protein (MSP), platelet-derived growth factor (PLGF), vascular endothelial growth factor (VEGF), macrophage colony-stimulating factor (M-CSF), insulin, granulocyte colony-stimulating factor (G-CSF), granulocyte-macrophage colony-stimulating factor (GM-CSF), and hormones, including estrogen and thyroid hormones.

[0041] MSC culture can occur under wound healing and / or hypoxic conditions. Wound healing conditions can include approximately 1% to approximately 5% oxygen, reduced or absent serum, reduced glucose, or various combinations of these elements. Combined reduced nutrient and metabolite environments can trigger cultured cells to produce wound-healing and anti-inflammatory ECM proteins and growth factors to guide tissue healing. In one aspect, the MSC secretome composition comprises MSC growth factors, MSC exosomes, and / or MSC cell extracts or MSC lysates obtained from MSCs cultured under standard hyperoxia conditions (e.g., 21% oxygen) or under artificial wound healing conditions (e.g., such as 0.1% to approximately 5% oxygen).

[0042] Artificial wound healing conditions for culturing MSCs may include one or more of the following growth conditions: reduced glucose availability, reduced oxygen tension, decreased pH, and increased temperature.

[0043] In some embodiments, glucose availability may be reduced relative to a normal control (e.g., 4.5 g / L). The glucose in modified culture media that reduce glucose without harming cells may be reduced by 0% to 50%, more preferably by about 5% to 40%. For example, MSC artificial wound healing culture conditions may include glucose reductions of about 5% to about 15%, about 10% to about 20%, about 15% to about 25%, about 20% to about 30%, or about 25% to about 35%. In some embodiments, glucose is present at a concentration of about 0.1, 0.5, 1.0, 1.5, 2.0, 2.5, 3.0, 3.5, or 4.0 g / L, or at a concentration in the range of any two of these values. In some embodiments, glucose is present at a concentration of less than or no more than 0.1, 0.2, 0.3, 0.4, 0.5, 0.6, 0.7, 0.8, 0.9, 1.0, 1.1, 1.2, 1.3, 1.4, 1.5, 1.6, 1.7, 1.8, 1.9, 2.0, 2.1, 2.2, 2.3, 2.4, 2.5, 2.6, 2.7, 2.8, 2.9, 3.0, 3.1, 3.2, 3.3, 3.4, 3.5, 3.6, 3.7, 3.8, 3.9, 4.0, 4.1, 4.2, 4.3, 4.4, or 4.5 g / L.

[0044] In some implementations, oxygen tension can be reduced to the oxygen levels of hypoxic conditions. Normal atmospheric oxygen is approximately 21%, and any reduction is considered hypoxic. Therefore, in one aspect, MSCs can be cultured at oxygen levels of 0.0% to 20.9%, from about 0.1% to about 0.5%, from about 0.1% to about 2.0%, from about 0.1% to about 5.0%, from about 0.5% to 5.0%, from about 1.0% to about 10%, from about 5.0% to about 10.0%, and from about 10.0% to about 15.0%. Hypoxic conditions can be one aspect of artificial wound healing conditions.When MSCs are cultured to produce a therapeutic secretory composition containing extracellular vesicles and / or growth factors secreted by MSCs, the oxygen tension can be between about 0.5% and 20.5% oxygen, for example, such as 0.1, 0.2, 0.3, 0.4, 0.5, 0.6, 0.7, 0.8, 0.9, 1, 1.1, 1.2, 1.3, 1.4, 1.5, 1.6, 1.7, 1.8, 1.9, 2, 2.1, 2.2, 2.3, 2.4, 2.5, 2.6, 2.7, 2.8, 2.9, 3, 3.1, 3.2, 3.3, 3.4, 3.5, 3.6, 3.7, 3.8, 3.9, 4, 4.1, 4.2, 4.3, 4.4, 4 5, 4.6, 4.7, 4.8, 4.9, 5, 5.1, 5.2, 5.3, 5.4, 5.5, 5.6, 5.7, 5.8, 5.9, 6, 6.1, 6.2, 6.3, 6.4, 6.5, 6.6, 6.7, 6.8, 6.9, 7, 7.1, 7.2, 7.3, 7.4, 7.5, 7.6, 7.7, 7.8, 7.9, 8, 8.1, 8.2, 8.3, 8.4, 8.5, 8.6, 8.7, 8.8, 8.9, 9, 9.1, 9.2, 9.3, 9.4, 9.5, 9.6, 9.7, 9.8, 9.9, 10, 10.1, 10.2, 10.3, 10.4, 10.5, 10.6, 10.7, 10.8, 10.9, 11, 11.1, 11.2, 11.3, 11.4, 11.5, 11.6, 11.7, 11.8, 11.9, 12, 12.1, 12.2, 12.3, 12.4, 12.5, 12.6, 12.7, 12.8, 12.9, 13, 13.1, 13.2, 13.3, 13.4, 13.5, 13.6, 13.7, 13.8, 13.9, 14, 14.1, 14.2, 14.3, 14.4, 14.5, 14.6, 14.7, 14.8, 14.9, 15, 15.1, 15.2, 15.3, 15.4, 15 0.5, 15.6, 15.7, 15.8, 15.9, 16, 16.1, 16.2, 16.3, 16.4, 16.5, 16.6, 16.7, 16.8, 16.9, 17, 17.1, 17.2, 17.3, 17.4, 17.5, 17.6, 17.7, 17.8, 17.9, 18, 18.1, 18.2, 18.3, 18.4, 18.5, 18.6, 18.7, 18.8, 18.9, 19, 19.1, 19.2, 19.3, 19.4, 19.5, 19.6, 19.7, 19.8, 19.9, or 20.0% oxygen, or a range between any two of these values.

[0045] The pH value can also be lowered during MSC culture. The pH can be from about 6.0 to about 7.4, for example, from about 6.0 to about 6.4, from about 6.2 to about 6.4, from about 6.2 to about 6.6, from about 6.4 to about 6.6, from about 6.4 to about 6.8, or from about 6.6 to about 7.0, such as 6.0, 6.1, 6.2, 6.3, 6.4, 6.5, 6.6, 6.7, 6.8, 6.9, 7.0, 7.1, 7.2, 7.3, or 7.4.

[0046] The temperature of the culture environment can be increased relative to the physiological homeostatic temperature (e.g., 37°C). In one aspect, the culture conditions for MSCs can include from about 35°C to about 39°C, from about 35°C to about 36°C, from about 36°C to about 37°C, from about 37°C to about 38°C, from about 38°C to about 39°C, and from about 39°C to about 40°C. In another aspect, the culture temperature can be 35.0, 35.1, 35.2, 35.3, 36.4, 35.5, 35.6, 35.7, 35.8, 35.9, 36.0, 36.1, 36.2, 36.3, 36.4, 36.5, 36.6, 36.7, 36.8, 36.9, 37.0, 37.1, 37.2, 37.3, 3... 7.4, 37.5, 37.6, 37.7, 37.8, 37.9, 38.0, 38.1, 38.2, 38.3, 38.4, 38.5, 38.6, 38.7, 38.8, 38.9, 39.0, 39.1, 39.2, 39.3, 39.4, 39.5, 39.6, 39.7, 39.8, 39.9 or 40.0℃.

[0047] In some embodiments, the culture medium is serum-free. In some embodiments, the serum-free culture medium contains platelet lysate. In some embodiments, the platelet lysate is human platelet lysate (HPL). In some embodiments, the serum-free culture medium contains at least 1%, 2%, 3%, 4%, 5%, 6%, 7%, 8%, 9%, 10%, 11%, 12%, 13%, 14%, 15%, 16%, 17%, 18%, 19%, or 20% HPL by volume, or any range between two of these values. In some embodiments, the culture medium contains from 8% to 12%, 5% to 15%, or 9% to 11% HPL by volume.

[0048] In one aspect, therapeutic compositions, such as MSC secretome compositions (including but not limited to MSC growth factors, MSC exosomes, MSC extracts, and / or compositions containing extracellular vesicles), contain additives. Additives can act as a protective coating. Additives can reduce the degradation of components within the composition, such as growth factors. Additives can be cryoprotectants. Cryoprotectants can be oligosaccharides. Additives can be polymers. Polymers include relatively high molecular weight organic compounds, natural or synthetic, whose structure can be represented by repeating small unit monomers. Non-limiting examples of polymers include polyethylene, rubber, and cellulose. Synthetic polymers are typically formed by the addition or condensation polymerization of monomers. The term "copolymer" can refer to a polymer formed from two or more different repeating units (monomer residues). For example, but not limited to, copolymers can be alternating copolymers, random copolymers, block copolymers, or graft copolymers. Polymers can be natural polymers, synthetic polymers, homopolymers, heteropolymers, or copolymers. In one aspect, polymers can comprise copolymers, block copolymers, diblock copolymers, and / or triblock copolymers. In one aspect, additives can comprise biocompatible polymers. In one aspect, biocompatible polymers are crosslinked. Biocompatible polymers include, but are not limited to, polysaccharides; hydrophilic peptides; polyamino acids, such as poly-L-glutamic acid (PGS), γ-polyglutamic acid, poly-L-aspartic acid, poly-L-serine, or poly-L-lysine; polyalkylene glycols and polyalkylene oxides, such as polyethylene glycol (PEG), polypropylene glycol (PPG), and polyethylene oxide (PEO); poly(oxyethylated polyols); poly(enols); polyvinylpyrrolidone; poly(hydroxyalkyl methacrylamide); poly(hydroxyalkyl methacrylate); polysaccharides; poly(hydroxy acids); poly(vinyl alcohol), polyhydroxy acids such as poly(lactic acid), poly(glycolic acid), and polylactic-glycolic acid copolymers; and polyhydroxyalkanoates. Esters such as poly(3-hydroxybutyrate) or poly(4-hydroxybutyrate); polycaprolactone; poly(orthoester); polyanhydride; poly(phosphazene); polylactide-caprolactone copolymer; polycarbonates such as tyrosine polycarbonate; polyamides (including synthetic and natural polyamides), peptides and poly(amino acids); polyesteramide; polyester; poly(p-dioxanone); poly(alkylene oxide); hydrophobic polyether; polyurethane; polyether ester; polyacetal; polycyanoacrylate; polyacrylate; polymethyl methacrylate; polysiloxane; poly(ethylene oxide) / poly(propylene oxide) copolymer; polyketide; polyphosphate; polyhydroxyvalerate; polyalkylene oxalate; polyalkylene succinate; poly(maleic acid) and its copolymers.Biocompatible polymers may also include polyamides, polycarbonates, polyalkylenes, polyalkylene glycols, polyalkylene oxides, polyalkylene terephthalates, polyvinyl alcohol (PVA), methacrylate PVA (m-PVA), polyethylene ethers, polyethylene esters, polyhalogenated polyethylene, polyvinylpyrrolidone, polyglycolic acid, polysiloxanes, polyurethanes and their copolymers, alkyl cellulose, hydroxyalkyl cellulose, cellulose ethers, cellulose esters, nitrocellulose, polymers of acrylates and methacrylates, methylcellulose, ethylcellulose, hydroxypropylcellulose, hydroxypropyl methylcellulose, hydroxybutyl methylcellulose, cellulose acetate, cellulose propionate, cellulose acetate butyrate, cellulose acetate phthalate, carboxyethylcellulose, cellulose triacetate, sodium cellulose sulfate, poly(methyl methacrylate), poly(ethyl methacrylate), poly(butyl methacrylate), and poly(isobutyl methacrylate). Poly(hexyl methacrylate), poly(isodecyl methacrylate), poly(lauryl methacrylate), poly(phenyl methacrylate), poly(methyl acrylate), poly(isopropyl acrylate), poly(isobutyl acrylate), poly(octadecyl acrylate), polyethylene, polypropylene, poly(ethylene glycol), poly(ethylene oxide), poly(ethylene glycol terephthalate), poly(vinyl alcohol), poly(vinyl acetate, polyvinyl chloride, polystyrene, and polyvinylpyrrolidone), their derivatives, their linear and branched copolymers and block copolymers, and blends thereof. Exemplary biodegradable polymers include polyesters, poly(orthoesters), poly(ethyleneamine), poly(caprolactone), poly(hydroxybutyrate), poly(hydroxyvalerate), polyanhydride, poly(acrylic acid), polyglycolic acid, poly(glycolic acid), poly(urethane), polycarbonate, polyphosphate, polyphosphazene, their derivatives, their linear and branched copolymers and block copolymers, and mixtures thereof.

[0049] In some embodiments, the protective coating comprises a carbohydrate structure of monosaccharides and carbohydrate polymers (such as disaccharides or polysaccharides, including but not limited to non-reducing polysaccharides or disaccharides and any combination thereof). Examples of carbohydrates that can be used in the protective coating include glucose, aldoses (D-allose, D-agrose, D-mannose, etc.), glucopyranose, pentahydroxyhexanal, aD-glucopyranosyl-D-glucose, aD-glucopyranosyl-dihydrate, polymers of PD-glucopyranosyl units, PD-fructofuranosyl-aD-glucopyranoside (anhydrous / dihydrate), f3-D-galactopyranosyl-D-glucose, aD-glucopyranosyl-dihydrate, etc. Polymers of glycosyl-aD-glucopyranoside (anhydrous / dihydrate), galactose, pentoses (ribose, xylose, lysose), dextrose, decahydrate, fructose, sucrose, lactose, maltose, trehalose, agarose, D-galactosyl-O-(1-4)-dehydrated-L-galactosyl, cellulose, PD-glucopyranoside units, and starch, as well as polyols, polyols, sugar alcohols, erythritol, glycols, glycerol, xylitol, and sorbitol.

[0050] In some embodiments, the protective coating contains a biocompatible and / or biodegradable polyester or polyanhydride, such as poly(lactic-co-glycolic acid), poly(glycolic acid), and poly(lactic-co-glycolic acid) copolymers. The particles may comprise one or more of the following polyesters: homopolymers comprising units of glycolic acid (hereinafter referred to as “PGA”), and lactic acid units (such as poly-L-lactic acid, poly-D-lactic acid, poly-D,L-lactic acid, poly-L-lactide, poly-D-lactide, and poly-D,L-lactide 5, collectively referred to as “PLA”), and caprolactone units (such as poly(e-caprolactone) (collectively referred to as “PCL”); copolymers comprising lactic acid and glycolic acid units, such as various forms of polylactic-co-glycolic acid copolymers and polylactide-glycolic acid copolymers, characterized by a lactic acid:glycolic acid ratio, collectively referred to as “PLGA”); and polyacrylates and their derivatives. Exemplary polymers also include copolymers of polyethylene glycol (PEG) and the aforementioned polyesters, such as various forms of PLGA-PEG or PLA-PEG copolymers, collectively referred to herein as "PEGylated polymers". In some embodiments, the PEG regions can be covalently associated with the polymer via a cleavable joint to create a "PEGylated polymer". In one aspect, the polymer comprises at least 60%, 65%, 70%, 75%, 80%, 85%, 89%, 90%, 91%, 92%, 93%, 94%, 95%, 96%, 97%, 98%, or 99% acetal side groups.

[0051] The triblock copolymers disclosed herein include, for example, polyethylene glycol (PEG), polyvinyl acetate, polyvinyl alcohol, polyvinylpyrrolidone (PVP), polyethylene oxide (PEO), polyvinylpyrrolidone-vinyl acetate copolymer, polymethacrylate, polyoxyethylene alkyl ether, polyoxyethylene castor oil, polycaprolactam, polylactic acid, polyglycolic acid, poly(lactic-glycolic acid), polylactic-glycolic acid copolymer (PLGA), and cellulose derivatives such as hydroxymethyl cellulose and hydroxypropyl cellulose. Examples of diblock copolymers that can be used in the protective coatings disclosed herein include, for example, polyethylene glycol (PEG), polyvinyl acetate, polyvinyl alcohol (PVA), polyvinylpyrrolidone (PVP), polyethylene oxide (PEO), polyvinylpyrrolidone-vinyl acetate copolymer, polymethacrylate, polyoxyethylene alkyl ether, polyoxyethylene castor oil, polycaprolactam, polylactic acid, polyglycolic acid, poly(lactic-glycolic acid), polylactic-glycolic acid copolymer (PLGA).

[0052] In one aspect, the protective coating comprises (i.e., encapsulated), and the encapsulated composition may further comprise lecithin or hydrolyzed lecithin as a carrier or as an encapsulating material. As used herein, lecithin and / or hydrolyzed lecithin coatings comprise coatings containing phosphatidylcholine, phosphatidylinositol, phosphatidylethanolamine, phosphatidylserine, and phosphatidic acid. The source of lecithin may be plant or animal.

[0053] In one aspect, any of the polymers, monosaccharides, disaccharides, or polysaccharides used to form the protective coating formed by placing the MSC additive in the encapsulation solution can be at an appropriate concentration for forming the protective coating. For example, the polymers, monosaccharides, disaccharides, or polysaccharides can be at any concentration between 0.01 mM and 10.0 M, such as from about 0.01 M to about 0.1 M, from about 0.1 mM to about 1.0 M, or from about 1.0 M to about 10.0 M.

[0054] In one aspect, the MSC secretome compositions disclosed herein (including, but not limited to, MSC growth factors, MSC exosomes, MSC extracts, and / or compositions comprising extracellular vesicles) may include any known ingredients commonly found in the pharmaceutical field, such as agents for combating free radicals; bactericides; isolating agents; preservatives; alkalizing or acidifying agents; fragrances; surfactants; fillers; natural products or extracts of natural products, such as aloe or green tea extracts; vitamins; or coloring materials. Other ingredients that may be combined with the powder may include antioxidants, which may be selected from a variety of antioxidants. Suitable antioxidants include vitamins such as vitamin C (L-ascorbic acid, magnesium ascorbate-2-phosphate, ascorbate palmitate, tetrahexyldecyl ascorbate), vitamin E (tocotrienols), vitamin A (retinol, retinal, retinoic acid, provitamin A carotenoids, such as β-carotene), N-acetylglucosamine, or other derivatives of glucosamine. Other components may include at least one essential fatty acid, such as S2-3, S2-6, and S2-9 polyunsaturated fatty acids, such as linoleic acid (LA), gamma-linolenic acid (GLA), alpha-linolenic acid (ALA), di-homo-gamma-linolenic acid (DGLA), and arachidonic acid (ARA). Fatty acids can be derived from a variety of sources, including evening primrose oil, blackcurrant oil, borage oil, or GLA-modified safflower seed oil. Other components may include a platelet-rich fibrin matrix, at least one component that supports ECM production and hyaluronic acid production, such as N-acetylglucosamine or other derivatives of glucosamine, ultra-low molecular weight (ULMW) hyaluronic acid, chondroitin sulfate, or keratin sulfate.

[0055] MSC secretome compositions can be produced by a method comprising culturing MSCs collected from donors under stimulating conditions; collecting the secretome and combining the secretome with an additive; and freezing the mixture; wherein the mixture is formulated into a therapeutic composition. The frozen mixture may be a dry powder. The therapeutic composition may comprise a dry powder reconstituted into a delivery medium (e.g., saline) suitable for human administration. The therapeutic composition may comprise exosomes, peptides, proteins, cytokines, growth factors, extracellular matrix (ECM), proteoglycans, glycosaminoglycans, chemokines, or combinations of two or more thereof. MSCs may be bone marrow MSCs. MSCs may be human MSCs, animal MSCs, pluripotent stromal cells, fibroblasts, or fibroblast cells. MSC secretome compositions can be produced by a method comprising culturing MSCs collected from donors under stimulating conditions, lysing the MSCs to produce an extracted lysate, concentrating the extracted lysate, combining the extracted lysate with an additive, and freezing the mixture to produce a dry powder. In an exemplary embodiment, the additive is a sugar. In some embodiments, freezing includes lyophilization. The powder may contain a concentrated collection of analgesic MSC secretory components (e.g., exosomes, extracellular matrix) that are specific for anti-inflammatory purposes.

[0056] The method may also include filtration-sterilization, concentration, freezing, or freeze-drying of MSC culture media, for example, after culture under wound healing conditions. Furthermore, MSC culture media may be combined with a cryoprotectant and then frozen. The cryoprotectant may be an additive, such as oligosaccharides.

[0057] Lysis can be achieved by adding a hypotonic solution or by repeated freeze-thaw cycles that disrupt the cell membrane. Cells can lyse while attached to a culture surface or in suspension. Cells can be lysed by enzymatic release and / or by mechanical homogenization.

[0058] Stimulation conditions include stimulating MSCs to selectively secrete desired anti-inflammatory proteins, peptides, glycosaminoglycans, proteoglycans, exosomes, and / or secretomes. Stimulation can be achieved by adjusting cell growth conditions such as cell confluence, culture medium supplements, nutrient supplements, oxygen levels, culture duration under these conditions, cell passage number, or combinations thereof. Stimulation can include growth under wound healing conditions. Wound healing conditions can include approximately 1% to approximately 5% oxygen, reduced or absent serum, reduced glucose, or various combinations of these elements.

[0059] Delivery of drug carriers / drug products Therapeutic compositions, such as MSC secretome compositions, can be administered in vivo in pharmaceutically acceptable carriers. "Pharmaceutically acceptable" means that the material is not biologically or otherwise undesirable; that is, the material can be administered to the subject together with the nucleic acid or carrier without causing any undesirable biological effects or interacting harmfully with any of the other components of the pharmaceutical composition containing it. The carrier can be selected to minimize any degradation of the active ingredient and any adverse side effects on the subject. The composition can be administered parenterally (e.g., intravenously).

[0060] If the composition is used for parenteral administration, it is typically characterized by injection. Injectable formulations can be prepared in conventional forms, such as liquid solutions or suspensions, solid forms suitable for dissolving or suspending in a liquid prior to injection, or emulsions. Parenteral administration may involve the use of sustained-release or continuous-release systems to maintain a constant dose.

[0061] Preparations intended for parenteral administration may include sodium chloride solution.

[0062] Therapeutic uses This article provides a method for treating irradiated skin in subjects. Subjects described herein may suffer from radiation-induced fibrosis syndrome (RFS) or radiation-induced fibrosis (RIF). The irradiated skin may have been exposed to ionizing radiation. Irradiated skin may exhibit one or more of the following: fibrosis, hardening, thickening, induration, inflammation, skin firmness, elastin content, and / or collagen content. The subject may have been diagnosed with cancer. For example, the subject may have been diagnosed with breast cancer. In some embodiments, the subject may have fibrotic irradiated breast tissue. The subject may experience improvement after treatment in one or more of the following skin characteristics: fibrosis, hardening, thickening, induration, inflammation, skin firmness, elastin content, and / or collagen content, and combinations thereof.

[0063] Methods of treating irradiated skin of a subject may include administering to the subject a composition comprising a protein, wherein the protein comprises one or more proteins selected from the following: ferritin, IGFBP-4 (insulin-like growth factor binding protein-4), IL-1 R6 (interleukin-1 receptor 6), LAMP2 (lysosome-associated membrane glycoprotein 2), bIG-H3 (transforming growth factor-β-inducible protein ig-h3), GPR115 (adhesion G protein-coupled receptor F4), CD63 antigen, CD109 antigen, serine protease inhibitor F1 (pigment epithelium-derived factor), IGFBP-6 (insulin-like growth factor binding protein-6), HS3ST4 (heparanol sulfate glucosamine 3-O-sulfotransferase 4), OPN (osteopontin), PAI-1 (plasminogen activator inhibitor-1 or sERPINE). 1) Cathepsin B, IGFBP-2 (insulin-like growth factor binding protein-2), brain signaling protein 6C, IGF-2 (insulin-like growth factor-2), sorting protein, serine protease inhibitor B6, Dkk-3 (Dickkopf-related protein 3), CNTF (ciliary neurotrophic factor), TSP-1 (thromboretin-1), GM-CSF Ra (granulocyte-macrophage colony-stimulating factor receptor subunit α), coagulation regulatory protein, endosaccharide, (podocyte protein-like protein 2) IGFBP-3 (insulin-like binding protein-3), RGM-C (hepcidin regulatory protein), PF4 (platelet factor 4), MIF (macrophage migration inhibitory factor), TGM4 (protein-glutamine-γ-glutamyltransferase 4), periosteal protein, furin protease, TIMP-1 (MMP tissue inhibitor 1), gypsum glycan, PCK1 (cytosol-type phosphoenolpyruvate carboxykinase), CD9 antigen, CD99 antigen, CA2 (carbonic anhydrase 2), PRDX4 (peroxide reductase-4), transferrin, DcR3 (tumor necrosis factor receptor superfamily member 6B), GP73 (Golgi membrane protein 1), CD81 antigen, luminescent glycan, TIMP-2 (MMP tissue inhibitor 2), and the proteins listed in Table 1.A method of treating irradiated skin of a subject may include administering to the subject an extracellular vesicle (EV) composition comprising one or more nucleic acids selected from the following: hsa-miR-125b-5p, hsa-miR-145-5p, hsa-miR-191-5p, hsa-miR-199a-3p, hsa-miR-21-5p, hsa-miR-221-3p, hsa-miR-222-3p, hsa-miR-222-3p, hsa-miR-223p, hsa-mi R-23a-3p, hsa-miR-23b-3p, hsa-miR-27a-3p, hsa-miR-27b-3p, hsa-miR-29a-3p, hsa-miR-29c-3p, hsa-miR-31-5p, hsa-miR-320a, hsa-miR-34a-5p, hsa-miR-423-3p, hsa-miR-424-5p, and hsa-miR-940, and combinations of two or more thereof. In some methods, at least 80% of the EVs are CD63+CD9-CD81-. The composition may have a volume of about 0.5 mL. The composition may have an EV concentration of at least about 60 billion EVs. The composition may have an EV concentration of at least about 60 billion EVs / mL. The composition may have an EV concentration of at least about 60 billion EVs / mL, for example, about 60 billion to about 250 billion EVs / mL. Optionally, about 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14 or 15 mL is administered. As a non-limiting example, 5 mL is used. The number of EVs in the composition may be about 10 million to about 1 trillion. The composition may be administered intradermally.

[0064] Methods of treating irradiated skin of a subject may include administering to the subject a composition comprising extracellular vesicles (EVs), wherein the composition comprises at least about 60 billion EVs. At least about 60 billion EVs can be from about 60 billion to about 80 billion EVs. At least about 60 billion EVs can be a composition of at least about 60 billion EVs / mL. At least about 60 billion EVs can be a composition of about 60 billion to 80 billion EVs / mL. In some methods, at least 80% of the EVs are CD63. + CD9 - CD81 -The composition may have a volume of about 0.5 mL. The composition may have an EV concentration of at least about 60 billion EVs / mL, for example, about 60 billion to about 250 billion EVs / mL. Optionally, about 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, or 15 mL is administered. As a non-limiting example, 5 mL is used. The number of EVs in the composition may be from about 10 million to about 1 trillion. The composition may be administered intradermally.

[0065] Methods of treating irradiated skin of a subject may include administering a composition comprising extracellular vesicles (EVs) to the subject, wherein at least 80% of the EVs are CD63. + CD9 - CD81 - The composition may have a volume of about 0.5 mL. The composition may have an EV concentration of at least about 60 billion EVs. The composition may have an EV concentration of at least about 60 billion EVs / mL. The composition may have an EV concentration of at least about 60 billion EVs / mL, for example, about 60 billion to about 250 billion EVs / mL. Optionally, about 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, or 15 mL is administered. As a non-limiting example, 5 mL. The number of EVs in the composition may be from about 10 million to about 1 trillion. The composition may be administered intradermally.

[0066] Methods of treating irradiated skin of a subject may include administering to the subject a composition comprising a protein and extracellular vesicles (EVs), wherein the protein comprises one or more proteins selected from the following: ferritin, IGFBP-4 (insulin-like growth factor binding protein-4), IL-1 R6 (interleukin-1 receptor 6), LAMP2 (lysosome-associated membrane glycoprotein 2), bIG-H3 (transforming growth factor-β-inducible protein ig-h3), GPR115 (adhesion G protein-coupled receptor F4), CD109 antigen, serine protease inhibitor F1 (pigment epithelium-derived factor), IGFBP-6 (insulin-like growth factor binding protein-6), HS3ST4 (heparanol sulfate glucosamine 3-O-sulfotransferase 4), OPN (osteopontin), PAI-1 (plasminogen activator inhibitor-1 or sERPINE). 1) Cathepsin B, IGFBP-2 (insulin-like growth factor binding protein-2), brain signaling protein 6C, IGF-2 (insulin-like growth factor-2), sorting protein, serine protease inhibitor B6, Dkk-3 (Dickkopf-related protein 3), CNTF (ciliary neurotrophic factor), TSP-1 (thromboretin-1), GM-CSF Ra (granulocyte-macrophage colony-stimulating factor receptor subunit α), coagulation regulatory protein, endosaccharide, (podocyte protein-like protein 2) IGFBP-3 (insulin-like binding protein-3), RGM-C (hepcidin regulatory protein), PF4 (platelet factor 4), MIF (macrophage migration inhibitory factor), TGM4 (protein-glutamine-γ-glutamyltransferase 4), periosteal protein, furin protease, TIMP-1 (MMP tissue inhibitor 1), gypsum proteoglycan, PCK1 (cytosol-type phosphoenolpyruvate carboxykinase), CD9 antigen, CD99 antigen, CA2 (carbonic anhydrase 2), PRDX4 (peroxide reductase-4), transferrin, DcR3 (tumor necrosis factor receptor superfamily member 6B), GP73 (Golgi membrane protein 1), CD81 antigen, luminescent proteoglycan, TIMP-2 (MMP tissue inhibitor 2), and the proteins listed in Table 1;Furthermore, the EV contains one or more nucleic acids selected from the following: hsa-miR-125b-5p, hsa-miR-145-5p, hsa-miR-191-5p, hsa-miR-199a-3p, hsa-miR-21-5p, hsa-miR-221-3p, hsa-miR-222-3p, hsa-miR-22-3p, hsa-miR-23a-3p, hsa-miR- The miRNAs are hsa-miR-23b-3p, hsa-miR-27a-3p, hsa-miR-27b-3p, hsa-miR-29a-3p, hsa-miR-29c-3p, hsa-miR-31-5p, hsa-miR-320a, hsa-miR-34a-5p, hsa-miR-423-3p, hsa-miR-424-5p, and hsa-miR-940, and combinations of two or more thereof. The miRNA sequences are available from https: / / www.mirbase.org / . In some methods, at least 80% of the EVs are CD63+CD9-CD81-. The composition can have a volume of about 0.5 mL. The composition can have an EV concentration of at least about 60 billion EVs. The composition can have an EV concentration of at least about 60 billion EVs / mL. The composition may have an EV concentration of at least about 60 billion EVs / mL, for example, about 60 billion to about 250 billion EVs / mL. Optionally, about 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, or 15 mL is administered. As a non-limiting example, 5 mL is used. The number of EVs in the composition may be about 10 million to about 1 trillion. The composition may be administered intradermally.

[0067] Methods of treating fibrosis in a subject may include administering to the subject a composition comprising a protein, wherein the protein comprises one or more proteins selected from: ferritin, IGFBP-4 (insulin-like growth factor binding protein-4), IL-1 R6 (interleukin-1 receptor 6), LAMP2 (lysosome-associated membrane glycoprotein 2), bIG-H3 (transforming growth factor-β inducible protein ig-h3), GPR115 (adhesion G protein-coupled receptor F4), CD63 antigen, CD109 antigen, serine protease inhibitor F1 (pigment epithelium-derived factor), IGFBP-6 (insulin-like growth factor binding protein-6), HS3ST4 (heparin sulfate glucosamine 3-O-sulfotransferase 4), OPN (ostepontin), PAI-1 (plasminogen activator inhibitor-1 or SERPINE1), cathepsin B, IGFBP-2 (insulin-like growth factor binding protein-2), brain signaling protein 6C, IGF-2 (insulin-like growth factor-2), sorting protein, serine protease inhibitor B6, Dkk-3 (Dickkopf-associated protein 3), CNTF (ciliary neurotrophic factor), TSP-1 (platelet-reactive protein 1), GM-CSF Ra (granulocyte-macrophage colony-stimulating factor receptor subunit α), coagulation regulatory protein, endosaccharide, (podocyte protein-like protein 2) IGFBP-3 (insulin-like binding protein-3), RGM-C (hepcidin regulatory protein), PF4 (platelet factor 4), MIF (macrophage migration inhibitory factor), TGM4 (protein-glutamine-γ-glutamyltransferase 4), periosteal protein, furin protease, TIMP-1 (MMP tissue inhibitor 1), gypsum glycan, PCK1 (cytosol-type phosphoenolpyruvate carboxykinase), CD9 antigen, CD99 antigen, CA2 (carbonic anhydrase 2), PRDX4 (peroxide reductase-4), transferrin, DcR3 (tumor necrosis factor receptor superfamily member 6B), GP73 (Golgi membrane protein 1), CD81 antigen, luminescent glycan, TIMP-2 (MMP tissue inhibitor 2), and the proteins listed in Table 1.Methods of treating irradiated skin of a subject may include administering a composition of extracellular vesicles (EVs) to the subject, the EVs comprising one or more nucleic acids selected from the following: hsa-miR-125b-5p, hsa-miR-145-5p, hsa-miR-191-5p, hsa-miR-199a-3p, hsa-miR-21-5p, hsa-miR-221-3p, hsa-miR-222-3p, hsa-miR-222-3p, hsa-miR-223p, hsa-mi R-23a-3p, hsa-miR-23b-3p, hsa-miR-27a-3p, hsa-miR-27b-3p, hsa-miR-29a-3p, hsa-miR-29c-3p, hsa-miR-31-5p, hsa-miR-320a, hsa-miR-34a-5p, hsa-miR-423-3p, hsa-miR-424-5p, and hsa-miR-940, and combinations of two or more thereof. In some methods, at least 80% of the EVs are CD63+CD9-CD81-. The composition may have a volume of about 0.5 mL. The composition may have an EV concentration of at least about 60 billion EVs. The composition may have an EV concentration of at least about 60 billion EVs / mL. Fibrosis can be fibrosis of the skin. The composition may have an EV concentration of at least about 60 billion EVs / mL, for example, about 60 billion to about 250 billion EVs / mL. Optionally, about 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14 or 15 mL is administered. As a non-limiting example, 5 mL is used. The number of EVs in the composition may be about 10 million to about 1 trillion. The composition may be administered intradermally.

[0068] Methods of treating fibrosis in a subject may include administering to the subject a composition comprising extracellular vesicles (EVs), wherein the composition contains at least about 60 billion EVs. At least about 60 billion EVs can be from about 60 billion to about 80 billion EVs. At least about 60 billion EVs can be a composition containing at least about 60 billion EVs / mL. At least about 60 billion EVs can be in a composition containing at least about 60 billion to about 80 billion EVs / mL. In some methods, at least 80% of the EVs are CD63. + CD9 - CD81 -The composition may have a volume of about 0.5 mL. Fibrosis may be fibrosis of the skin. The composition may have an EV concentration of at least about 60 billion EVs / mL, for example, about 60 billion to about 250 billion EVs / mL. Optionally, about 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14 or 15 mL is applied. As a non-limiting example, 5 mL. The number of EVs in the composition may be about 10 million to about 1 trillion. The composition may be administered intradermally.

[0069] Methods for treating fibrosis in a subject may include administering to the subject a composition comprising extracellular vesicles (EVs), wherein at least 80% of the EVs are CD63. + CD9 - CD81 - The composition may have a volume of about 0.5 mL. The composition may have an EV concentration of at least about 60 billion EVs. The composition may have an EV concentration of at least about 60 billion EVs / mL. Fibrosis can be fibrosis of the skin. The composition may have an EV concentration of at least about 60 billion EVs / mL, for example, about 60 billion to about 250 billion EVs / mL. Optionally, about 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, or 15 mL is applied. As a non-limiting example, 5 mL. The number of EVs in the composition may be from about 10 million to about 1 trillion. The composition may be administered intradermally.

[0070] Methods of treating fibrosis in a subject may include administering to the subject a composition comprising a protein and extracellular vesicles (EVs), wherein the protein comprises one or more proteins selected from the following: ferritin, IGFBP-4 (insulin-like growth factor binding protein-4), IL-1 R6 (interleukin-1 receptor 6), LAMP2 (lysosome-associated membrane glycoprotein 2), bIG-H3 (transforming growth factor-β inducible protein ig-h3), GPR115 (adhesion G protein-coupled receptor F4), CD109 antigen, serine protease inhibitor F1 (pigment epithelial-derived factor), IGFBP-6 (insulin-like growth factor binding protein-6), HS3ST4 (heparanol sulfate glucosamine 3-O-sulfotransferase 4), OPN (osteopontin), PAI-1 (plasminogen activator inhibitor-1 or sERPINE). 1) Cathepsin B, IGFBP-2 (insulin-like growth factor binding protein-2), brain signaling protein 6C, IGF-2 (insulin-like growth factor-2), sorting protein, serine protease inhibitor B6, Dkk-3 (Dickkopf-related protein 3), CNTF (ciliary neurotrophic factor), TSP-1 (thromboretin-1), GM-CSF Ra (granulocyte-macrophage colony-stimulating factor receptor subunit α), coagulation regulatory protein, endosaccharide, (podocyte protein-like protein 2) IGFBP-3 (insulin-like binding protein-3), RGM-C (hepcidin regulatory protein), PF4 (platelet factor 4), MIF (macrophage migration inhibitory factor), TGM4 (protein-glutamine-γ-glutamyltransferase 4), periosteal protein, furin protease, TIMP-1 (MMP tissue inhibitor 1), gypsum proteoglycan, PCK1 (cytosol-type phosphoenolpyruvate carboxykinase), CD9 antigen, CD99 antigen, CA2 (carbonic anhydrase 2), PRDX4 (peroxide reductase-4), transferrin, DcR3 (tumor necrosis factor receptor superfamily member 6B), GP73 (Golgi membrane protein 1), CD81 antigen, luminescent proteoglycan, TIMP-2 (MMP tissue inhibitor 2), and the proteins listed in Table 1;Furthermore, the EV contains one or more nucleic acids selected from the following: hsa-miR-125b-5p, hsa-miR-145-5p, hsa-miR-191-5p, hsa-miR-199a-3p, hsa-miR-21-5p, hsa-miR-221-3p, hsa-miR-222-3p, hsa-miR-22-3p, hsa-miR-23a-3p, hsa-miR- The miRNAs are hsa-miR-23b-3p, hsa-miR-27a-3p, hsa-miR-27b-3p, hsa-miR-29a-3p, hsa-miR-29c-3p, hsa-miR-31-5p, hsa-miR-320a, hsa-miR-34a-5p, hsa-miR-423-3p, hsa-miR-424-5p, and hsa-miR-940, and combinations of two or more thereof. The miRNA sequences are available from https: / / www.mirbase.org / . In some methods, at least 80% of the EVs are CD63+CD9-CD81-. The composition can have a volume of about 0.5 mL. The composition can have an EV concentration of at least about 60 billion EVs. The composition can have an EV concentration of at least about 60 billion EVs / mL. Fibrosis can be fibrosis of the skin. The composition may have an EV concentration of at least about 60 billion EVs / mL, for example, about 60 billion to about 250 billion EVs / mL. Optionally, about 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, or 15 mL is administered. As a non-limiting example, 5 mL is used. The number of EVs in the composition may be about 10 million to about 1 trillion. The composition may be administered intradermally.

[0071] The protein to be administered to a subject can be prepared by a method comprising: (a) culturing bone marrow-derived mesenchymal stem cells (MSCs) under the following conditions to produce an MSC conditioned medium: (i) oxygen tension below 5%; and (ii) a medium with a pH below 7; (b) harvesting the MSC conditioned medium; and (c) formulating the MSC conditioned medium to produce a composition comprising the protein produced from the bone marrow-derived MSCs in step (a), and the formulation comprising formulating the protein into a pharmaceutically acceptable formulation for injection into a subject. The medium may be serum-free. The medium may have a glucose concentration of less than 4.5 g / L or may be glucose-free. The composition may have a volume of about 0.5 mL. The composition may have an EV concentration of at least about 60 billion EVs / mL, for example, about 60 billion to about 250 billion EVs / mL. Optionally, about 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, or 15 mL is administered. As a non-limiting example, 5 mL. The number of EVs in the composition can be from about 10 million to about 1 trillion. The composition can be administered intradermally.

[0072] The EVs administered to the subject can be prepared by a method comprising: (a) culturing bone marrow-derived mesenchymal stem cells (MSCs) under the following conditions to produce an MSC conditioned medium: (i) oxygen tension below 5%; and (ii) a medium with a pH below 7; (b) harvesting the MSC conditioned medium; and (c) preparing the MSC conditioned medium to produce a composition comprising the EVs produced from the bone marrow-derived MSCs in step (a), and the preparation comprising formulating the EVs into a pharmaceutically acceptable formulation for injection into the subject. The medium may be serum-free. The medium may have a glucose concentration below 4.5 g / L or be glucose-free. In some methods, at least 80% of the EVs are CD63. + CD9 - CD81 - The composition may have a volume of about 0.5 mL. The composition may have an EV concentration of at least about 60 billion EVs. The composition may have an EV concentration of at least about 60 billion EVs / mL. The composition may have an EV concentration of at least about 60 billion EVs / mL, for example, about 60 billion to about 250 billion EVs / mL. Optionally, about 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, or 15 mL is administered. As a non-limiting example, 5 mL. The number of EVs in the composition may be from about 10 million to about 1 trillion. The composition may be administered intradermally.

[0073] A method for treating irradiated skin of a subject may include administering a protein-containing composition to the subject, the method comprising: (a) culturing bone marrow-derived mesenchymal stem cells (MSCs) under conditions of: (i) oxygen tension below 5%; and (ii) a pH below 7; (b) harvesting the MSC conditioned medium; and (c) preparing the MSC conditioned medium to produce a composition comprising the protein produced from the bone marrow-derived MSCs in step (a), and the preparation comprising formulating the protein into a pharmaceutically acceptable formulation for injection into the subject; and (d) administering the pharmaceutically acceptable formulation to the subject. The culture medium may be serum-free. The culture medium may have a glucose concentration of less than 4.5 g / L or may be glucose-free.

[0074] A method of treating a subject with irradiated skin may include administering a composition containing EVs to the subject, the method comprising: (a) culturing bone marrow-derived mesenchymal stem cells (MSCs) under conditions of: (i) oxygen tension below 5%; and (ii) a pH below 7; (b) harvesting the MSC conditioned medium; and (c) preparing the MSC conditioned medium to produce a composition comprising EVs produced from bone marrow-derived MSCs in step (a), and the preparation comprising formulating the EVs into a pharmaceutically acceptable formulation for injection into the subject; and (d) administering the pharmaceutically acceptable formulation to the subject. The culture medium may be serum-free. The culture medium may have a glucose concentration of less than 4.5 g / L or may be glucose-free. In some methods, at least 80% of the EVs are CD63. + CD9 - CD81 - The composition may have a volume of about 0.5 mL. The composition may have an EV concentration of at least about 60 billion EVs. The composition may have an EV concentration of at least about 60 billion EVs / mL. The composition may have an EV concentration of at least about 60 billion EVs / mL, for example, about 60 billion to about 250 billion EVs / mL. Optionally, about 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, or 15 mL is administered. As a non-limiting example, 5 mL. The number of EVs in the composition may be from about 10 million to about 1 trillion. The composition may be administered intradermally.

[0075] Methods of treating irradiated skin of a subject may include administering a composition comprising a protein and an EV to the subject, the method comprising: (a) culturing bone marrow-derived mesenchymal stem cells (MSCs) under conditions of: (i) oxygen tension below 5%; and (ii) a pH below 7; (b) harvesting the MSC conditioned medium; and (c) preparing the MSC conditioned medium to produce a composition comprising the protein and EV produced from the bone marrow-derived MSCs in step (a), and the preparation comprising formulating the protein and EV into a pharmaceutically acceptable formulation for injection into the subject; and (d) administering the pharmaceutically acceptable formulation to the subject. The culture medium may be serum-free. The culture medium may have a glucose concentration of less than 4.5 g / L or may be glucose-free. In some methods, at least 80% of the EV is CD63. + CD9 - CD81 - The composition may have a volume of about 0.5 mL. The composition may have an EV concentration of at least about 60 billion EVs. The composition may have an EV concentration of at least about 60 billion EVs / mL. The composition may have an EV concentration of at least about 60 billion EVs / mL, for example, about 60 billion to about 250 billion EVs / mL. Optionally, about 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, or 15 mL is administered. As a non-limiting example, 5 mL. The number of EVs in the composition may be from about 10 million to about 1 trillion. The composition may be administered intradermally.

[0076] In some embodiments, the therapeutic compositions described herein (such as MSC secretome compositions) comprise growth factors and / or exosomes. Growth factors and / or exosomes can induce cell proliferation and angiogenesis. The therapeutic compositions described herein may comprise mitogenic proteins such as transforming growth factor-α (TGF-α), TGFβ, hepatocyte growth factor (HGF), epidermal growth factor (EGF), basic fibroblast growth factor-2 (FGF-2), and / or insulin-like growth factor-1 (IGF-1). These increase the division of fibroblasts, epithelial cells, and endothelial cells. The therapeutic compositions described herein may comprise vascular endothelial growth factor (VEGF), IGF-1, EGF, and / or angiopoietin-1, which recruit endothelial lineage cells and initiate vascularization. The therapeutic compositions described herein may comprise anti-inflammatory components. The therapeutic compositions described herein may comprise immunomodulatory components. Non-limiting exemplary anti-inflammatory proteins include prostaglandin 2, TGF-131, HGF, SDF-1, nitrous oxide, indoleamine 2,3-dioxygenase, IL-4, IL-10, IL-1 receptor antagonists, and soluble tumor necrosis factor-α receptors. The therapeutic compositions of this invention may contain components that inhibit the proliferation and function of inflammatory immune cells, including T cells, natural killer cells, B cells, monocytes, macrophages, and dendritic cells.

[0077] A chronic inflammatory environment is characterized by a persistent imbalance between helper T cell types and macrophage types. In some implementations, therapeutic compositions, such as MSC secretory compositions, indirectly promote the conversion of TH1 cells to TH2 cells by reducing INF-γ and increasing IL-4 and IL-10. The restored TH1 / TH2 balance can improve tissue regeneration in cartilage, muscle, and other soft tissues. The reduction of INF-γ and the secretion of IL-4 can promote the conversion of macrophages from M1 type (pro-inflammatory, anti-angiogenic, and tissue growth inhibitory) to M2 type (anti-inflammatory, pro-remodeling, and tissue healing) for healing and regeneration of bone, muscle, and nerves.

[0078] Treatment of irradiated skin In some embodiments, the therapeutic compositions disclosed herein (e.g., MSC secretory composition) are used in methods of treating a subject's irradiated skin. Any therapeutic composition described herein can be used in such methods. In some embodiments, the subject suffers from radiation-induced fibrosis syndrome (RFS). In some embodiments, the subject suffers from radiation-induced fibrosis (RIF). In some embodiments, the subject has been exposed to ionizing radiation. In some embodiments, the irradiated skin exhibits one or more of fibrosis, hardening, thickening, induration, inflammation, skin stiffness, elastin content, and / or collagen content. In some embodiments, the subject has been diagnosed with cancer. In some embodiments, the subject has been diagnosed with breast cancer. In some embodiments, the subject has fibrotic irradiated breast tissue. In some embodiments, the persistence of any symptoms disclosed herein is chronic. In some embodiments, one or more of the symptoms disclosed herein persist for 1 week, 2 weeks, 3 weeks, 4 weeks, 1 month, 2 months, 3 months, 4 months, 5 months, 6 months, 7 months, 8 months, 9 months, 10 months, 11 months, 12 months, 2 years, 3 years, 4 years, 5 years, 6 years, 7 years, 8 years, 9 years, 10 years, or longer. In some embodiments, the subject experiences improvement after treatment in one or more of the following skin characteristics: fibrosis, hardening, thickening, induration, inflammation, skin firmness, elastin content, and / or collagen content, or combinations thereof.

[0079] In some embodiments, the irradiated skin has been exposed to ionizing radiation. In some embodiments, the subject has received external beam radiation therapy. In some embodiments, the subject has received whole-body radiation therapy. In some embodiments, the subject has been diagnosed with cancer. In some embodiments, the subject has been diagnosed with breast cancer. In some embodiments, the subject has been diagnosed with skin cancer. In some embodiments, the subject exhibits radiation dermatitis and / or radiation-induced skin injury (CRI). In some embodiments, the subject exhibits symptoms including, but not limited to, redness, dryness, itching, swelling, blistering, sores, hair changes, nail changes, pain, inflammation, infection, bleeding, tenderness, discoloration, erythema, edema, burns, peeling, scaling, necrosis, and / or ulceration. In some embodiments, in response to any of the treatments disclosed herein, the subject experiences improvement in one or more symptoms related to radiation exposure of the skin. In some implementations, the subject experiences improvement in one or more symptoms, including but not limited to redness, dryness, itching, swelling, blistering, sores, hair changes, nail changes, pain, inflammation, infection, bleeding, tenderness, discoloration, erythema, edema, burns, peeling, scaling, necrosis, and / or ulceration. In some implementations, the treatment improves one or more of the following skin characteristics selected from: fibrosis, hardening, thickening, induration, inflammation, skin firmness, elastin content, and / or collagen content, and combinations thereof.

[0080] In some embodiments, the treatment product is administered by injection. In some embodiments, the treatment product is administered by epidermal injection. In some embodiments, a single dose of 5 mL of the treatment product is administered. In some embodiments, a skin biopsy is collected prior to treatment. In some embodiments, the treatment product is applied to the skin biopsy site. In some embodiments, a second skin biopsy is collected post-treatment. In some embodiments, the subject is monitored for at least one week, at least two weeks, at least three weeks, at least four weeks, at least one month, at least two months, at least three months, at least four months, at least five months, at least six months, at least seven months, at least eight months, at least nine months, at least ten months, at least eleven months, or at least twelve months post-treatment. In some embodiments, a second skin biopsy is collected nine months post-treatment. In some embodiments, the first and / or second skin biopsies are 1×1 cm, 2×2 cm, 3×3 cm, 4×4 cm, or 5×5 cm. In some embodiments, the first and / or second skin biopsies undergo histopathological analysis. In some embodiments, the histopathological analysis includes hematoxylin and eosin (H&E) staining. In some embodiments, the histopathological analysis includes examination of fibrosis, the quantity, quality, and / or distribution of elastin, and the quantity and / or necrosis of type I collagen. In some embodiments, the histopathological analysis includes scoring of a subset of inflammatory cells. In some embodiments, the subject's skin stiffness is measured. In some embodiments, skin stiffness is measured in Newtons. In some embodiments, skin stiffness is measured using SkinFibroMeter readings. In some embodiments, treatment results in a decrease in SkinFibroMeter readings of at least 5%, 10%, 15%, 20%, 25%, 30%, 35%, 40%, 45%, or 50%. In some embodiments, the treatment results in a reduction in skin stiffness of at least 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24, or 25 Newtons. In some embodiments, the treatment results in improvement in one or more of the following: fibrosis, necrosis, type I collagen, and / or elastin scores. In some embodiments, the improvement in elastin scores includes improvements in the quality, quantity, and / or distribution of elastin fibers. In some embodiments, the treatment improves and / or reduces inflammation.

[0081] This article discloses a method for treating irradiated skin of a subject, the method comprising administering to the subject a composition comprising a therapeutic mesenchymal stem cell (MSC) secretory composition containing extracellular vesicles, wherein at least 80% of the extracellular vesicles in the therapeutic MSC secretory composition are CD63+CD9-CD81-.

[0082] This article discloses a method and composition for treating irradiated skin of a subject, wherein the method includes administering to the subject a composition comprising a therapeutic mesenchymal stem cell (MSC) secretory composition containing extracellular vesicles, wherein, compared with before administration, the subject exhibits improvement in fibrosis, redness, dryness, itching, swelling, blistering, sores, hair changes, nail changes, pain, inflammation, infection, bleeding, tenderness, discoloration, erythema, edema, burns, peeling, desquamation, necrosis and / or ulceration.

[0083] This article discloses a method and composition for treating irradiated skin of a subject, wherein the method includes applying to the subject a composition comprising a therapeutic mesenchymal stem cell (MSC) secretory composition containing extracellular vesicles, wherein the subject exhibits improvements in fibrosis, hardening, thickening, induration, inflammation, skin firmness, elastin content and / or collagen content, and combinations thereof, compared to before application.

[0084] This document also discloses methods and compositions for treating irradiated skin of a subject, wherein the method comprises administering a treatment composition to the subject, for example, an MSC secretome composition comprising any combination of proteins and / or miRNAs selected from: ferritin, NUP85, LAMP2, GPR115, serine protease inhibitor F1, OPN, PAI-1, DAPP1, cathepsin B, brain signaling protein 6C, PDGF Rα, sorting protein, serine protease inhibitor B6, Dkk-3, coagulation regulator protein, PF4, MIF, periosteal protein, furin, TIMP-1, tectonic proteoglycan, PCK1, CD99, CD63, CD9, CD81, transferrin, DcR3, photoglucan, TIMP-2, SLITRK5, FAP, leptospirin, DPPII, cIAP-1, pentameric protein 3, lactone, enkephalin, albumin, galactolectin-1, UNC5H3, IL-20R β, SREC-II, JAM-C, TNFRI, htPAPP-A, eNOS, MSP R, TPP1, LAMP1, B2M, NCAM-1, HIF-1 α, ST6GAL1, CD99-L2, convolutional protein A4, EMMPRIN, p53, brain signaling protein 7A, NKp80, cysteine ​​absorptase B, osteoadhesion, mid-term factor, calreticulin, osteoactivin, asparagine endopeptidase, TAZ, cathepsin L, RBP4, serine protease inhibitor A4, JAM-A, MCSF, LIMPII, OPG, IL-22, galactoglobulin-3, MOG, trypsin 3, SIRP α, cohesin-4, IGFBP-4, IL-1 R6, GSTM1, NUP85, LAMP2, transmembrane peptidase A, IL-1 F10, bIG-H3, GPR115, TGFb1, liver glycoside A4, CD109, serine protease inhibitor F1, IGFBP-6, HS3ST4, aminopeptidase LRAP, OPN, PAI-1, DAPP1, GDF-9, cathepsin B, IGFBP-2, brain signaling protein 6C, IGF-2, PDGF Rα, sorting protein, serine protease inhibitor B6, Dkk-3, CNTF, TSP-1, GM-CSF Ra, coagulation regulatory protein, endosaccharides, IGFBP-3, RGM-C, PF4, MIF, TGM4, periosteal protein, furin protease, TIMP-1, PAPP-A, dermal proteoglycans, PCK1, arylsulfatase A, CD99, CA2, PRDX4, transferrin, DcR3, GP73, LAIR2, ULBP-4, optical proteoglycans, TIMP-2, TFPI, SOX2, SLITRK5, FAP, spinal cord protein, ENPP-2, CD97.CTACK, Integrin α1, EXTL3, IL-18, BPa, PD-L2, PSMA, IL-20 Ra, Glyoxalase II, Trypsin I, IGF-2R, ADAMTS L1-1, Erythropoietin, Convolutional D1, DNMT3A, BCL-2, CL-P1, Hepatocyte Glycol-B3, FABP6, CHI3L1, FCRLS, TFF3, Neurosphingomyelin, DPPII, cIAP-1, PDGF Rb, Pentanoic Acid 3, Angiotensinogen, Follicle-Stapressin, CF VII, Persephin, TRAIL R1, THAP11, CD200, CLEC-2, AMIGO, IGFBP-5, PON1, SOX7, GALNT10, Lactone, Granulosin Progenitor, PCSK2, GKN1, IL-18, Enkephalin, Stabilin-2, IL-17 RD, albumin, follicle-stimulating protein 1, MMP-10, FKBP51, LRRC4, Pref-1, galactoglobin-1, troponin C, UNC5H3, FLRT2, CD314, brain signaling protein 6B, cytokinin-4, CD27 ligand, IL-20 Rβ, brain signaling protein 6A, TSK, cytokeratin-8, CHST3, Mcl-1, DPPIV, SREC-II, norin, JAM-C, Bcl-10, Wnt-4, LSECtin, Kell, TNF RI, PTP1B, htPAPP-A, IDO, PDGF-CC, Glycopropyl peptide, Activator Protein A, TLR2, SCCA2, FABP1, eNOS, SHP-1, ICOS, C1qTNF9, MMP-1, TC-PTP, IL-24, gp130, C-myc, LILRB4, BMP-2, MIA, CD34, CD63, CD9, CD81, IFNab R2, Phosphatidylinositol Proteoglycan 2, MSP R, DSCAM, Membrane-type Serine Protease, KIR2DL3, CD30, Salivary Agglutinin-10, CLEC-1, TPP1, Ubiquitin+1, ANGPTL4, TWEAK R, Nestin-1, CD2, Kallikrein 1, TSLP R, LAMP1, TROY, VCAM-1, salivary immunoglobulin-11, S100A1, PAR1, thyroid peroxidase, aminopeptidase P2, IL-1 RI, ADAMS, OSM R β, platelet-reactive protein-2, SMPD1, B2M, MFRP, LRP-6, ST3GAL1, NCAM-1 (CD56), granzyme B, lipofuscin, IL-22BP, TPST2, PD-ECGF, LH, LEDGF, Cyr61, ULBP-3, IFNb, THSD1, FGF-23, LAMA4, lipoprotein, AIFSorCS2, SULT2A1, CD39L2, Insulin R, HIF-1 α, OX40 ligand, Pax3, UCH-L3, cMASP3, Langerin, Desmin, SOX9, ST6GAL1, MEP1B, CD99-L2, Convolutional protein A4, Brain signaling protein 4D, ROBO2, PDX-1, APRIL, Neuro-rank protein, cyclic transmembrane protein-2, EMMPRIN, activator protein RIB, neuroligand 2, epithelial regulatory protein, CASA, MMP-12, GALNT2, CEACAM-5, VEGF R1, DSPG3, SorCS1, Extracellular matrix protein-2, sFRP-3, p53, EphB3, NCK1, Brain signaling protein 7A, NKp80, Prolactin, Cysteine ​​protease protein B, Sirtuin 1, FGF-16, FGF R5, NQO-1, Brain signaling protein 6D, FGF-3, GATA-4, VAP-A, CHST2, Pregnancy-associated plasma protein-2, Cohesin-3, Serpentin-1, AKR1C4, Oligosin-2, Osteoadhesin, NKp44, Thyroglobulin, IL-21R, Chemokines, EphA1, CD48, MICB, FGF-5, TRANCE, CES2, ULBP-1, Integrin α 5. VAMP-2, FLRG, Ret metaphase factor, CD73, TRAP, proGRP, granzyme H, PRX2, p2'7, salivary lectin-6, dendritic cell-associated C-type lectin-1, CD51, Notch-1, calreticulin, DR3, DCTN1, CDC25B, bone activator, ACE, CA125, HAO-1, ​​PSMA1, FCRLB, BMP-9, CRIM1, LIF, SPINK1, EphB6, RGM-B, HS3ST1, ROR1, CMG-2, 4-1BB ligand, L1CAM-2, p63, cathepsin V, testosterone-2, phosphatidylinositol proteoglycan 5, CD6, salivary lectin-2, asparagine endopeptidase, PRELP, CES1, TAZ, NSE, TECK, HTRA2, HIF-1 β, TAFA1, podocyte protein, RalA, CRELD2, GRAP2, SP-D, BID, GFR α-2, Notch-3, VEGF R3, DLL4, TGFb2, LIGHT, XIAP, ST8SIA1, cathepsin L, 6-Ckine, MIS RII, kallikrein 5, TGM3, FCAR, contactin-2, CD83, IL-1 R3, SALM4, GBA3, ROBO4, OSCAR, VEGF, IGSF3, disaccharide proteoglycan, neurodevelopmental factor, ILT4, uPAR, Axl, WIF-1, IL-7 RαGPR56, CEACAM-3, MCEMP1, FABP2, plexin B3, MEPE, activator protein RIIA, ANG-2, Cochlin, progerin 1, NPTXR, SLAM, COMT, SPHK1, RBP4, stalkin-1, GUSB, nestin-2, IL-17F, SR-AI, TAFA2, N-cadherin, IL-17B, IL-17RC, MIP-3b, cysteine ​​protease C, cysteine ​​protease D, AMSH, FcERI, CLEC10A, HGF R, ANG-1, prolactin R, FGF-20, CD28, Nogo-A, HSD17B1, IL-19, intestinal peptidase, cathepsin E, TSLP, TCN2, GDF-15, epidermal morphogenetics, GRKS, PD-1, serine protease inhibitor A4, ADAM23, NOV, galactoglobulin-2, neuronal surface protein 3β, TLR3, Sirtuin 2, Numb, IL-28 Rα, IL-33, Lin28, FCRL1, KLF4, NKp30, lymphocyte chemokine, cysteine ​​protease protein SN, JAM-A, calreticulin-2, ErbB4, BMP-8, IL-27 Ra, Fas, IL-4 Ra, kallikrein 14, extracellular matrix protein-3, Oligo2, kallikrein 12, CA13, IL-9, stalk protein-3, MPIF-1, cysteine ​​protease protein S, ADA, IL-2 Rb, GFRα-1, Smad4, ICAM-1, MEF2C, TREM-1, L-selectin, transmembrane serine protease, CD42b, MCSF, RANK, CHST4, CA8, FCRL3, ASAH2, CF XIV, PYY, HGF, I-TAC, Brain signaling protein 4C, SorCS3, Tie-1, IL-31RA, Arginase 1, POGLUT1, IL-1ra, Flatfoot protein, TIM-3, CREG, CD300f, uPA, EphA2, LLRTM4, LIMPII, Tenosynovin R, CPE, PECAM-1, DNAM-1, DKK-1, OPG, CPB1, TSH, MMP-2, Salivary lectin-9, ICAM-3, Cysteine ​​protease inhibitor SA, Galactohemagglutinin-4, Pepsinogen II, Desmosome core protein-3, Stalk protein-4, SCF, Serine protease inhibitor A5, PTH, FGF-19, MSP, IL-28A, FGF-12, METAP2, ASAHL, EDIL3, NTAL, EGF R, TAFA5, galactoglobulin-9, vWF-A2, TACE, activator protein RUB, cathepsin S, LDLR, BMPR-IA, OX40IL-3 R2, B7-H4, MMP-13, ANGPTL7, TRAIL R4, IGSF4B, Sirtuin 5, PEAR1, SH2D1A, Cerberus 1, GDF-11, Nrf2, TROP-2, NUDT5, ROR2, EphB4, phosphatidylinositol proteoglycan 1, LAP (TGFb1), Gash, contactin-1, IL-27, UNC5H4, ICAM-2, MBL, HS3ST3B1, RCOR1, IL-10 Rb, XEDAR, IL-22, PILR-α, NRG1-bl, FABP4, RGM-A, RELT, TrkC, C5a, SREC-I, neural epithelial stem cell protein, TPO, ErbB3, Kirrel3, FLRT1, galactoglobulin-3, CXCL16, JAM-B, DR6, Nogo receptor, TLR4, VEGFR2, Tie-2, IL-15R, Caspr2, LTbR, LAMP, ALCAM, GLP-1, NG2, IL-22Rα1, AMIGO2, HCC-1, TFPI-2, ULBP-2, desmosome core protein 2, agglutinin, synaptic fusion protein 4, VAMP-1, stalkin-2, FGF-21, Flt-3, GFAP, TIM-1, inhibin A, cadherin-4, P1GF-2, neurogranulin, HE4, IL-23 R, galactoglobulin-7, GALNT3, GITR L, CD14, R-vertebral protein 2, CK19, cardiotrophin-1, TREML1, HAPLN1, CD27, ANG-4, salivary immunoglobulin-7, CD155, VEGF-C, TNF-RH, PGRP-S, SDF-1a, PDGF-AB, GPVI, CD40, SCF R, platelet-reactive protein-5, IL-1 MI, neurofeedin-2, cadherin-13, E-selectin, GITR, WISP-1, renin, AgRP, MDL-1, ROBO3, RANTES, endothelial cell-specific molecules, granzyme, hCGb, mesothelin, TLR1, TRAIL, MOG, DDR1, NGF R, TRAIL R3, trypsin 3, ARSB, LIF Rα, BAFF R, CD157, granzyme A, 2B4, ESAM, IL-1 R4, CXCL14, IL-31, SIRP α, urinary modulatory proteins, CTRC, CEACAM-1, TARC, MIP-3a, SDF-1b, NKp46, MCP-3, IL-32 α, TGFb3, FOLR2, CD58, IL-23, CD36, TNFb, Shh-N, fibrinogen-1, Reg4, ILT2, Mer,TREM-2, Flt-3L, CDS, IL-6, CD229, Insulin, Synaptic Fusion Protein 6, GRO, Bcl-w, Lipocrine-2, PDGF-AA, IL-2 Ra, Angiopoietin, LYVE-1, CD4, RAGE, CDNF, Short Proteoglycan, NAP-2, PU.1, EDAR, ADAMTS13, Kynureninase, PTH1R, IFN-γ R1, CrkL, B7-1, PARC, Draxin, VE-cadherin, Procalcitonin, SOX15, Kallikrein 11, BCMA, Dendritic Cell-Associated C-Lectin-2, EpCAM, HCC-4, TGFa, IP-10, BLAME, CILP-1, PIGF, LOX-1, MCP-2, Resistin, HVEM, ENPP-7, Cohesin-Glycan-4, IL-2 Rg, MICA, dopa decarboxylase, NPDC-1, MCP-4, EG-VEGF, glycoprotein V, brain signaling protein 4G, IL-12p40, total PSA, IL-15, MAP1D, C1q, TNF4, Dtk, endothelial glycoprotein, ENA-78, Reg3A, MIP- lb, FGF-17, IL-6R, IL-8, galactolectin-8, CA4, cysteine ​​protease protein EM, FUT8, B7-H3, GCP-2, CD40L, MDC, 4-1BB, HO-1, SOST, S100A13, kallikrein 7, IL-13, hsa-let-7a-5p, hsa-let-7b-5p, hsa-let-7c-5p, hsa-let-7d-3p, hsa-let-7e-5p, hsa-let-7g-5p, hsa-let-7i, hsa-let-7i-5p, hsa-miR-100-5p, hsa-miR-103a-3p, hsa-miR-106a-5p, hsa -miR-106b-5p, hsa-mir-10b, hsa-miR-10b-5p, hsa-mir-1246, hsa-miR-1246, hsa-miR-125a-5p, hsa-miR-125b-5p, hsa-miR-130a-3p, hsa-mir-130b, hsa-miR- 130b-3p, hsa-miR-132-3p, hsa-miR-136-5p, hsa-miR-138-5p, hsa-miR-139-5p, hsa-mir-140, hsa-miR-140-3p, hsa-miR-145-5p, hsa-mir-146a, hsa-miR-146a- 5p, hsa-miR-148a-3p, hsa-miR-152-3p,hsa-miR-15a-5p, hsa-miR-15b-5p, hsa-mir-16-1, hsa-mir-16-2, hsa-miR-16-5p, hsa-miR-1'7-5p, hsa-miR-181a-5p, hsa-miR-191-5p, hsa-miR-193a-5p, hsa-miR-193b-3p, hsa-miR-19'7-3p, hsa-miR-199a-3p, hsa-miR-199a-5p, hsa-miR-199b-5p, hsa-miR-19a-3p, hsa-miR-19b-3p, hsa-mi R-20a-5p, hsa-mir-203a, hsa-miR-203a-3p, hsa-miR-214-3p, hsa-mir-21, hsa-miR-21-3p, hsa-miR-21-5p, hsa-mir-221, hsa-miR-221-3p, hsa-mir-222, hsa-miR-222-3p, hsa-miR-22-3p, hsa-miR-23a-3p, hsa-miR-23b-3p, hsa-mir-24-1, hsa-mir-24-2, hsa-miR-24-3p, hsa-mir-25, hsa-miR- 25-3p、hsa-miR-26a-5p、hsa-miR-27a-3p、hsa-mir-27b、hsa-miR-27b-3p 、hsa-miR-29a-3p、hsa-miR-29c-3p、hsa-miR-30a-5p、hsa-miR-30a-5p、h sa-miR-30b-5p, hsa-miR-30c-5p, hsa-mir-30d, hsa-miR-30d-5p, hsa-mir-30e, hsa-miR-30e-5p, hsa-miR-31-3p, hsa-miR-31-5p, hsa-miR-320a, hsa-miR-342-3p, hsa-miR-345-5p, hsa-miR-34a-5p, hsa-miR-361-5p, hsa-miR-376a-3p, hsa-miR-376c-3p, hsa-miR-423-3p, hsa-miR-423-5p, hsa -miR-424-5p, hsa-miR-484, hsa-mir-486-1, hsa-mir-486-2, hsa-miR-486-5p, hsa-miR-570-3p, hsa-miR-574-3p, hsa-miR-663a, hsa-miR-874-3phsa-mir-92a-1, hsa-mir-92a-2, hsa-miR-92a-3p, hsa-miR-92b-3p, hsa-mir-93, hsa-miR-93-5p, hsa-miR-940, hsa-miR-99a-5p and hsa-miR-99b-5p. ,

[0085] In some embodiments, the object to be treated with the therapeutic products and methods described herein may include any object suffering from or diagnosed with irradiated skin. In some embodiments, the object may include mammals. In some embodiments, the object may include humans. In some embodiments, the object may include non-human mammals. Non-limiting examples of non-human mammals may include non-human primates such as chimpanzees and other ape and monkey species; farm animals such as cattle, horses, sheep, goats, and pigs; domesticated animals such as rabbits, dogs, and cats; and laboratory animals including rodents such as mice, rats, and guinea pigs.

[0086] Non-restrictive numbering implementation plan 1. A method for treating irradiated skin of a subject, the method comprising administering to the subject a composition comprising a therapeutic mesenchymal stem cell (MSC) secretome composition, said therapeutic mesenchymal stem cell (MSC) secretome composition being prepared by a method comprising: (a) Culture bone marrow-derived MSCs under the following conditions to produce MSC conditioned medium: (i) oxygen tension below 5%; and (ii) Culture media with a pH below 7; (b) Harvesting the MSC conditioned medium; and (c) Prepare the MSC conditioned medium to produce the therapeutic MSC secretome composition, wherein the therapeutic MSC secretome composition comprises proteins and extracellular vesicles produced by the bone marrow-derived MSCs in step (a).

[0087] 2. The method as described in embodiment 1, wherein the subject suffers from radiation fibrosis syndrome (RFS) or radiation-induced fibrosis (RIF).

[0088] 3. The method as described in embodiment 1 or 2, wherein the irradiated skin has been subjected to ionizing radiation.

[0089] 4. The method of any one of embodiments 1 to 3, wherein the irradiated skin exhibits one or more of the following: fibrosis, hardening, thickening, induration, inflammation, skin hardness, elastin content and / or collagen content.

[0090] 5. The method as described in any one of embodiments 1 to 4, wherein the subject has been diagnosed with cancer.

[0091] 6. The method as described in embodiment 5, wherein the subject has been diagnosed with breast cancer.

[0092] 7. The method of any one of embodiments 1 to 6, wherein the object has fibrotic, irradiated mammary tissue.

[0093] 8. The method of any one of embodiments 1 to 7, wherein the subject experiences improvement after treatment in one or more of the following skin characteristics: fibrosis, hardening, thickening, induration, inflammation, skin firmness, elastin content and / or collagen content, and combinations thereof.

[0094] 9. The method of any one of embodiments 1 to 8, wherein the dose of the therapeutic MSC secretory group composition administered to the subject is a cell equivalent dose of 700,000 to 7,000,000 cells / kg.

[0095] 10. The method of any one of embodiments 1 to 9, wherein the culture medium is serum-free.

[0096] 11. The method of any one of embodiments 1 to 10, wherein the culture medium has a glucose concentration of less than 4.5 g / L.

[0097] 12. The method according to any one of embodiments 1 to 11, wherein at least 80% of the extracellular vesicles in the therapeutic MSC secretome composition are CD63. + CD9 - CD81 - .

[0098] 13. The method according to any one of embodiments 1 to 12, wherein the therapeutic MSC secretome composition comprises one or more of the following proteins: ferritin, NUP85, LAMP2, GPR115, serine protease inhibitor F1, OPN, PAI-1, DAPP1, cathepsin B, brain signaling protein 6C, PDGF Rα, sorting protein, serine protease inhibitor B6, Dkk-3, coagulation regulatory protein, PF4, MIF, periosteal protein, furin, TIMP-1, gypsum proteoglycan, PCK1, CD99, CD63, CD9, CD81, transferrin, DcR3, photoglucan, TIMP-2, SLITRK5, FAP, leptospirin, DPPII, cIAP-1, pentameric protein 3, lactone, enkephalin, albumin, galactolectin-1, UNC5H3, IL-20 Rβ, SREC-II, JAM-C, TNF. RI, htPAPP-A, eNOS, MSP R, TPP1, LAMP1, B2M, NCAM-1, HIF-1 α, ST6GAL1, CD99-L2, convolutional protein A4, EMMPRIN, p53, brain signaling protein 7A, NKp80, cysteine ​​protease protein B, osteoadhesion, mid-term factor, calreticulin, osteoactivin, asparagine endopeptidase, TAZ, cathepsin L, RBP4, serine protease inhibitor A4, JAM-A, MCSF, LIMPII, OPG, IL-22, galactolectin-3, MOG, trypsin 3, SIRP α, cohesin-4, IGFBP-4, IL-1 R6, GSTM1, NUP85, LAMP2, transmembrane peptidase A, IL-1 F10, bIG-H3, GPR115, TGFb1, liver glycoside A4, CD109, serine protease inhibitor F1, IGFBP-6, HS3ST4, aminopeptidase LRAP, OPN, PAI-1, DAPP1, GDF-9, cathepsin B, IGFBP-2, brain signaling protein 6C, IGF-2, PDGFR α, sorting protein, serine protease inhibitor B6, Dkk-3, CNTF, TSP-1, GM-CSF Ra, coagulation regulatory protein, endosaccharides, IGFBP-3, RGM-C, PF4, MIF, TGM4, periosteal protein, furin, TIMP-1, PAPP-A, dermal proteoglycan, PCK1, arylsulfatase A, CD99, CA2, PRDX4, transferrin, DcR3, GP73, LAIR2, ULBP-4, optical proteoglycan, TIMP-2, TFPI, SOX2, SLITRK5, FAP, spinal cord protein, ENPP-2, CD97, CTACK, integrin α1, EXTL3, IL-18BPa, PD-L2, PSMA, IL-20 Ra, Glyoxalase II, Trypsin I, IGF-2R, ADAMTS L1-1, Erythropoietin, Convolutional D1, DNMT3A, BCL-2, CL-P1, Hepatocyte Glycol-B3, FABP6, CHI3L1, FCRLS, TFF3, Nephlebotomycin, DPPII, cIAP-1, PDGF Rb, Pentanoic Acid 3, Angiotensinogen, Follicle-Stapressin, CF VII, Persephin, TRAIL R1, THAP11, CD200, CLEC-2, AMIGO, IGFBP-5, PON1, SOX7, GALNT10, Lactone, Granulosin Progenitor, PCSK2, GKN1, IL-18, Enkephalin, Stabilin-2, IL-17 RD, albumin, follicle-stimulating protein 1, MMP-10, FKBP51, LRRC4, Pref-1, galactoglobin-1, troponin C, UNC5H3, FLRT2, CD314, brain signaling protein 6B, cytokinin-4, CD27 ligand, IL-20 Rβ, brain signaling protein 6A, TSK, cytokeratin-8, CHST3, Mcl-1, DPPIV, SREC-II, norin, JAM-C, Bcl-10, Wnt-4, LSECtin, Kell, TNF RI, PTP1B, htPAPP-A, IDO, PDGF-CC, Glycopropyl peptide, Activator Protein A, TLR2, SCCA2, FABP1, eNOS, SHP-1, ICOS, C1qTNF9, MMP-1, TC-PTP, IL-24, gp130, C-myc, LILRB4, BMP-2, MIA, CD34, CD63, CD9, CD81, IFNab R2, Phosphatidylinositol Proteoglycan 2, MSP R, DSCAM, Membrane-type Serine Protease, KIR2DL3, CD30, Salivary Agglutinin-10, CLEC-1, TPP1, Ubiquitin+1, ANGPTL4, TWEAK R, Nestin-1, CD2, Kallikrein 1, TSLPR, LAMP1, TROY, VCAM-1, Salivary agglutinin-11, S100A1, PAR1, Thyroid peroxidase, Aminopeptidase P2, IL-1RI, ADAMS, OSM Rβ, Platelet-Reactive Protein-2, SMPD1, B2M, MFRP, LRP-6, ST3GAL1, NCAM-1 (CD56), Granulase B, Lipocontin, IL-22BP, TPST2, PD-ECGF, LH, LEDGF, Cyr61, ULBP-3, IFNb, THSD1, FGF-23, LAMA4, Lipoprotein, AIF, SorCS2, SULT2A1, CD39L2, Insulin R, HIF-1α, OX40 ligand, Pax3, UCH-L3, cMASP3, Langerin, desmin, SOX9, ST6GAL1, MEP1B, CD99-L2, conglomerate A4, brain signaling protein 4D, ROBO2, PDX-1, APRIL, neuronal rank protein, transmembrane protein-2 with ring structure, EMMPRIN, activating protein RIB, neuroligand 2, epithelial regulatory protein, CASA, MMP-12, GALNT2, CEACAM-5, VEGF R1, DSPG3, SorCS1, extracellular matrix protein-2, sFRP-3, p53, EphB3, NCK1, brain signaling protein 7A, NKp80, prolactin, cysteine ​​agonist protein B, Sirtuin 1, FGF-16, FGF R5, NQO-1, Brain signaling protein 6D, FGF-3, GATA-4, VAP-A, CHST2, Pregnancy-associated plasma protein-2, Cohesin-3, Serpentin-1, AKR1C4, Oligosin-2, Osteoadhesin, NKp44, Thyroglobulin, IL-21R, Chemokines, EphA1, CD48, MICB, FGF-5, TRANCE, CES2, ULBP-1, Integrin α 5. VAMP-2, FLRG, Ret metaphase factor, CD73, TRAP, proGRP, granzyme H, PRX2, p2'7, salivary lectin-6, dendritic cell-associated C-type lectin-1, CD51, Notch-1, calreticulin, DR3, DCTN1, CDC25B, bone activator, ACE, CA125, HAO-1, ​​PSMA1, FCRLB, BMP-9, CRIM1, LIF, SPINK1, EphB6, RGM-B, HS3ST1, ROR1, CMG-2, 4-1BB ligand, L1CAM-2, p63, cathepsin V, testosterone-2, phosphatidylinositol proteoglycan 5, CD6, salivary lectin-2, asparagine endopeptidase, PRELP, CES1, TAZ, NSE, TECK, HTRA2, HIF-1 β, TAFA1, podocyte protein, RalA, CRELD2, GRAP2, SP-D, BID, GFR α-2, Notch-3, VEGF R3, DLL4, TGFb2, LIGHT, XIAP, ST8SIA1, cathepsin L, 6-Ckine, MIS RII, kallikrein 5, TGM3, FCAR, contactin-2, CD83, IL-1R3, SALM4, GBA3, ROBO4, OSCAR, VEGF, IGSF3, disaccharide proteoglycan, neurodevelopmental factor, ILT4, uPAR, Axl, WIF-1, IL-7 Rα, GPR56, CEACAM-3, MCEMP1, FABP2, plexin B3, MEPE, activator RIIA, ANG-2, Cochlin, presenilin 1, NPTXR, SLAM, COMT, SPHK1, RBP4, stalkin-1, GUSB, nestin-2, IL-17F, SR-AI, TAFA2, N-cadherin, IL-17B, IL-17RC, MIP-3b, cysteine ​​protease C, cysteine ​​protease D, AMSH, FcERI, CLEC10A, HGF R, ANG-1, prolactin R, FGF-20, CD28, Nogo-A, HSD17B1, IL-19, intestinal peptidase, cathepsin E, TSLP, TCN2, GDF-15, epidermal morphogenetics, GRKS, PD-1, serine protease inhibitor A4, ADAM23, NOV, galactoglobulin-2, neuronal surface protein 3β, TLR3, Sirtuin2, Numb, IL-28 Rα, IL-33, Lin28, FCRL1, KLF4, NKp30, lymphocyte chemokine, cysteine ​​protease protein SN, JAM-A, calreticulin-2, ErbB4, BMP-8, IL-27 Ra, Fas, IL-4 Ra, kallikrein 14, extracellular matrix protein-3, Oligo2, kallikrein 12, CA13, IL-9, stalk protein-3, MPIF-1, cysteine ​​protease protein S, ADA, IL-2 Rb, GFR α-1, Smad4, ICAM-1, MEF2C, TREM-1, L-selectin, transmembrane serine protease, CD42b, MCSF, RANK, CHST4, CA8, FCRL3, ASAH2, CF XIV, PYY, HGF, I-TAC, brain signaling protein 4C, SorCS3, Tie-1, IL-31 RA, Arginase 1, POGLUT1, IL-1ra, Flatfoot protein, TIM-3, CREG, CD300f, uPA, EphA2, LLRTM4, LIMPII, Tenosynovin R, CPE, PECAM-1, DNAM-1, DKK-1, OPG, CPB1, TSH, MMP-2, Salivary lectin-9, ICAM-3, Cysteine ​​protease inhibitor SA, Galactohemagglutinin-4, Pepsinogen II, Desmosome core protein-3, Stalk protein-4, SCF, Serine protease inhibitor A5, PTH, FGF-19, MSP, IL-28A, FGF-12, METAP2, ASAHL, EDIL3, NTAL, EGF R, TAFAS, Galactohemagglutinin-9, vWF-A2, TACE, Activator protein RIM, Cathepsin S, LDLR, BMPR-IA, OX40, IL-13 R2, B7-H4, MMP-13, ANGPTL7, TRAIL R4, IGSF4B, Sirtuin 5, PEAR1, SH2D1A, Cerberus 1, GDF-11, Nrf2, TROP-2, NUDTS, ROR2, EphB4, phosphatidylinositol proteoglycan 1, LAP (TGFb1), Gash, contactin-1, IL-27, UNC5H4, ICAM-2, MBL, HS3ST3B1, RCOR1, IL-10 Rb, XEDAR, IL-22, PILR-α, NRG1-131, FABP4, RGM-A, RELT, TrkC, CSa, SREC-I, neural epithelial stem cell protein, TPO, ErbB3, Kirrel3, FLRT1, galactoglobulin-3, CXCL16, JAM-B, DR6, Nogo receptor, TLR4, VEGF R2, Tie-2, IL-15 R, Caspr2, LTbR, LAMP, ALCAM, GLP-1, NG2, IL-22 Rα 1, AMIGO2, HCC-1, TFPI-2, ULBP-2, desmosome core protein 2, agglutinin, synaptic fusion protein 4, VAMP-1, stalkin-2, FGF-21, Flt-3, GFAP, TIM-1, inhibin A, cadherin-4, PIGF-2, neurogranulin, HE4, IL-23 R, galactoglobulin-7, GALNT3, GITR L, CD14, R-vertebral protein 2, CK19, cardiotrophin-1, TREML1, HAPLN1, CD27, ANG-4, salivary immunoglobulin-7, CD155, VEGF-C, TNF RII, PGRP-S, SDF-1a, PDGF-AB, GPVI, CD40, SCF R, platelet-reactive protein-5, IL-1 RII, neurofeedin-2, cadherin-13, E-selectin, GITR, WISP-1, renin, AgRP, MDL-1, ROBO3, RANTES, endothelial cell-specific molecules, granzyme, hCGb, mesothelin, TLR1, TRAIL, MOG, DDR1, NGF R, TRAIL R3, trypsin 3, ARSB, LIF Rα, BAFFR, CD157, granzyme A, 2B4, ESAM, IL-1 R4, CXCL14, IL-31, SIRP α, urinary modulating protein, CTRC, CEACAM-1, TARC, MIP-3a, SDF-1b, NKp46, MCP-3, IL-32 α, TGFb3FOLR2, CD58, IL-23, CD36, TNFb, Shh-N, fibrinogen-1, Reg4, ILT2, Mer, TREM-2, Flt-3L, CDS, IL-6, CD229, Insulin, Synaptic Fusion Protein 6, GRO, Bcl-w, Lipocrine-2, PDGF-AA, IL-2 Ra, Angiopoietin, LYVE-1, CD4, RAGE, CDNF, Short Proteoglycan, NAP-2, PU.1, EDAR, ADAMTS13, Kynurenase, PTH1R, IFN-γ R1, CrkL, B7-1, PARC, Draxin, VE-cadherin, procalcitonin, SOX15, kallikrein 11, BCMA, dendritic cell-associated C-lectin-2, EpCAM, HCC-4, TGFa, IP-10, BLAME, CILP-1, PIGF, LOX-1, MCP-2, resistin, HVEM, ENPP-7, cohesin-4, IL-2 Rg, MICA, dopa decarboxylase, NPDC-1, MCP-4, EG-VEGF, glycoprotein V, brain signaling protein 4G, IL-12p40, total PSA, IL-15, MAP1D, C1q, TNF4, Dtk, endothelial glycoprotein, ENA-78, Reg3A, MIP-1b, FGF-17, IL-6R, IL-8, galactolectin-8, CA4, cysteine ​​protease protein EM, FUT8, B7-H3, GCP-2, CD40L, MDC, 4-1BB, HO-1, SOST, S100A13, kallikrein 7 or IL-13.

[0099] 14. The method according to any one of embodiments 1 to 13, wherein the therapeutic MSC secretome composition comprises one or more of the following nucleic acids: hsa-let-7a-5p, hsa-let-7b-5p, hsa-let-7c-5p, hsa-let-7d-3p, hsa-let-7e-5p, hsa-let-7g-5p, hsa-let-7i, hsa-let-7i-5p, hsa-miR-100-5p, hsa-miR-103a-3p, hsa-miR-106a-5p, hsa-miR-106b-5p, hsa-mir-10b, hsa-mi R-10b-5p, hsa-mir-1246, hsa-miR-1246, hsa-miR-125a-5p, hsa-miR-125b-5p, hsa-miR-130a-3p, hsa-mir-130b, hsa-miR-130b-3p, hsa-miR- 132-3p, hsa-miR-136-5p, hsa-miR-138-5p, hsa-miR-139-5p, hsa-mir-140, hsa-miR-140-3p, hsa-miR-145-5p, hsa-mir-146a, hsa-miR-146a- 5p, hsa-miR-148a-3p, hsa-miR-152-3p, hsa-miR-15a-5p, hsa-miR-15b-5p, hsa-mir-16-1, hsa-mir-16-2, hsa-miR-16-5p, hsa-miR-1'7-5p, hsa-miR-1 81a-5p, hsa-miR-191-5p, hsa-miR-193a-5p, hsa-miR-193b-3p, hsa-miR-19'7-3p, hsa-miR-199a-3p, hsa-miR-199a-5p, hsa-miR-199b-5p, hsa-miR-19 a-3p, hsa-miR-19b-3p, hsa-miR-20a-5p, hsa-mir-203a, hsa-miR-203a-3p, hsa-miR-214-3p, hsa-mir-21, hsa-miR-21-3p, hsa-miR-21-5p, hsa-mir-22 1. hsa-miR-221-3p, hsa-mir-222, hsa-miR-222-3p, hsa-miR-22-3p, hsa-miR-23a-3p, hsa-miR-23b-3p, hsa-mir-24-1, hsa-mir-24-2, hsa-miR-24-3p,hsa-mir-25, hsa-miR-25-3p, hsa-miR-26a-5p, hsa-miR-27a-3p, hsa-mir-27b, hsa-miR-27b-3 p, hsa-miR-29a-3p, hsa-miR-29c-3p, hsa-miR-30a-5p, hsa-miR-30a-5p, hsa-miR-30b-5p, hsa -miR-30c-5p, hsa-mir-30d, hsa-miR-30d-5p, hsa-mir-30e, hsa-miR-30e-5p, hsa-miR-31-3p, hsa-miR-31-5p, hsa-miR-320a, hsa-miR-342-3p, hsa-miR-345-5p, hsa-miR-34a-5p, hsa-miR-3 61-5p, hsa-miR-376a-3p, hsa-miR-376c-3p, hsa-miR-423-3p, hsa-miR-423-5p, hsa-miR-424- 5p, hsa-miR-484, hsa-mir-486-1, hsa-mir-486-2, hsa-miR-486-5p, hsa-miR-570-3p, hsa-miR -574-3p, hsa-miR-663a, hsa-miR-874-3p, hsa-mir-92a-1, hsa-mir-92a-2, hsa-miR-92a-3p, h sa-miR-92b-3p, hsa-mir-93, hsa-miR-93-5p, hsa-miR-940, hsa-miR-99a-5p or hsa-miR-99b-5p. ,

[0100] 15. A method of treating irradiated skin of a subject, the method comprising administering to the subject a composition comprising a therapeutic MSC secretome composition containing extracellular vesicles, wherein at least 80% of the extracellular vesicles in the therapeutic MSC secretome composition are CD63. + CD9 - CD81 - .

[0101] 16. The method of embodiment 15, wherein the therapeutic MSC secretome composition further comprises one or more of the following proteins: ferritin, NUP85, LAMP2, GPR115, serine protease inhibitor F1, OPN, PAI-1, DAPP1, cathepsin B, brain signaling protein 6C, PDGF Rα, sorting protein, serine protease inhibitor B6, Dkk-3, coagulation regulatory protein, PF4, MIF, periosteal protein, furin, TIMP-1, tectonic proteoglycan, PCK1, CD99, CD63, CD9, CD81, transferrin, DcR3, luciferin, TIMP-2, SLITRK5, FAP, leptospirin, DPPII, cIAP-1, pentameric protein 3, lactone, enkephalin, albumin, galactolectin-1, UNC5H3, IL-20 Rβ, SREC-II, JAM-C, TNF. RI, htPAPP-A, eNOS, MSP R, TPP1, LAMP1, B2M, NCAM-1, HIF-1 α, ST6GAL1, CD99-L2, convolutional protein A4, EMMPRIN, p53, brain signaling protein 7A, NKp80, cysteine ​​protease protein B, osteoadhesion, mid-term factor, calreticulin, osteoactivin, asparagine endopeptidase, TAZ, cathepsin L, RBP4, serine protease inhibitor A4, JAM-A, MCSF, LIMPII, OPG, IL-22, galactolectin-3, MOG, trypsin 3, SIRP α, cohesin-4, IGFBP-4, IL-1 R6, GSTM1, NUP85, LAMP2, transmembrane peptidase A, IL-1 F10, bIG-H3, GPR115, TGFb1, liver glycoside A4, CD109, serine protease inhibitor F1, IGFBP-6, HS3ST4, aminopeptidase LRAP, OPN, PAI-1, DAPP1, GDF-9, cathepsin B, IGFBP-2, brain signaling protein 6C, IGF-2, PDGFR α, sorting protein, serine protease inhibitor B6, Dkk-3, CNTF, TSP-1, GM-CSF Ra, coagulation regulatory protein, endosaccharides, IGFBP-3, RGM-C, PF4, MIF, TGM4, periosteal protein, furin, TIMP-1, PAPP-A, dermal proteoglycan, PCK1, arylsulfatase A, CD99, CA2, PRDX4, transferrin, DcR3, GP73, LAIR2, ULBP-4, optical proteoglycan, TIMP-2, TFPI, SOX2, SLITRK5, FAP, spinal cord protein, ENPP-2, CD97, CTACK, integrin α1, EXTL3, IL-18BPa, PD-L2, PSMA, IL-20 Ra, Glyoxalase II, Trypsin I, IGF-2R, ADAMTS L1-1, Erythropoietin, Convolutional D1, DNMT3A, BCL-2, CL-P1, Hepatocyte Glycol-B3, FABP6, CHI3L1, FCRLS, TFF3, Nephlebotomycin, DPPII, cIAP-1, PDGF Rb, Pentanoic Acid 3, Angiotensinogen, Follicle-Stapressin, CF VII, Persephin, TRAIL R1, THAP11, CD200, CLEC-2, AMIGO, IGFBP-5, PON1, SOX7, GALNT10, Lactone, Granulosin Progenitor, PCSK2, GKN1, IL-18, Enkephalin, Stabilin-2, IL-17 RD, albumin, follicle-stimulating protein 1, MMP-10, FKBP51, LRRC4, Pref-1, galactoglobin-1, troponin C, UNC5H3, FLRT2, CD314, brain signaling protein 6B, cytokinin-4, CD27 ligand, IL-20 Rβ, brain signaling protein 6A, TSK, cytokeratin-8, CHST3, Mcl-1, DPPIV, SREC-II, norin, JAM-C, Bcl-10, Wnt-4, LSECtin, Kell, TNF RI, PTP1B, htPAPP-A, IDO, PDGF-CC, Glycopropyl peptide, Activator Protein A, TLR2, SCCA2, FABP1, eNOS, SHP-1, ICOS, C1qTNF9, MMP-1, TC-PTP, IL-24, gp130, C-myc, LILRB4, BMP-2, MIA, CD34, CD63, CD9, CD81, IFNab R2, Phosphatidylinositol Proteoglycan 2, MSP R, DSCAM, Membrane-type Serine Protease, KIR2DL3, CD30, Salivary Agglutinin-10, CLEC-1, TPP1, Ubiquitin+1, ANGPTL4, TWEAK R, Nestin-1, CD2, Kallikrein 1, TSLPR, LAMP1, TROY, VCAM-1, Salivary agglutinin-11, S100A1, PAR1, Thyroid peroxidase, Aminopeptidase P2, IL-1RI, ADAMS, OSM Rβ, Platelet-Reactive Protein-2, SMPD1, B2M, MFRP, LRP-6, ST3GAL1, NCAM-1 (CD56), Granulase B, Lipocontin, IL-22BP, TPST2, PD-ECGF, LH, LEDGF, Cyr61, ULBP-3, IFNb, THSD1, FGF-23, LAMA4, Lipoprotein, AIF, SorCS2, SULT2A1, CD39L2, Insulin R, HIF-1α, OX40 ligand, Pax3, UCH-L3, cMASP3, Langerin, desmin, SOX9, ST6GAL1, MEP1B, CD99-L2, conglomerate A4, brain signaling protein 4D, ROBO2, PDX-1, APRIL, neuronal rank protein, transmembrane protein-2 with ring structure, EMMPRIN, activating protein RIB, neuroligand 2, epithelial regulatory protein, CASA, MMP-12, GALNT2, CEACAM-5, VEGF R1, DSPG3, SorCS1, extracellular matrix protein-2, sFRP-3, p53, EphB3, NCK1, brain signaling protein 7A, NKp80, prolactin, cysteine ​​agonist protein B, Sirtuin 1, FGF-16, FGF R5, NQO-1, Brain signaling protein 6D, FGF-3, GATA-4, VAP-A, CHST2, Pregnancy-associated plasma protein-2, Cohesin-3, Serpentin-1, AKR1C4, Oligosin-2, Osteoadhesin, NKp44, Thyroglobulin, IL-21R, Chemokines, EphA1, CD48, MICB, FGF-5, TRANCE, CES2, ULBP-1, Integrin α 5. VAMP-2, FLRG, Ret metaphase factor, CD73, TRAP, proGRP, granzyme H, PRX2, p2'7, salivary lectin-6, dendritic cell-associated C-type lectin-1, CD51, Notch-1, calreticulin, DR3, DCTN1, CDC25B, bone activator, ACE, CA125, HAO-1, ​​PSMA1, FCRLB, BMP-9, CRIM1, LIF, SPINK1, EphB6, RGM-B, HS3ST1, ROR1, CMG-2, 4-1BB ligand, L1CAM-2, p63, cathepsin V, testosterone-2, phosphatidylinositol proteoglycan 5, CD6, salivary lectin-2, asparagine endopeptidase, PRELP, CES1, TAZ, NSE, TECK, HTRA2, HIF-1 β, TAFA1, podocyte protein, RalA, CRELD2, GRAP2, SP-D, BID, GFR α-2, Notch-3, VEGF R3, DLL4, TGFb2, LIGHT, XIAP, ST8SIA1, cathepsin L, 6-Ckine, MIS RII, kallikrein 5, TGM3, FCAR, contactin-2, CD83, IL-1R3, SALM4, GBA3, ROBO4, OSCAR, VEGF, IGSF3, disaccharide proteoglycan, neurodevelopmental factor, ILT4, uPAR, Axl, WIF-1, IL-7 Rα, GPR56, CEACAM-3, MCEMP1, FABP2, plexin B3, MEPE, activator RIIA, ANG-2, Cochlin, presenilin 1, NPTXR, SLAM, COMT, SPHK1, RBP4, stalkin-1, GUSB, nestin-2, IL-17F, SR-AI, TAFA2, N-cadherin, IL-17B, IL-17RC, MIP-3b, cysteine ​​protease C, cysteine ​​protease D, AMSH, FcERI, CLEC10A, HGF R, ANG-1, prolactin R, FGF-20, CD28, Nogo-A, HSD17B1, IL-19, intestinal peptidase, cathepsin E, TSLP, TCN2, GDF-15, epidermal morphogenetics, GRKS, PD-1, serine protease inhibitor A4, ADAM23, NOV, galactoglobulin-2, neuronal surface protein 3β, TLR3, Sirtuin2, Numb, IL-28 Rα, IL-33, Lin28, FCRL1, KLF4, NKp30, lymphocyte chemokine, cysteine ​​protease protein SN, JAM-A, calreticulin-2, ErbB4, BMP-8, IL-27 Ra, Fas, IL-4 Ra, kallikrein 14, extracellular matrix protein-3, Oligo2, kallikrein 12, CA13, IL-9, stalk protein-3, MPIF-1, cysteine ​​protease protein S, ADA, IL-2 Rb, GFR α-1, Smad4, ICAM-1, MEF2C, TREM-1, L-selectin, transmembrane serine protease, CD42b, MCSF, RANK, CHST4, CA8, FCRL3, ASAH2, CF XIV, PYY, HGF, I-TAC, brain signaling protein 4C, SorCS3, Tie-1, IL-31 RA, Arginase 1, POGLUT1, IL-1ra, Flatfoot protein, TIM-3, CREG, CD300f, uPA, EphA2, LLRTM4, LIMPII, Tenosynovin R, CPE, PECAM-1, DNAM-1, DKK-1, OPG, CPB1, TSH, MMP-2, Salivary lectin-9, ICAM-3, Cysteine ​​protease inhibitor SA, Galactohemagglutinin-4, Pepsinogen II, Desmosome core protein-3, Stalk protein-4, SCF, Serine protease inhibitor A5, PTH, FGF-19, MSP, IL-28A, FGF-12, METAP2, ASAHL, EDIL3, NTAL, EGF R, TAFAS, Galactohemagglutinin-9, vWF-A2, TACE, Activator protein RIM, Cathepsin S, LDLR, BMPR-IA, OX40, IL-13 R2, B7-H4, MMP-13, ANGPTL7, TRAIL R4, IGSF4B, Sirtuin 5, PEAR1, SH2D1A, Cerberus 1, GDF-11, Nrf2, TROP-2, NUDTS, ROR2, EphB4, phosphatidylinositol proteoglycan 1, LAP (TGFb1), Gash, contactin-1, IL-27, UNC5H4, ICAM-2, MBL, HS3ST3B1, RCOR1, IL-10 Rb, XEDAR, IL-22, PILR-α, NRG1-131, FABP4, RGM-A, RELT, TrkC, CSa, SREC-I, neural epithelial stem cell protein, TPO, ErbB3, Kirrel3, FLRT1, galactoglobulin-3, CXCL16, JAM-B, DR6, Nogo receptor, TLR4, VEGF R2, Tie-2, IL-15 R, Caspr2, LTbR, LAMP, ALCAM, GLP-1, NG2, IL-22 Rα 1, AMIGO2, HCC-1, TFPI-2, ULBP-2, desmosome core protein 2, agglutinin, synaptic fusion protein 4, VAMP-1, stalkin-2, FGF-21, Flt-3, GFAP, TIM-1, inhibin A, cadherin-4, PIGF-2, neurogranulin, HE4, IL-23 R, galactoglobulin-7, GALNT3, GITR L, CD14, R-vertebral protein 2, CK19, cardiotrophin-1, TREML1, HAPLN1, CD27, ANG-4, salivary immunoglobulin-7, CD155, VEGF-C, TNF RII, PGRP-S, SDF-1a, PDGF-AB, GPVI, CD40, SCF R, platelet-reactive protein-5, IL-1 RII, neurofeedin-2, cadherin-13, E-selectin, GITR, WISP-1, renin, AgRP, MDL-1, ROBO3, RANTES, endothelial cell-specific molecules, granzyme, hCGb, mesothelin, TLR1, TRAIL, MOG, DDR1, NGF R, TRAIL R3, trypsin 3, ARSB, LIF Rα, BAFFR, CD157, granzyme A, 2B4, ESAM, IL-1 R4, CXCL14, IL-31, SIRP α, urinary modulating protein, CTRC, CEACAM-1, TARC, MIP-3a, SDF-1b, NKp46, MCP-3, IL-32 α, TGFb3FOLR2, CD58, IL-23, CD36, TNFb, Shh-N, fibrinogen-1, Reg4, ILT2, Mer, TREM-2, Flt-3L, CDS, IL-6, CD229, Insulin, Synaptic Fusion Protein 6, GRO, Bcl-w, Lipocrine-2, PDGF-AA, IL-2 Ra, Angiopoietin, LYVE-1, CD4, RAGE, CDNF, Short Proteoglycan, NAP-2, PU.1, EDAR, ADAMTS13, Kynurenase, PTH1R, IFN-γ R1, CrkL, B7-1, PARC, Draxin, VE-cadherin, procalcitonin, SOX15, kallikrein 11, BCMA, dendritic cell-associated C-lectin-2, EpCAM, HCC-4, TGFa, IP-10, BLAME, CILP-1, PIGF, LOX-1, MCP-2, resistin, HVEM, ENPP-7, cohesin-4, IL-2 Rg, MICA, dopa decarboxylase, NPDC-1, MCP-4, EG-VEGF, glycoprotein V, brain signaling protein 4G, IL-12p40, total PSA, IL-15, MAP1D, C1q, TNF4, Dtk, endothelial glycoprotein, ENA-78, Reg3A, MIP-1b, FGF-17, IL-6R, IL-8, galactolectin-8, CA4, cysteine ​​protease protein EM, FUT8, B7-H3, GCP-2, CD40L, MDC, 4-1BB, HO-1, SOST, S100A13, kallikrein 7 or IL-13.

[0102] 17. The method according to embodiment 15 or 16, wherein the extracellular vesicles comprise one or more of the following nucleic acids: hsa-let-7a-5p, hsa-let-7b-5p, hsa-let-7c-5p, hsa-let-7d-3p, hsa-let-7e-5p, hsa-let-7g-5p, hsa-let-7i, hsa-let-7i-5p, hsa-miR-100-5p, hsa-miR-103a-3p, hsa-miR-106a-5p, hsa-miR-106b-5p, hsa-mir-10b, hsa-miR-10b-5p, hsa-mir-1246, hsa-miR-1246, hsa-miR-125a-5p, hsa-miR-125b-5p, hsa-miR-130a-3p, hsa-mir-130b, hsa-miR-130b-3p, hsa-miR-132-3p, hsa-miR-136-5p, hsa-miR-138-5p, hsa-miR-139-5p, hsa-mir-140, hsa-miR-140-3p, hsa-miR-145-5p, hsa-mir-146a, hsa-miR-146a- 5p, hsa-miR-148a-3p, hsa-miR-152-3p, hsa-miR-15a-5p, hsa-miR-15b-5p, hsa-mir-16-1, hsa-mir-16-2, hsa-miR-16-5p, hsa-miR-1’7-5p, hsa-miR-181a-5p, hsa-miR-191-5p, hsa-miR-193a-5p, hsa-miR-193b-3p, hsa-miR-19’7-3p, hsa-miR-199a-3p, hsa-miR-199a-5p, hsa-miR-199b-5p, hsa-miR-19a-3p, hsa-miR-19b-3p, hsa-miR-20a-5p, hsa-mir-203a, hsa-miR-203a-3p, hsa-miR-214-3p, hsa-mir-21, hsa-miR-21-3p, hsa-miR-21-5p, hsa-mir-221, hsa-miR-221-3p, hsa-mir-222, hsa-miR-222-3p, hsa-miR-22-3p, hsa-miR-23a-3p, hsa-miR-23b-3p, hsa-mir-24-1, hsa-mir-24-2, hsa-miR-24-3p, hsa-mir-25,hsa-miR-25-3p, hsa-miR-26a-5p, hsa-miR-27a-3p, hsa-mir-27b, hsa-miR-27b-3p, hsa-miR -29a-3p, hsa-miR-29c-3p, hsa-miR-30a-5p, hsa-miR-30a-5p, hsa-miR-30b-5p, hsa-miR-30c -5p, hsa-mir-30d, hsa-miR-30d-5p, hsa-mir-30e, hsa-miR-30e-5p, hsa-miR-31-3p, hsa-miR -31-5p, hsa-miR-320a, hsa-miR-342-3p, hsa-miR-345-5p, hsa-miR-34a-5p, hsa-miR-361-5p , hsa-miR-376a-3p, hsa-miR-376c-3p, hsa-miR-423-3p, hsa-miR-423-5p, hsa-miR-424-5p, h sa-miR-484, hsa-mir-486-1, hsa-mir-486-2, hsa-miR-486-5p, hsa-miR-570-3p, hsa-miR-57 4-3p, hsa-miR-663a, hsa-miR-874-3p, hsa-mir-92a-1, hsa-mir-92a-2, hsa-miR-92a-3p, hsa -miR-92b-3p, hsa-mir-93, hsa-miR-93-5p, hsa-miR-940, hsa-miR-99a-5p or hsa-miR-99b-5p. ,

[0103] 18. The method of any one of embodiments 15 to 17, wherein the subject suffers from radiation-induced fibrosis (RIF).

[0104] 19. The method of any one of embodiments 15 to 18, wherein the subject suffers from radiation fibrosis syndrome (RFS).

[0105] 20. The method of any one of embodiments 15 to 19, wherein the object has been subjected to ionizing radiation.

[0106] 21. The method of any one of embodiments 15 to 20, wherein the irradiated skin exhibits one or more of the following: fibrosis, hardening, thickening, induration, inflammation, skin hardness, elastin content, and / or collagen content.

[0107] 22. The method as described in any one of embodiments 15 to 21, wherein the subject has been diagnosed with cancer.

[0108] 23. The method of embodiment 22, wherein the subject has been diagnosed with breast cancer.

[0109] 24. The method of any one of embodiments 15 to 23, wherein the object has fibrotic, irradiated mammary tissue.

[0110] 25. The method of any one of embodiments 15 to 24, wherein the subject experiences improvement after treatment in one or more of the following skin characteristics: fibrosis, hardening, thickening, induration, inflammation, skin firmness, elastin content and / or collagen content, and combinations thereof.

[0111] 26. A method of treating irradiated skin of a subject, the method comprising administering to the subject a composition comprising a therapeutic mesenchymal stem cell (MSC) secretome composition containing extracellular vesicles (EVs), wherein the therapeutic MSC secretome comprises: (i) ferritin, NUP85, LAMP2, GPR115, serine protease inhibitor F1, OPN, PAI-1, DAPP1, cathepsin B, brain signaling protein 6C, PDGF R α, Sorting protein, serine protease inhibitor B6, Dkk-3, coagulation regulator protein, PF4, MIF, periosteal protein, furin, TIMP-1, dermal proteoglycan, PCK1, CD99, CD63, CD9, CD81, transferrin, DcR3, photoglycan, TIMP-2, SLITRK5, FAP, leptospirin, DPPII, cIAP-1, pentameric protein 3, lactone, enkephalin, albumin, galactoglobin-1, UNC5H3, IL-20, β-reactive protein, SREC-II, JAM-C, TNF-α, htPAPP-A, eNOS, MSP, TPP1, LAMP1, B2M, NCAM-1, HIF-1 α, ST6GAL1, CD99-L2, convolutional protein A4, EMMPRIN, p53, brain signaling protein 7A, NKp80, cysteine ​​protease protein B, osteoadhesion, mid-term factor, calreticulin, osteoactivin, asparagine endopeptidase, TAZ, cathepsin L, RBP4, serine protease inhibitor A4, JAM-A, MCSF, LIMPII, OPG, IL-22, galactoglobulin-3, MOG, trypsin 3, SIRP α, cohesin-4, IGFBP-4, IL-1 R6, GSTM1, NUP85, LAMP2, transmembrane peptidase A, IL-1 F10, bIG-H3, GPR115, TGFb1, liver glycoside A4, CD109, serine protease inhibitor F1, IGFBP-6, HS3ST4, aminopeptidase LRAP, OPN, PAI-1, DAPP1, GDF-9, cathepsin B, IGFBP-2, brain signaling protein 6C, IGF-2, PDGFR α, sorting protein, serine protease inhibitor B6, Dkk-3, CNTF, TSP-1, GM-CSF Ra, coagulation regulatory protein, endosaccharides, IGFBP-3, RGM-C, PF4, MIF, TGM4, periosteal protein, furin protease, TIMP-1, PAPP-A, dermal proteoglycans, PCK1, arylsulfatase A, CD99, CA2, PRDX4, transferrin, DcR3, GP73, LAIR2, ULBP-4, optical proteoglycans, TIMP-2, TFPI, SOX2, SLITRK5, FAP, spinal proteinENPP-2, CD97, CTACK, integrin α1, EXTL3, IL-18, BPa, PD-L2, PSMA, IL-20 Ra, glyoxalase II, trypsin I, IGF-2R, ADAMTSL-1, erythropoietin, plexin D1, DNMT3A, BCL-2, CL-P1, hepatocyte glycoside-B3, FABP6, CHI3L1, FCRLS, TFF3, leptospirin, DPPII, cIAP-1, PDGF Rb, pentameric protein 3, angiotensinogen, follicle-stimulating hormone, CF VII, persephin, TRAIL R1, THAP11, CD200, CLEC-2, AMIGO, IGFBP-5, PON1, SOX7, GALNT10, endothelin, granulosin precursor, PCSK2, GKN1, IL-18, enkephalin, stabilizer-2, IL-17 RD, albumin, follicle-stimulating protein 1, MMP-10, FKBP51, LRRC4, Pref-1, galactoglobin-1, troponin C, UNC5H3, FLRT2, CD314, brain signaling protein 6B, cytokinin-4, CD27 ligand, IL-20 Rβ, brain signaling protein 6A, TSK, cytokeratin-8, CHST3, Mcl-1, DPPIV, SREC-II, norin, JAM-C, Bcl-10, Wnt-4, LSECtin, Kell, TNF RI, PTP1B, htPAPP-A, IDO, PDGF-CC, Glycopropyl peptide, Activator Protein A, TLR2, SCCA2, FABP1, eNOS, SHP-1, ICOS, C1qTNF9, MMP-1, TC-PTP, IL-24, gp130, C-myc, LILRB4, BMP-2, MIA, CD34, CD63, CD9, CD81, IFNab R2, Phosphatidylinositol Proteoglycan 2, MSP R, DSCAM, Membrane-type Serine Protease, KIR2DL3, CD30, Salivary Agglutinin-10, CLEC-1, TPP1, Ubiquitin+1, ANGPTL4, TWEAK R, Nestin-1, CD2, Kallikrein 1, TSLPR, LAMP1, TROY, VCAM-1, Salivary agglutinin-11, S100A1, PAR1, Thyroid peroxidase, Aminopeptidase P2, IL-1RI, ADAMS, OSM Rβ, Platelet-Reactive Protein-2, SMPD1, B2M, MFRP, LRP-6, ST3GAL1, NCAM-1 (CD56), Granulase B, Lipocontin, IL-22BP, TPST2, PD-ECGF, LH, LEDGF, Cyr61, ULBP-3, IFNb, THSD1, FGF-23, LAMA4, LipoproteinAIF, SorCS2, SULT2A1, CD39L2, Insulin R, HIF-1 α, OX40 ligand, Pax3, UCH-L3, cMASP3, Langerin, Desmin, SOX9, ST6GAL1, MEP1B, CD99-L2, Convolutional protein A4, Brain signaling protein 4D, ROBO2, PDX-1, APRIL, Neural rank protein, cyclic transmembrane protein-2, EMMPRIN, activator protein RIB, neuroligand 2, epithelial regulatory protein, CASA, MMP-12, GALNT2, CEACAM-5, VEGF R1, DSPG3, SorCS1, Extracellular matrix protein-2, sFRP-3, p53, EphB3, NCK1, Brain signaling protein 7A, NKp80, Prolactin, Cysteine ​​protease protein B, Sirtuin 1, FGF-16, FGF R5, NQO-1, Brain signaling protein 6D, FGF-3, GATA-4, VAP-A, CHST2, Pregnancy-associated plasma protein-2, Cohesin-3, Serpentin-1, AKR1C4, Oligosin-2, Osteoadhesin, NKp44, Thyroglobulin, IL-21R, Chemokines, EphA1, CD48, MICB, FGF-5, TRANCE, CES2, ULBP-1, Integrin α 5. VAMP-2, FLRG, Ret metaphase factor, CD73, TRAP, proGRP, granzyme H, PRX2, p2'7, salivary lectin-6, dendritic cell-associated C-type lectin-1, CD51, Notch-1, calreticulin, DR3, DCTN1, CDC25B, bone activator, ACE, CA125, HAO-1, ​​PSMA1, FCRLB, BMP-9, CRIM1, LIF, SPINK1, EphB6, RGM-B, HS3ST1, ROR1, CMG-2, 4-1BB ligand, L1CAM-2, p63, cathepsin V, testosterone-2, phosphatidylinositol proteoglycan 5, CD6, salivary lectin-2, asparagine endopeptidase, PRELP, CES1, TAZ, NSE, TECK, HTRA2, HIF-1 β, TAFA1, podocyte protein, RalA, CRELD2, GRAP2, SP-D, BID, GFR α-2, Notch-3, VEGF R3, DLL4, TGFb2, LIGHT, XIAP, ST8SIA1, cathepsin L, 6-Ckine, MIS RII, kallikrein 5, TGM3, FCAR, contactin-2, CD83, IL-1R3, SALM4, GBA3, ROBO4, OSCAR, VEGF, IGSF3, disaccharide proteoglycan, neurodevelopmental factor, ILT4, uPAR, Axl, WIF-1IL-7 Rα, GPR56, CEACAM-3, MCEMP1, FABP2, plexin B3, MEPE, activator RIIA, ANG-2, Cochlin, progerin 1, NPTXR, SLAM, COMT, SPHK1, RBP4, stalkin-1, GUSB, nestin-2, IL-17F, SR-AI, TAFA2, N-cadherin, IL-17B, IL-17RC, MIP-3b, cysteine ​​protease C, cysteine ​​protease D, AMSH, FcERI, CLEC10A, HGF R, ANG-1, prolactin R, FGF-20, CD28, Nogo-A, HSD17B1, IL-19, intestinal peptidase, cathepsin E, TSLP, TCN2, GDF-15, epidermal morphogenetics, GRKS, PD-1, serine protease inhibitor A4, ADAM23, NOV, galactoglobulin-2, neuronal surface protein 3β, TLR3, Sirtuin2, Numb, IL-28 Rα, IL-33, Lin28, FCRL1, KLF4, NKp30, lymphocyte chemokine, cysteine ​​protease protein SN, JAM-A, calreticulin-2, ErbB4, BMP-8, IL-27 Ra, Fas, IL-4 Ra, kallikrein 14, extracellular matrix protein-3, Oligo2, kallikrein 12, CA13, IL-9, stalk protein-3, MPIF-1, cysteine ​​protease protein S, ADA, IL-2 Rb, GFR α-1, Smad4, ICAM-1, MEF2C, TREM-1, L-selectin, transmembrane serine protease, CD42b, MCSF, RANK, CHST4, CA8, FCRL3, ASAH2, CF XIV, PYY, HGF, I-TAC, brain signaling protein 4C, SorCS3, Tie-1, IL-31 RA, Arginase 1, POGLUT1, IL-1ra, Flatfoot protein, TIM-3, CREG, CD300f, uPA, EphA2, LLRTM4, LIMPII, Tenosynovin R, CPE, PECAM-1, DNAM-1, DKK-1, OPG, CPB1, TSH, MMP-2, Salivary lectin-9, ICAM-3, Cysteine ​​protease inhibitor SA, Galactohemagglutinin-4, Pepsinogen II, Desmosome core protein-3, Stalk protein-4, SCF, Serine protease inhibitor A5, PTH, FGF-19, MSP, IL-28A, FGF-12, METAP2, ASAHL, EDIL3, NTAL, EGF R, TAFAS, Galactohemagglutinin-9, vWF-A2, TACE, Activator protein RIM, Cathepsin S, LDL RBMPR-IA, OX40, IL-13 R2, B7-H4, MMP-13, ANGPTL7, TRAIL R4, IGSF4B, Sirtuin 5, PEAR1, SH2D1A, Cerberus 1, GDF-11, Nrf2, TROP-2, NUDTS, ROR2, EphB4, phosphatidylinositol proteoglycan 1, LAP (TGFb1), Gash, contactin-1, IL-27, UNC5H4, ICAM-2, MBL, HS3ST3B1, RCOR1, IL-10 Rb, XEDAR, IL-22, PILR-α, NRG1-131, FABP4, RGM-A, RELT, TrkC, CSa, SREC-I, neural epithelial stem cell protein, TPO, ErbB3, Kirrel3, FLRT1, galactoglobulin-3, CXCL16, JAM-B, DR6, Nogo receptor, TLR4, VEGF R2, Tie-2, IL-15 R, Caspr2, LTbR, LAMP, ALCAM, GLP-1, NG2, IL-22 Rα 1, AMIGO2, HCC-1, TFPI-2, ULBP-2, desmosome core protein 2, agglutinin, synaptic fusion protein 4, VAMP-1, stalkin-2, FGF-21, Flt-3, GFAP, TIM-1, inhibin A, cadherin-4, PIGF-2, neurogranulin, HE4, IL-23 R, galactoglobulin-7, GALNT3, GITR L, CD14, R-vertebral protein 2, CK19, cardiotrophin-1, TREML1, HAPLN1, CD27, ANG-4, salivary immunoglobulin-7, CD155, VEGF-C, TNF RII, PGRP-S, SDF-1a, PDGF-AB, GPVI, CD40, SCF R, platelet-reactive protein-5, IL-1 RII, neurofeedin-2, cadherin-13, E-selectin, GITR, WISP-1, renin, AgRP, MDL-1, ROBO3, RANTES, endothelial cell-specific molecules, granzyme, hCGb, mesothelin, TLR1, TRAIL, MOG, DDR1, NGF R, TRAIL R3, trypsin 3, ARSB, LIF Rα, BAFFR, CD157, granzyme A, 2B4, ESAM, IL-1 R4, CXCL14, IL-31, SIRP α, urinary modulatory proteins, CTRC, CEACAM-1, TARC, MIP-3a, SDF-1b, NKp46, MCP-3, IL-32 α, TGFb3, FOLR2, CD58, IL-23, CD36, TNFb, Shh-N, fibrinogen-1, Reg4ILT2, Mer, TREM-2, Flt-3L, CDS, IL-6, CD229, Insulin, Synaptic Fusion Protein 6, GRO, Bcl-w, Lipocrine-2, PDGF-AA, IL-2 Ra, Angiopoietin, LYVE-1, CD4, RAGE, CDNF, Short Proteoglycan, NAP-2, PU.1, EDAR, ADAMTS13, Kynureninase, PTH1R, IFN-γ R1, CrkL, B7-1, PARC, Draxin, VE-cadherin, Procalcitonin, SOX15, Kallikrein 11, BCMA, Dendritic Cell-Associated C-Lectin-2, EpCAM, HCC-4, TGFa, IP-10, BLAME, CILP-1, PIGF, LOX-1, MCP-2, Resistin, HVEM, ENPP-7, Cohesin-Glycan-4, IL-2 Rg, MICA, dopa decarboxylase, NPDC-1, MCP-4, EG-VEGF, glycoprotein V, brain signaling protein 4G, IL-12p40, total PSA, IL-15, MAP1D, C1q, TNF4, Dtk, endothelial glycoprotein, ENA-78, Reg3A, MIP-1b, FGF-17, IL-6R, IL-8, galactolectin-8, CA4, cysteine ​​protease protein EM, FUT8, B7-H 3. GCP-2, CD40L, MDC, 4-1BB, HO-1, SOST, S100A13, kallikrein 7 or IL-13 or a combination of two or more thereof; (ii) hsa-let-7a-5p, hsa-let-7b-5p, hsa-let-7c-5p, hsa-let-7d-3p, hsa-let-7e-5p, hsa-let-7g-5p, hsa-let-7i, hs a-let-7i-5p, hsa-miR-100-5p, hsa-miR-103a-3p, hsa-miR-106a-5p, hsa-miR-106b-5p, hsa-mir- 10b, hsa-miR-10b-5p, hsa-mir-1246, hsa-miR-1246, hsa-miR-125a-5p, hsa-miR-125b-5p, hsa-mi R-130a-3p, hsa-mir-130b, hsa-miR-130b-3p, hsa-miR-132-3p, hsa-miR-136-5p, hsa-miR-138-5p , hsa-miR-139-5p, hsa-mir-140, hsa-miR-140-3p, hsa-miR-145-5p, hsa-mir-146a, hsa-miR-146a- 5p, hsa-miR-148a-3p,hsa-miR-152-3p, hsa-miR-15a-5p, hsa-miR-15b-5p, hsa-mir-16-1, hsa-mir-16-2, hsa-miR-16-5p, hsa-miR-1'7-5p, hsa-miR-181a-5p, hsa-miR-191-5p, hsa-miR-193a-5p, hsa-miR-193b-3p, hsa-miR-19'7-3p, hsa-miR-199a-3p, hsa-miR-199a-5p, hsa-miR-199b-5p, hsa-miR-19a-3p, hsa-mi R-19b-3p, hsa-miR-20a-5p, hsa-mir-203a, hsa-miR-203a-3p, hsa-miR-214-3p, hsa-mir-21, hsa-miR-21-3p, hsa-miR-21-5p, hsa-mir-221, hsa-miR-221-3p, hsa-mir-222, hsa-miR-222-3p, hsa-miR-22-3p, hsa-miR-23a-3p, hsa-miR-23b-3p, hsa-mir-24-1, hsa-mir-24-2, hsa-miR-24-3p, hsa- mir-25, hsa-miR-25-3p, hsa-miR-26a-5p, hsa-miR-27a-3p, hsa-mir-27b, hsa-miR-27b-3p, hsa-miR-29a-3p, hsa-miR-29c-3p, hsa-miR-30a-5p, hsa-miR-30a-5p, hsa-miR-30b-5p, hsa-miR-30c-5p, hsa-mir-30d, hsa-miR-30d-5p, hsa-mir-30e, hsa-miR-30e-5p, hsa-miR-31-3p, hsa-miR-31-5p hsa-miR-320a hsa-miR-342-3p hsa-miR-345-5p hsa-miR-34a-5p hsa-miR-361-5p hsa-miR-376a-3p hsa-miR-376c-3p hsa-miR-423-3p hsa -miR-423-5p, hsa-miR-424-5p, hsa-miR-484, hsa-mir-486-1, hsa-mir-486-2, hsa-miR-486-5p, hsa-miR-570-3p, hsa-miR-574-3p, hsa-miR-663ahsa-miR-874-3p, hsa-mir-92a-1, hsa-mir-92a-2, hsa-miR-92a-3p, hsa-miR-92b-3p, hsa-mir-93, hsa-miR-93-5p, hsa-miR-940, hsa-miR-99a-5p or hsa-miR-99b-5p, or a combination of two or more thereof; or both (iii), (i) and (ii).

[0112] 27. A method for treating radiation-induced fibrosis (RIF), the method comprising administering a therapeutic MSC secretome composition to the subject.

[0113] 28. A method for treating radiation fibrosis syndrome (RFS), the method comprising administering a therapeutic MSC secretome composition to the subject.

[0114] 29. A method for alleviating symptoms related to skin radiation therapy in a subject, the method comprising administering a therapeutic MSC secretome composition to the subject.

[0115] 30. A method for improving skin characteristics selected from one or more of the following: fibrosis, hardening, thickening, induration, inflammation, skin firmness, elastin content and / or collagen content, and combinations thereof, said method comprising applying a therapeutic MSC secretory composition to said subject.

[0116] 31. The method of any one of embodiments 27-30, wherein the extracellular vesicles in the therapeutic MSC secretome composition are CD63+CD9-CD81-.

[0117] 32. The method of any one of embodiments 27-31, wherein the therapeutic MSC secretory group comprises (i) ferritin, NUP85, LAMP2, GPR115, serine protease inhibitor F1, OPN, PAI-1, DAPP1, cathepsin B, brain signaling protein 6C, PDGF Rα, sorting protein, serine protease inhibitor B6, Dkk-3, coagulation regulator protein, PF4, MIF, periosteal protein, furin, TIMP-1, gypsum proteoglycan, PCK1, CD99, CD63, CD9, CD81, transferrin, DcR3, photoglucan, TIMP-2, SLITRK5, FAP, leptospirin, DPPII, cIAP-1, pentameric protein 3, lactone, enkephalin, albumin, galactolectin-1, UNC5H3, IL-20 Rβ, SREC-II, JAM-C, TNF RI, htPAPP-A, eNOS, MSP R, TPP1, LAMP1, B2M, NCAM-1, HIF-1 α, ST6GAL1, CD99-L2, convolutional protein A4, EMMPRIN, p53, brain signaling protein 7A, NKp80, cysteine ​​protease protein B, osteoadhesion, mid-term factor, calreticulin, osteoactivin, asparagine endopeptidase, TAZ, cathepsin L, RBP4, serine protease inhibitor A4, JAM-A, MCSF, LIMPII, OPG, IL-22, galactolectin-3, MOG, trypsin 3, SIRP α, cohesin-4, IGFBP-4, IL-1 R6, GSTM1, NUP85, LAMP2, transmembrane peptidase A, IL-1 F10, bIG-H3, GPR115, TGFb1, liver glycoside A4, CD109, serine protease inhibitor F1, IGFBP-6, HS3ST4, aminopeptidase LRAP, OPN, PAI-1, DAPP1, GDF-9, cathepsin B, IGFBP-2, brain signaling protein 6C, IGF-2, PDGF Rα, sorting protein, serine protease inhibitor B6, Dkk-3, CNTF, TSP-1, GM-CSF Ra, coagulation regulatory protein, endosaccharides, IGFBP-3, RGM-C, PF4, MIF, TGM4, periostealin, furin, TIMP-1, PAPP-A, dermal proteoglycans, PCK1, arylsulfatase A, CD99, CA2, PRDX4, transferrin, DCR3, GP73, LAIR2, ULBP-4, luminous proteoglycans, TIMP-2, TFPI, SOX2, SLITRK5, FAP, spinal cord protein, ENPP-2, CD97, CTACK, integrin α1, EXTL3, IL-18, BPa, PD-L2, PSMAIL-20 Ra, Glyoxalase II, Trypsin I, IGF-2R, ADAMTS L1-1, Erythropoietin, Convolutional D1, DNMT3A, BCL-2, CL-P1, Hepatocyte Glycol-B3, FABP6, CHI3L1, FCRLS, TFF3, Sphingomyelin, DPPII, cIAP-1, PDGF Rb, Pentanoic Acid 3, Angiotensinogen, Follicle-Stapressin, CF VII, Persephin, TRAIL R1, THAP11, CD200, CLEC-2, AMIGO, IGFBP-5, PON1, SOX7, GALNT10, Lactone, Granulosin Progenitor, PCSK2, GKN1, IL-18, Enkephalin, Stabilin-2, IL-17 RD, albumin, follicle-stimulating protein 1, MMP-10, FKBP51, LRRC4, Pref-1, galactoglobin-1, troponin C, UNC5H3, FLRT2, CD314, brain signaling protein 6B, cytokinin-4, CD27 ligand, IL-20 Rβ, brain signaling protein 6A, TSK, cytokeratin-8, CHST3, Mcl-1, DPPIV, SREC-II, norin, JAM-C, Bcl-10, Wnt-4, LSECtin, Kell, TNF RI, PTP1B, htPAPP-A, IDO, PDGF-CC, Glycopropyl peptide, Activator Protein A, TLR2, SCCA2, FABP1, eNOS, SHP-1, ICOS, C1qTNF9, MMP-1, TC-PTP, IL-24, gp130, C-myc, LILRB4, BMP-2, MIA, CD34, CD63, CD9, CD81, IFNab R2, Phosphatidylinositol Proteoglycan 2, MSP R, DSCAM, Membrane-type Serine Protease, KIR2DL3, CD30, Salivary Agglutinin-10, CLEC-1, TPP1, Ubiquitin+1, ANGPTL4, TWEAK R, Nestin-1, CD2, Kallikrein 1, TSLP R, LAMP1, TROY, VCAM-1, salivary immunoglobulin-11, S100A1, PAR1, thyroid peroxidase, aminopeptidase P2, IL-1 RI, ADAMS, OSM R β, platelet-reactive protein-2, SMPD1, B2M, MFRP, LRP-6, ST3GAL1, NCAM-1 (CD56), granzyme B, lipoconazole, IL-22BP, TPST2, PD-ECGF, LH, LEDGF, Cyr61, ULBP-3, IFNb, THSD1, FGF-23, LAMA4, lipoprotein, AIF, SorCS2, SULT2A1, CD39L2, insulin R, HIF-1 α, OX40 ligandPax3, UCH-L3, cMASP3, Langerin, desmin, SOX9, ST6GAL1, MEP1B, CD99-L2, conglomerate A4, brain signaling protein 4D, ROBO2, PDX-1, APRIL, neuronal rankin, transmembrane protein-2 with ring structure, EMMPRIN, activator protein RIB, neuroligand 2, epithelial regulatory protein, CASA, MMP-12, GALNT2, CEACAM-5, VEGF R1, DSPG3, SorCS1, extracellular matrix protein-2, sFRP-3, p53, EphB3, NCK1, brain signaling protein 7A, NKp80, prolactin, cysteine ​​agonist protein B, Sirtuin 1, FGF-16, FGF R5, NQO-1, Brain signaling protein 6D, FGF-3, GATA-4, VAP-A, CHST2, Pregnancy-associated plasma protein-2, Cohesin-3, Serpentin-1, AKR1C4, Oligosin-2, Osteoadhesin, NKp44, Thyroglobulin, IL-21R, Chemokines, EphA1, CD48, MICB, FGF-5, TRANCE, CES2, ULBP-1, Integrin α 5. VAMP-2, FLRG, Ret metaphase factor, CD73, TRAP, proGRP, granzyme H, PRX2, p27, salivary lectin-6, dendritic cell-associated C-type lectin-1, CD51, Notch-1, calreticulin, DR3, DCTN1, CDC25B, bone activator, ACE, CA125, HAO-1, ​​PSMA1, FCRLB, BMP-9, CRIM1, LIF, SPINK1, EphB6, RGM-B, HS3ST1, ROR1, CMG-2, 4-1BB ligand, L1CAM-2, p63, cathepsin V, testosterone-2, phosphatidylinositol proteoglycan 5, CD6, salivary lectin-2, asparagine endopeptidase, PRELP, CES1, TAZ, NSE, TECK, HTRA2, HIF-1 β, TAFA1, podocyte protein, RalA, CRELD2, GRAP2, SP-D, BID, GFR α-2, Notch-3, VEGF R3, DLL4, TGFb2, LIGHT, XIAP, ST8SIA1, cathepsin L, 6-Ckine, MIS RII, kallikrein 5, TGM3, FCAR, contactin-2, CD83, IL-1 R3, SALM4, GBA3, ROBO4, OSCAR, VEGF, IGSF3, disaccharide proteoglycan, neurodevelopmental factor, ILT4, uPAR, Axl, WIF-1, IL-7 Rα, GPR56, CEACAM-3, MCEMP1, FABP2, conglomerate B3, MEPEActivating proteins RIIA, ANG-2, Cochlin, presenilin 1, NPTXR, SLAM, COMT, SPHK1, RBP4, stalkin-1, GUSB, nestin-2, IL-17F, SR-AI, TAFA2, N-cadherin, IL-17B, IL-17RC, MIP-3b, cysteine ​​absorptase C, cysteine ​​absorptase D, AMSH, FcERI, CLEC10A, HGF R, ANG-1, prolactin R, FGF-20, CD28, Nogo-A, HSD17B1, IL-19, intestinal peptidase, cathepsin E, TSLP, TCN2, GDF-15, epidermal morphogenetics, GRKS, PD-1, serine protease inhibitor A4, ADAM23, NOV, galactolectin-2, neuronal surface protein 3β, TLR3, Sirtuin 2, Numb, IL-28 Rα, IL-33, Lin28, FCRL1, KLF4, NKp30, lymphocyte chemokines, cysteine ​​protease protein SN, JAM-A, calreticulin-2, ErbB4, BMP-8, IL-27 Ra, Fas, IL-4 Ra, kallikrein 14, extracellular matrix protein-3, Olig2, kallikrein 12, CA13, IL-9, stalkin-3, MPIF-1, cysteine ​​protease protein S, ADA, IL-2 Rb, GFR α-1, Smad4, ICAM-1, MEF2C, TREM-1, L-selectin, transmembrane serine protease, CD42b, MCSF, RANK, CHST4, CA8, FCRL3, ASAH2, CF XIV, PYY, HGF, I-TAC, Brain signaling protein 4C, SorCS3, Tie-1, IL-31RA, Arginase 1, POGLUT1, IL-1ra, Flatfoot protein, TIM-3, CREG, CD300f, uPA, EphA2, LLRTM4, LIMPII, Tenosynovin R, CPE, PECAM-1, DNAM-1, DKK-1, OPG, CPB1, TSH, MMP-2, Salivary lectin-9, ICAM-3, Cysteine ​​protease inhibitor SA, Galactohemagglutinin-4, Pepsinogen II, Desmosome core protein-3, Stalk protein-4, SCF, Serine protease inhibitor A5, PTH, FGF-19, MSP, IL-28A, FGF-12, METAP2, ASAHL, EDIL3, NTAL, EGF R, TAFAS, galactoglobulin-9, vWF-A2, TACE, activator protein RIM, cathepsin S, LDLR, BMPR-IA, OX40, IL-13 R2, B7-H4, MMP-13, ANGPTL7, TRAIL R4IGSF4B, Sirtuin 5, PEAR1, SH2D1A, Cerberus 1, GDF-11, Nrf2, TROP-2, NUDTS, ROR2, EphB4, phosphatidylinositol proteoglycan 1, LAP (TGFb1), Gash, contactin-1, IL-27, UNC5H4, ICAM-2, MBL, HS3ST3B1, RCOR1, IL-10, Rb, XEDAR, IL-22, PILR-α, NRG1-131, FABP4, RGM-A, RELT, TrkC, CSa, SREC-I, neural epithelial stem cell protein, TPO, ErbB3, Kirrel3, FLRT1, galactolectin-3, CXCL16, JAM-B, DR6, Nogo receptor, TLR4, VEGFR2, Tie-2, IL-15 R, Caspr2, LTbR, LAMP, ALCAM, GLP-1, NG2, IL-22, Rα1, AMIGO2, HCC-1, TFPI-2, ULBP-2, desmosome core protein 2, agglutinin, synaptic fusion protein 4, VAMP-1, stalkin-2, FGF-21, Flt-3, GFAP, TIM-1, inhibin A, cadherin-4, PIGF-2, neurogranulin, HE4, IL-23, R, galactolectin-7, GALNT3, GITR L, CD14, R-vertebral protein 2, CK19, cardiotrophin-1, TREML1, HAPLN1, CD27, ANG-4, salivary lectin-7, CD155, VEGF-C, TNF-α, PGRP-S, SDF-1α, PDGF-AB, GPVI, CD40, SCFR, platelet-reactive protein-5, IL-1 RII, neurofeltin-2, cadherin-13, E-selectin, GITR, WISP-1, renin, AgRP, MDL-1, ROBO3, RANTES, endothelial cell-specific molecules, granzyme, hCGb, mesothelin, TLR1, TRAIL, MOG, DDR1, NGF R, TRAIL R3, trypsin 3, ARSB, LIF Rα, BAFF R, CD157, granzyme A, 2B4, ESAM, IL-1 R4, CXCL14, IL-31, SIRP α, urinary modulatory proteins, CTRC, CEACAM-1, TARC, MIP-3a, SDF-1b, NKp46, MCP-3, IL-32 α, TGFb3 FOLR2, CD58, IL-23, CD36, TNFb, Shh-N, fibrin-1, Reg4, ILT2, Mer, TREM-2, Flt-3L, CDS, IL-6, CD229, insulin, synaptic fusion protein 6GRO, Bcl-w, lipocalin-2, PDGF-AA, IL-2 Ra, angiopoietin, LYVE-1, CD4, RAGE, CDNF, short proteoglycan, NAP-2, PU.1, EDAR, ADAMTS13, kynurenase, PTH1R, IFN-γ R1, CrkL, B7-1, PARC, Draxin, VE-cadherin, procalcitonin, SOX15, kallikrein 11, BCMA, dendritic cell-associated C-lectin-2, EpCAM, HCC-4, TGFa, IP-10, BLAME, CILP-1, PIGF, LOX-1, MCP-2, resistin, HVEM, ENPP-7, cohesin-glycan-4, IL-2 Rg, MICA, dopa decarboxylase, NPDC-1, MCP-4, EG-VEGF, glycoprotein V, brain signaling protein 4G, IL-12p40, total PSA, IL-15, MAP1D, C1q, TNF4, Dtk, endothelial glycoprotein, ENA-78, Reg3A, MIP-1b, FGF-17, IL-6R, IL-8, galactolectin-8, CA4, cysteine ​​protease protein EM, FUT8, B7-H 3. GCP-2, CD40L, MDC, 4-1BB, HO-1, SOST, S100A13, kallikrein 7 or IL-13 or a combination of two or more thereof; (ii) hsa-let-7a-5p, hsa-let-7b-5p, hsa-let-7c-5p, hsa-let-7d-3p, hsa-let-7e-5p, hsa-let-7g-5p, hsa-let-7i, hs a-let-7i-5p, hsa-miR-100-5p, hsa-miR-103a-3p, hsa-miR-106a-5p, hsa-miR-106b-5p, hsa-mir- 10b, hsa-miR-10b-5p, hsa-mir-1246, hsa-miR-1246, hsa-miR-125a-5p, hsa-miR-125b-5p, hsa-mi R-130a-3p, hsa-mir-130b, hsa-miR-130b-3p, hsa-miR-132-3p, hsa-miR-136-5p, hsa-miR-138-5p , hsa-miR-139-5p, hsa-mir-140, hsa-miR-140-3p, hsa-miR-145-5p, hsa-mir-146a, hsa-miR-146a- 5p, hsa-miR-148a-3p, hsa-miR-152-3p, hsa-miR-15a-5p, hsa-miR-15b-5p,hsa-mir-16-1, hsa-mir-16-2, hsa-miR-16-5p, hsa-miR-1'7-5p, hsa-miR-181a-5p, hsa-miR-191-5p, hsa-miR-193a-5p, hsa-miR-193b-3p, hsa-miR-19'7-3p, hsa-miR-199a-3p, hsa-miR-199a-5p, hsa-miR-199b-5p, hsa-miR-19a-3p, hsa-miR-19b-3p, hsa-miR-20a-5p, hsa-mir-203a, hsa-miR- 203a-3p, hsa-miR-214-3p, hsa-mir-21, hsa-miR-21-3p, hsa-miR-21-5p, hsa-mir-221, hsa-miR-221-3p, hsa-mir-222, hsa-miR-222-3p, hsa-miR-22-3p, hsa-miR-23a-3p, hsa-miR-23b-3p, hsa-mir-24-1, hsa-mir-24-2, hsa-miR-24-3p, hsa-mir-25, hsa-miR-25-3p, hsa-miR-26a-5p, hsa-miR- 27a-3p、hsa-mir-27b、hsa-miR-27b-3p、hsa-miR-29a-3p、hsa-miR-29c-3 p、hsa-miR-30a-5p、hsa-miR-30a-5p、hsa-miR-30b-5p、hsa-miR-30c-5p、 hsa-mir-30d、hsa-miR-30d-5p、hsa-mir-30e、hsa-miR-30e-5p、hsa-miR- 31-3p、hsa-miR-31-5p、hsa-miR-320a、hsa-miR-342-3p、hsa-miR-345-5p hsa-miR-34a-5p hsa-miR-361-5p hsa-miR-376a-3p hsa-miR-376c-3p hsa-miR-423-3p hsa-miR-423-5p hsa-miR-424-5p hsa-miR-484 hsa- mir-486-1, hsa-mir-486-2, hsa-miR-486-5p, hsa-miR-570-3p, hsa-miR-574-3p, hsa-miR-663a, hsa-miR-874-3p, hsa-mir-92a-1, hsa-mir-92a-2hsa-miR-92a-3p, hsa-miR-92b-3p, hsa-mir-93, hsa-miR-93-5p, hsa-miR-940, hsa-miR-99a-5p or hsa-miR-99b-5p, or a combination of two or more thereof; or both (iii), (i) and (ii).

[0118] 33. The method of any one of embodiments 27-32, wherein the therapeutic MSC secretome composition is prepared by a method comprising the steps of: (a) culturing bone marrow-derived MSCs under conditions of: (i) oxygen tension below 5%; and (ii) a medium with a pH below 7; (b) harvesting the MSC conditioned medium; and (c) formulating the MSC conditioned medium to produce the therapeutic MSC secretome composition, wherein the therapeutic MSC secretome composition comprises proteins and extracellular vesicles produced by the bone marrow-derived MSCs in step (a).

[0119] 34. The method as described in any one of embodiments 27-33, wherein the subject has been diagnosed with cancer.

[0120] 35. The method of embodiment 34, wherein the subject has been diagnosed with skin cancer.

[0121] 36. The method of any one of embodiments 27-35, wherein the object has fibrotic, irradiated mammary tissue.

[0122] 37. The method of any one of embodiments 27-36, wherein the subject experiences improvement after treatment in one or more of the following skin characteristics: fibrosis, hardening, thickening, induration, inflammation, skin firmness, elastin content and / or collagen content, and combinations thereof.

[0123] 38. The method of any one of embodiments 1-37, wherein the composition comprises 5 mL of the therapeutic MSC secretion group composition.

[0124] 39. The method of embodiment 38, wherein the composition is injected into irradiated skin.

[0125] 40. A method of treating irradiated skin of a subject, the method comprising administering to the subject a composition comprising a therapeutic mesenchymal stem cell (MSC) secretome composition containing extracellular vesicles (EVs), wherein the composition comprises 5 mL of the therapeutic MSC secretome composition.

[0126] 41. A method of treating irradiated skin of a subject, the method comprising applying to the subject a composition comprising a therapeutic mesenchymal stem cell (MSC) secretome composition of extracellular vesicles (EVs), wherein the application improves one or more of the following skin characteristics: fibrosis, hardening, thickening, induration, inflammation, skin firmness, elastin content and / or collagen content, and combinations thereof.

[0127] 42. The method of any one of embodiments 1-41, wherein the application reduces skin hardness.

[0128] 43. The method of embodiment 42, wherein the skin stiffness is measured by SkinFibroMeter readings.

[0129] 44. The method of embodiment 43, wherein the application reduces the SkinFibroMeter reading by at least 5%, 10%, 15%, 20%, 25%, 30%, 35%, 40%, 45%, or 50%.

[0130] 45. The method of embodiment 42, wherein the skin stiffness is measured in Newtons.

[0131] 46. ​​The method of embodiment 45, wherein the application reduces skin hardness by at least 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16, 17, 18, 19, 20, 21, 22, 23, 24 or 25 Newtons.

[0132] 47. The method of any one of embodiments 1-46, wherein the application results in an improvement in one or more of the following: fibrosis, necrosis, type I collagen and / or elastin scores.

[0133] 48. The method of any one of embodiments 1-47, wherein the improvement in the elastin score includes an improvement in the quality, quantity, and / or distribution of elastin fibers.

[0134] 49. The method of any one of embodiments 1-48, wherein the application improves inflammation.

[0135] 50. Use of a composition comprising a therapeutic mesenchymal stem cell (MSC) secretome composition containing extracellular vesicles in irradiated skin of a subject, wherein at least 80% of the extracellular vesicles in the therapeutic MSC secretome composition are CD63. + CD9 - CD81 - .

[0136] 51. Use of a composition comprising a therapeutic mesenchymal stem cell (MSC) secretome composition containing extracellular vesicles (EVs) for treating irradiated skin in a subject of need, wherein the therapeutic mesenchymal stem cell (MSC) secretome composition comprises: (i) ferritin, NUP85, LAMP2, GPR115, serine protease inhibitor F1, OPN, PAI-1, DAPP1, cathepsin B, brain signaling protein 6C, PDGF R α, Sorting protein, serine protease inhibitor B6, Dkk-3, coagulation regulator protein, PF4, MIF, periosteal protein, furin, TIMP-1, dermal proteoglycan, PCK1, CD99, CD63, CD9, CD81, transferrin, DcR3, photoglycan, TIMP-2, SLITRK5, FAP, leptospirin, DPPII, cIAP-1, pentameric protein 3, lactone, enkephalin, albumin, galactoglobin-1, UNC5H3, IL-20, β-reactive protein, SREC-II, JAM-C, TNF-α, htPAPP-A, eNOS, MSP, TPP1, LAMP1, B2M, NCAM-1, HIF-1 α, ST6GAL1, CD99-L2, convolutional protein A4, EMMPRIN, p53, brain signaling protein 7A, NKp80, cysteine ​​protease protein B, osteoadhesion, mid-term factor, calreticulin, osteoactivin, asparagine endopeptidase, TAZ, cathepsin L, RBP4, serine protease inhibitor A4, JAM-A, MCSF, LIMPII, OPG, IL-22, galactoglobulin-3, MOG, trypsin 3, SIRP α, cohesin-4, IGFBP-4, IL-1 R6, GSTM1, NUP85, LAMP2, transmembrane peptidase A, IL-1 F10, bIG-H3, GPR115, TGFb1, liver glycoside A4, CD109, serine protease inhibitor F1, IGFBP-6, HS3ST4, aminopeptidase LRAP, OPN, PAI-1, DAPP1, GDF-9, cathepsin B, IGFBP-2, brain signaling protein 6C, IGF-2, PDGFR α, sorting protein, serine protease inhibitor B6, Dkk-3, CNTF, TSP-1, GM-CSF Ra, coagulation regulatory protein, endosaccharides, IGFBP-3, RGM-C, PF4, MIF, TGM4, periosteal protein, furin protease, TIMP-1, PAPP-A, dermal proteoglycans, PCK1, arylsulfatase A, CD99, CA2, PRDX4, transferrin, DcR3, GP73, LAIR2, ULBP-4, optical proteoglycans, TIMP-2, TFPI, SOX2, SLITRK5, FAP, spinal proteinENPP-2, CD97, CTACK, integrin α1, EXTL3, IL-18, BPa, PD-L2, PSMA, IL-20 Ra, glyoxalase II, trypsin I, IGF-2R, ADAMTSL-1, erythropoietin, plexin D1, DNMT3A, BCL-2, CL-P1, hepatocyte glycoside-B3, FABP6, CHI3L1, FCRLS, TFF3, leptospirin, DPPII, cIAP-1, PDGF Rb, pentameric protein 3, angiotensinogen, follicle-stimulating hormone, CF VII, persephin, TRAIL R1, THAP11, CD200, CLEC-2, AMIGO, IGFBP-5, PON1, SOX7, GALNT10, endothelin, granulosin precursor, PCSK2, GKN1, IL-18, enkephalin, stabilizer-2, IL-17 RD, albumin, follicle-stimulating protein 1, MMP-10, FKBP51, LRRC4, Pref-1, galactoglobin-1, troponin C, UNC5H3, FLRT2, CD314, brain signaling protein 6B, cytokinin-4, CD27 ligand, IL-20 Rβ, brain signaling protein 6A, TSK, cytokeratin-8, CHST3, Mcl-1, DPPIV, SREC-II, norin, JAM-C, Bcl-10, Wnt-4, LSECtin, Kell, TNF RI, PTP1B, htPAPP-A, IDO, PDGF-CC, Glycopropyl peptide, Activator Protein A, TLR2, SCCA2, FABP1, eNOS, SHP-1, ICOS, C1qTNF9, MMP-1, TC-PTP, IL-24, gp130, C-myc, LILRB4, BMP-2, MIA, CD34, CD63, CD9, CD81, IFNab R2, Phosphatidylinositol Proteoglycan 2, MSP R, DSCAM, Membrane-type Serine Protease, KIR2DL3, CD30, Salivary Agglutinin-10, CLEC-1, TPP1, Ubiquitin+1, ANGPTL4, TWEAK R, Nestin-1, CD2, Kallikrein 1, TSLPR, LAMP1, TROY, VCAM-1, Salivary agglutinin-11, S100A1, PAR1, Thyroid peroxidase, Aminopeptidase P2, IL-1RI, ADAMS, OSM Rβ, Platelet-Reactive Protein-2, SMPD1, B2M, MFRP, LRP-6, ST3GAL1, NCAM-1 (CD56), Granulase B, Lipocontin, IL-22BP, TPST2, PD-ECGF, LH, LEDGF, Cyr61, ULBP-3, IFNb, THSD1, FGF-23, LAMA4, LipoproteinAIF, SorCS2, SULT2A1, CD39L2, Insulin R, HIF-1 α, OX40 ligand, Pax3, UCH-L3, cMASP3, Langerin, Desmin, SOX9, ST6GAL1, MEP1B, CD99-L2, Convolutional protein A4, Brain signaling protein 4D, ROBO2, PDX-1, APRIL, Neural rank protein, cyclic transmembrane protein-2, EMMPRIN, activator protein RIB, neuroligand 2, epithelial regulatory protein, CASA, MMP-12, GALNT2, CEACAM-5, VEGF R1, DSPG3, SorCS1, Extracellular matrix protein-2, sFRP-3, p53, EphB3, NCK1, Brain signaling protein 7A, NKp80, Prolactin, Cysteine ​​protease protein B, Sirtuin 1, FGF-16, FGF R5, NQO-1, Brain signaling protein 6D, FGF-3, GATA-4, VAP-A, CHST2, Pregnancy-associated plasma protein-2, Cohesin-3, Serpentin-1, AKR1C4, Oligosin-2, Osteoadhesin, NKp44, Thyroglobulin, IL-21R, Chemokines, EphA1, CD48, MICB, FGF-5, TRANCE, CES2, ULBP-1, Integrin α 5. VAMP-2, FLRG, Ret metaphase factor, CD73, TRAP, proGRP, granzyme H, PRX2, p2'7, salivary lectin-6, dendritic cell-associated C-type lectin-1, CD51, Notch-1, calreticulin, DR3, DCTN1, CDC25B, bone activator, ACE, CA125, HAO-1, ​​PSMA1, FCRLB, BMP-9, CRIM1, LIF, SPINK1, EphB6, RGM-B, HS3ST1, ROR1, CMG-2, 4-1BB ligand, L1CAM-2, p63, cathepsin V, testosterone-2, phosphatidylinositol proteoglycan 5, CD6, salivary lectin-2, asparagine endopeptidase, PRELP, CES1, TAZ, NSE, TECK, HTRA2, HIF-1 β, TAFA1, podocyte protein, RalA, CRELD2, GRAP2, SP-D, BID, GFR α-2, Notch-3, VEGF R3, DLL4, TGFb2, LIGHT, XIAP, ST8SIA1, cathepsin L, 6-Ckine, MIS RII, kallikrein 5, TGM3, FCAR, contactin-2, CD83, IL-1R3, SALM4, GBA3, ROBO4, OSCAR, VEGF, IGSF3, disaccharide proteoglycan, neurodevelopmental factor, ILT4, uPAR, Axl, WIF-1IL-7 Rα, GPR56, CEACAM-3, MCEMP1, FABP2, plexin B3, MEPE, activator RIIA, ANG-2, Cochlin, progerin 1, NPTXR, SLAM, COMT, SPHK1, RBP4, stalkin-1, GUSB, nestin-2, IL-17F, SR-AI, TAFA2, N-cadherin, IL-17B, IL-17RC, MIP-3b, cysteine ​​protease C, cysteine ​​protease D, AMSH, FcERI, CLEC10A, HGF R, ANG-1, prolactin R, FGF-20, CD28, Nogo-A, HSD17B1, IL-19, intestinal peptidase, cathepsin E, TSLP, TCN2, GDF-15, epidermal morphogenetics, GRKS, PD-1, serine protease inhibitor A4, ADAM23, NOV, galactoglobulin-2, neuronal surface protein 3β, TLR3, Sirtuin2, Numb, IL-28 Rα, IL-33, Lin28, FCRL1, KLF4, NKp30, lymphocyte chemokine, cysteine ​​protease protein SN, JAM-A, calreticulin-2, ErbB4, BMP-8, IL-27 Ra, Fas, IL-4 Ra, kallikrein 14, extracellular matrix protein-3, Oligo2, kallikrein 12, CA13, IL-9, stalk protein-3, MPIF-1, cysteine ​​protease protein S, ADA, IL-2 Rb, GFR α-1, Smad4, ICAM-1, MEF2C, TREM-1, L-selectin, transmembrane serine protease, CD42b, MCSF, RANK, CHST4, CA8, FCRL3, ASAH2, CF XIV, PYY, HGF, I-TAC, brain signaling protein 4C, SorCS3, Tie-1, IL-31 RA, Arginase 1, POGLUT1, IL-1ra, Flatfoot protein, TIM-3, CREG, CD300f, uPA, EphA2, LLRTM4, LIMPII, Tenosynovin R, CPE, PECAM-1, DNAM-1, DKK-1, OPG, CPB1, TSH, MMP-2, Salivary lectin-9, ICAM-3, Cysteine ​​protease inhibitor SA, Galactohemagglutinin-4, Pepsinogen II, Desmosome core protein-3, Stalk protein-4, SCF, Serine protease inhibitor A5, PTH, FGF-19, MSP, IL-28A, FGF-12, METAP2, ASAHL, EDIL3, NTAL, EGF R, TAFAS, Galactohemagglutinin-9, vWF-A2, TACE, Activator protein RIM, Cathepsin S, LDL RBMPR-IA, OX40, IL-13 R2, B7-H4, MMP-13, ANGPTL7, TRAIL R4, IGSF4B, Sirtuin 5, PEAR1, SH2D1A, Cerberus 1, GDF-11, Nrf2, TROP-2, NUDTS, ROR2, EphB4, phosphatidylinositol proteoglycan 1, LAP (TGFb1), Gash, contactin-1, IL-27, UNC5H4, ICAM-2, MBL, HS3ST3B1, RCOR1, IL-10 Rb, XEDAR, IL-22, PILR-α, NRG1-131, FABP4, RGM-A, RELT, TrkC, CSa, SREC-I, neural epithelial stem cell protein, TPO, ErbB3, Kirrel3, FLRT1, galactoglobulin-3, CXCL16, JAM-B, DR6, Nogo receptor, TLR4, VEGF R2, Tie-2, IL-15 R, Caspr2, LTbR, LAMP, ALCAM, GLP-1, NG2, IL-22 Rα 1, AMIGO2, HCC-1, TFPI-2, ULBP-2, desmosome core protein 2, agglutinin, synaptic fusion protein 4, VAMP-1, stalkin-2, FGF-21, Flt-3, GFAP, TIM-1, inhibin A, cadherin-4, PIGF-2, neurogranulin, HE4, IL-23 R, galactoglobulin-7, GALNT3, GITR L, CD14, R-vertebral protein 2, CK19, cardiotrophin-1, TREML1, HAPLN1, CD27, ANG-4, salivary immunoglobulin-7, CD155, VEGF-C, TNF RII, PGRP-S, SDF-1a, PDGF-AB, GPVI, CD40, SCF R, platelet-reactive protein-5, IL-1 RII, neurofeedin-2, cadherin-13, E-selectin, GITR, WISP-1, renin, AgRP, MDL-1, ROBO3, RANTES, endothelial cell-specific molecules, granzyme, hCGb, mesothelin, TLR1, TRAIL, MOG, DDR1, NGF R, TRAIL R3, trypsin 3, ARSB, LIF Rα, BAFFR, CD157, granzyme A, 2B4, ESAM, IL-1 R4, CXCL14, IL-31, SIRP α, urinary modulatory proteins, CTRC, CEACAM-1, TARC, MIP-3a, SDF-1b, NKp46, MCP-3, IL-32 α, TGFb3, FOLR2, CD58, IL-23, CD36, TNFb, Shh-N, fibrinogen-1, Reg4ILT2, Mer, TREM-2, Flt-3L, CDS, IL-6, CD229, Insulin, Synaptic Fusion Protein 6, GRO, Bcl-w, Lipocrine-2, PDGF-AA, IL-2 Ra, Angiopoietin, LYVE-1, CD4, RAGE, CDNF, Short Proteoglycan, NAP-2, PU.1, EDAR, ADAMTS13, Kynureninase, PTH1R, IFN-γ R1, CrkL, B7-1, PARC, Draxin, VE-cadherin, Procalcitonin, SOX15, Kallikrein 11, BCMA, Dendritic Cell-Associated C-Lectin-2, EpCAM, HCC-4, TGFa, IP-10, BLAME, CILP-1, PIGF, LOX-1, MCP-2, Resistin, HVEM, ENPP-7, Cohesin-Glycan-4, IL-2 Rg, MICA, dopa decarboxylase, NPDC-1, MCP-4, EG-VEGF, glycoprotein V, brain signaling protein 4G, IL-12p40, total PSA, IL-15, MAP1D, C1q, TNF4, Dtk, endothelial glycoprotein, ENA-78, Reg3A, MIP-1b, FGF-17, IL-6R, IL-8, galactolectin-8, CA4, cysteine ​​protease protein EM, FUT8, B7-H 3. GCP-2, CD40L, MDC, 4-1BB, HO-1, SOST, S100A13, kallikrein 7 or IL-13 or a combination of two or more thereof; (ii) hsa-let-7a-5p, hsa-let-7b-5p, hsa-let-7c-5p, hsa-let-7d-3p, hsa-let-7e-5p, hsa-let-7g-5p, hsa-let-7i, hs a-let-7i-5p, hsa-miR-100-5p, hsa-miR-103a-3p, hsa-miR-106a-5p, hsa-miR-106b-5p, hsa-mir- 10b, hsa-miR-10b-5p, hsa-mir-1246, hsa-miR-1246, hsa-miR-125a-5p, hsa-miR-125b-5p, hsa-mi R-130a-3p, hsa-mir-130b, hsa-miR-130b-3p, hsa-miR-132-3p, hsa-miR-136-5p, hsa-miR-138-5p , hsa-miR-139-5p, hsa-mir-140, hsa-miR-140-3p, hsa-miR-145-5p, hsa-mir-146a, hsa-miR-146a- 5p, hsa-miR-148a-3p,hsa-miR-152-3p, hsa-miR-15a-5p, hsa-miR-15b-5p, hsa-mir-16-1, hsa-mir-16-2, hsa-miR-16-5p, hsa-miR-1'7-5p, hsa-miR-181a-5p, hsa-miR-191-5p, hsa-miR-193a-5p, hsa-miR-193b-3p, hsa-miR-19'7-3p, hsa-miR-199a-3p, hsa-miR-199a-5p, hsa-miR-199b-5p, hsa-miR-19a-3p, hsa-mi R-19b-3p, hsa-miR-20a-5p, hsa-mir-203a, hsa-miR-203a-3p, hsa-miR-214-3p, hsa-mir-21, hsa-miR-21-3p, hsa-miR-21-5p, hsa-mir-221, hsa-miR-221-3p, hsa-mir-222, hsa-miR-222-3p, hsa-miR-22-3p, hsa-miR-23a-3p, hsa-miR-23b-3p, hsa-mir-24-1, hsa-mir-24-2, hsa-miR-24-3p, hsa- mir-25, hsa-miR-25-3p, hsa-miR-26a-5p, hsa-miR-27a-3p, hsa-mir-27b, hsa-miR-27b-3p, hsa-miR-29a-3p, hsa-miR-29c-3p, hsa-miR-30a-5p, hsa-miR-30a-5p, hsa-miR-30b-5p, hsa-miR-30c-5p, hsa-mir-30d, hsa-miR-30d-5p, hsa-mir-30e, hsa-miR-30e-5p, hsa-miR-31-3p, hsa-miR-31-5p hsa-miR-320a hsa-miR-342-3p hsa-miR-345-5p hsa-miR-34a-5p hsa-miR-361-5p hsa-miR-376a-3p hsa-miR-376c-3p hsa-miR-423-3p hsa -miR-423-5p, hsa-miR-424-5p, hsa-miR-484, hsa-mir-486-1, hsa-mir-486-2, hsa-miR-486-5p, hsa-miR-570-3p, hsa-miR-574-3p, hsa-miR-663ahsa-miR-874-3p, hsa-mir-92a-1, hsa-mir-92a-2, hsa-miR-92a-3p, hsa-miR-92b-3p, hsa-mir-93, hsa-miR-93-5p, hsa-miR-940, hsa-miR-99a-5p or hsa-miR-99b-5p, or a combination of two or more thereof; or both (iii), (i) and (ii).

[0137] 52. Use of a composition comprising a therapeutic mesenchymal stem cell (MSC) secretome composition containing extracellular vesicles (EVs) in irradiated skin of a subject, wherein the composition comprises 5 mL of the therapeutic MSC secretome composition.

[0138] definition As used herein and in the appended claims, unless otherwise expressly specified, the singular forms “a / an” and “the” include plural indicators. It should also be noted that, unless otherwise expressly specified, the term “or” is generally used in its meaning including “and / or”. The terms “and / or” and “any combination thereof” as used herein, and their grammatical equivalents, may be used interchangeably.

[0139] The term "about" or "approximately" can refer to an acceptable range of error for a particular value, which can depend in part on how the value was measured or determined, such as limitations of the measurement system. For example, "about" can refer to a standard deviation of less than or greater than 1. Alternatively, "about" can refer to a range of up to 20%, up to 10%, up to 5%, or up to 1% of a given value. Alternatively, particularly with respect to biological systems or methods, the term can refer to an order of magnitude, within 5 times, or within 2 times the value. When a particular value is described in the application and claims, unless otherwise stated, the term "about" should be presumed to refer to an acceptable range of error for the particular value.

[0140] As used in this specification and claims, the terms “comprising” (and any form of “comprising”, such as “comprise”, “comprises”), “having” (and any form of “having”, such as “having”, “suffering”), “including” (and any form of “including”, such as “includes”, “include”), or “containing” (and any form of “containing”, such as “contains”, “contain”) are inclusive or open-ended and do not exclude additional, unlisted elements or method steps.

[0141] The terms “individual,” “patient,” or “object” are used interchangeably. None of these terms require or are limited to situations characterized by supervision (e.g., continuous or intermittent) by a healthcare worker (e.g., physician, registered nurse, nurse practitioner, physician assistant, caregiver, or hospice worker).

[0142] Example The following embodiments are provided to further illustrate some implementations of this disclosure, but are not intended to limit the scope of this disclosure; it should be understood that, given their exemplary nature, other procedures, methods or techniques known to those skilled in the art may also be used alternatively.

[0143] Example 1: Production of the therapeutic composition The MSC secretome therapeutic composition was prepared by the following method: Human bone marrow-derived MSCs were cultured in culture dishes with growth medium to expand the MSC population. The growth medium was then removed, and the cells were washed with PBS. The MSCs were then cultured under hypoxic conditions in a glucose-reduced medium with a pH less than 7.0. The conditioned medium was then collected and percolated, followed by sterilization. The production method of the therapeutic product was performed under current Good Manufacturing Practice and Current Good Tissue Practice.

[0144] The tetraspan membrane protein profile of extracellular vesicles present in the therapeutic composition was determined, and it was found that more than 95% of the extracellular vesicles present in the therapeutic composition were CD63. + CD9 - CD81 - .

[0145] The protein contents of the therapeutic product were identified, and the following proteins were found: ferritin, NUP85, LAMP2, GPR115, serine protease inhibitor F1, OPN, PAI-1, DAPP1, cathepsin B, brain signaling protein 6C, PDGF Rα, sorting protein, serine protease inhibitor B6, Dkk-3, coagulation regulatory protein, PF4, MIF, periosteal protein, furin, TIMP-1, tectonic proteoglycan, PCK1, CD99, CD63, CD9, CD81, transferrin, DcR3, photoglucan, TIMP-2, SLITRK5, FAP, leptospirin, DPPII, cIAP-1, pentameric protein 3, lactone, enkephalin, albumin, galactolectin-1, UNC5H3, IL-20 Rβ, SREC-II, JAM-C, and TNF. RI, htPAPP-A, eNOS, MSP R, TPP1, LAMP1, B2M, NCAM-1, HIF-1 α, ST6GAL1, CD99-L2, convolutional protein A4, EMMPRIN, p53, brain signaling protein 7A, NKp80, cysteine ​​protease protein B, osteoadhesion, mid-term factor, calreticulin, osteoactivin, asparagine endopeptidase, TAZ, cathepsin L, RBP4, serine protease inhibitor A4, JAM-A, MCSF, LIMPII, OPG, IL-22, galactolectin-3, MOG, trypsin 3, SIRP α, cohesin-4, IGFBP-4, IL-1 R6, GSTM1, NUP85, LAMP2, transmembrane peptidase A, IL-1 F10, bIG-H3, GPR115, TGFb1, liver glycoside A4, CD109, serine protease inhibitor F1, IGFBP-6, HS3ST4, aminopeptidase LRAP, OPN, PAI-1, DAPP1, GDF-9, cathepsin B, IGFBP-2, brain signaling protein 6C, IGF-2, PDGF Rα, sorting protein, serine protease inhibitor B6, Dkk-3, CNTF, TSP-1, GM-CSF Ra, coagulation regulatory protein, endosaccharides, IGFBP-3, RGM-C, PF4, MIF, TGM4, periosteal protein, furin, TIMP-1, PAPP-A, dermal proteoglycan, PCK1, arylsulfatase A, CD99, CA2, PRDX4, transferrin, DCR3, GP73, LAIR2, ULBP-4, optical proteoglycan, TIMP-2, TFPI, SOX2, SLITRK5, FAP, spinal cord protein, ENPP-2, CD97, CTACK, integrin α1, EXTL3, IL-18, BPa, PD-L2, PSMA, IL-20Ra, Glyoxalase II, Trypsin I, IGF-2R, ADAMTS L1-1, Erythropoietin, Convolutional D1, DNMT3A, BCL-2, CL-P1, Hepatocyte-B3, FABP6, CHI3L1, FCRLS, TFF3, Nephlebotomycin, DPPII, cIAP-1, PDGF Rb, Pentanoic Acid 3, Angiotensinogen, Follicle-Stapressin, CF VII, Persephin, TRAIL R1, THAP11, CD200, CLEC-2, AMIGO, IGFBP-5, PON1, SOX7, GALNT10, Lactone, Granulosin Progenitor, PCSK2, GKN1, IL-18, Enkephalin, Stabilin-2, IL-17 RD, albumin, follicle-stimulating protein 1, MMP-10, FKBP51, LRRC4, Pref-1, galactoglobin-1, troponin C, UNC5H3, FLRT2, CD314, brain signaling protein 6B, cytokinin-4, CD27 ligand, IL-20 Rβ, brain signaling protein 6A, TSK, cytokeratin-8, CHST3, Mcl-1, DPPIV, SREC-II, norin, JAM-C, Bcl-10, Wnt-4, LSECtin, Kell, TNF RI, PTP1B, htPAPP-A, IDO, PDGF-CC, Glycopropyl peptide, Activator Protein A, TLR2, SCCA2, FABP1, eNOS, SHP-1, ICOS, C1qTNF9, MMP-1, TC-PTP, IL-24, gp130, C-myc, LILRB4, BMP-2, MIA, CD34, CD63, CD9, CD81, IFNab R2, Phosphatidylinositol Proteoglycan 2, MSP R, DSCAM, Membrane-type Serine Protease, KIR2DL3, CD30, Salivary Agglutinin-10, CLEC-1, TPP1, Ubiquitin+1, ANGPTL4, TWEAK R, Nestin-1, CD2, Kallikrein 1, TSLP R, LAMP1, TROY, VCAM-1, salivary agglutinin-11, S100A1, PAR1, thyroid peroxidase, aminopeptidase P2, IL-1 RI, ADAMS, OSM R β, platelet-reactive protein-2, SMPD1, B2M, MFRP, LRP-6, ST3GAL1, NCAM-1 (CD56), granzyme B, lipoconazole, IL-22BP, TPST2, PD-ECGF, LH, LEDGF, Cyr61, ULBP-3, IFNb, THSD1, FGF-23, LAMA4, lipoprotein, AIF, SorCS2, SULT2A1, CD39L2, insulin R, HIF-1α, OX40 ligand, Pax3, UCH-L3, cMASP3, Langerin, desmin, SOX9, ST6GAL1, MEP1B, CD99-L2, conglomerate A4, brain signaling protein 4D, ROBO2, PDX-1, APRIL, neuronal rank protein, transmembrane protein-2 with ring structure, EMMPRIN, activating protein RIB, neuroligand 2, epithelial regulatory protein, CASA, MMP-12, GALNT2, CEACAM-5, VEGF R1, DSPG3, SorCS1, extracellular matrix protein-2, sFRP-3, p53, EphB3, NCK1, brain signaling protein 7A, NKp80, prolactin, cysteine ​​agonist protein B, Sirtuin 1, FGF-16, FGF R5, NQO-1, Brain signaling protein 6D, FGF-3, GATA-4, VAP-A, CHST2, Pregnancy-associated plasma protein-2, Cohesin-3, Serpentin-1, AKR1C4, Oligosin-2, Osteoadhesin, NKp44, Thyroglobulin, IL-21R, Chemokines, EphA1, CD48, MICB, FGF-5, TRANCE, CES2, ULBP-1, Integrin α 5. VAMP-2, FLRG, Ret metaphase factor, CD73, TRAP, proGRP, granzyme H, PRX2, p2'7, salivary lectin-6, dendritic cell-associated C-type lectin-1, CD51, Notch-1, calreticulin, DR3, DCTN1, CDC25B, bone activator, ACE, CA125, HAO-1, ​​PSMA1, FCRLB, BMP-9, CRIM1, LIF, SPINK1, EphB6, RGM-B, HS3ST1, ROR1, CMG-2, 4-1BB ligand, L1CAM-2, p63, cathepsin V, testosterone-2, phosphatidylinositol proteoglycan 5, CD6, salivary lectin-2, asparagine endopeptidase, PRELP, CES1, TAZ, NSE, TECK, HTRA2, HIF-1 β, TAFA1, podocyte protein, RalA, CRELD2, GRAP2, SP-D, BID, GFRα-2, Notch-3, VEGF R3, DLL4, TGFb2, LIGHT, XIAP, ST8SIA1, cathepsin L, 6-Ckine, MIS RII, kallikrein 5, TGM3, FCAR, contactin-2, CD83, IL-1 R3, SALM4, GBA3, ROBO4, OSCAR, VEGF, IGSF3, disaccharide proteoglycan, neurodevelopmental factor, ILT4, uPAR, Axl, WIF-1, IL-7 Rα, GPR56, CEACAM-3, MCEMP1, FABP2, plexin B3, MEPE, activator RIIA, ANG-2, Cochlin, presenilin 1, NPTXR, SLAM, COMT, SPHK1, RBP4, stalkin-1, GUSB, nestin-2, IL-17F, SR-AI, TAFA2, N-cadherin, IL-17B, IL-17RC, MIP-3b, cysteine ​​protease C, cysteine ​​protease D, AMSH, FcERI, CLEC10A, HGF R, ANG-1, prolactin R, FGF-20, CD28, Nogo-A, HSD17B1, IL-19, intestinal peptidase, cathepsin E, TSLP, TCN2, GDF-15, epidermal morphogenetics, GRKS, PD-1, serine protease inhibitor A4, ADAM23, NOV, galactoglobulin-2, neuronal surface protein 3β, TLR3, Sirtuin 2, Numb, IL-28 Rα, IL-33, Lin28, FCRL1, KLF4, NKp30, lymphocyte chemokine, cysteine ​​protease protein SN, JAM-A, calreticulin-2, ErbB4, BMP-8, IL-27 Ra, Fas, IL-4 Ra, kallikrein 14, extracellular matrix protein-3, Oligo2, kallikrein 12, CA13, IL-9, stalk protein-3, MPIF-1, cysteine ​​protease protein S, ADA, IL-2 Rb, GFR α-1, Smad4, ICAM-1, MEF2C, TREM-1, L-selectin, transmembrane serine protease, CD42b, MCSF, RANK, CHST4, CA8, FCRL3, ASAH2, CF XIV, PYY, HGF, I-TAC, brain signaling protein 4C, SorCS3, Tie-1, IL-31 RA, Arginase 1, POGLUT1, IL-1ra, Flatfoot protein, TIM-3, CREG, CD300f, uPA, EphA2, LLRTM4, LIMPII, Tenosynovin R, CPE, PECAM-1, DNAM-1, DKK-1, OPG, CPB1, TSH, MMP-2, Salivary lectin-9, ICAM-3, Cysteine ​​protease inhibitor SA, Galactohemagglutinin-4, Pepsinogen II, Desmosome core protein-3, Stalk protein-4, SCF, Serine protease inhibitor A5, PTH, FGF-19, MSP, IL-28A, FGF-12, METAP2, ASAHL, EDIL3, NTAL, EGF R, TAFAS, Galactohemagglutinin-9, vWF-A2, TACE, Activator protein RIM, Cathepsin S, LDLR, BMPR-IA, OX40, IL-13 R2, B7-H4, MMP-13, ANGPTL7, TRAIL R4, IGSF4B, Sirtuin 5, PEAR1, SH2D1A, Cerberus1, GDF-11, Nrf2, TROP-2, NUDTS, ROR2, EphB4, phosphatidylinositol proteoglycan 1, LAP (TGFb1), Gash, contactin-1, IL-27, UNC5H4, ICAM-2, MBL, HS3ST3B1, RCOR1, IL-10 Rb, XEDAR, IL-22, PILR-α, NRG1-131, FABP4, RGM-A, RELT, TrkC, CSa, SREC-I, neural epithelial stem cell protein, TPO, ErbB3, Kirrel3, FLRT1, galactoglobulin-3, CXCL16, JAM-B, DR6, Nogo receptor, TLR4, VEGF R2, Tie-2, IL-15 R, Caspr2, LTbR, LAMP, ALCAM, GLP-1, NG2, IL-22 Rα1, AMIGO2, HCC-1, TFPI-2, ULBP-2, desmosome core protein 2, agglutinin, synaptic fusion protein 4, VAMP-1, stalkin-2, FGF-21, Flt-3, GFAP, TIM-1, inhibin A, cadherin-4, PIGF-2, neurogranulin, HE4, IL-23 R, galactoglobulin-7, GALNT3, GITR L, CD14, R-vertebral protein 2, CK19, cardiotrophin-1, TREML1, HAPLN1, CD27, ANG-4, salivary immunoglobulin-7, CD155, VEGF-C, TNF RII, PGRP-S, SDF-1a, PDGF-AB, GPVI, CD40, SCF R, platelet-reactive protein-5, IL-1 RII, neurofeedin-2, cadherin-13, E-selectin, GITR, WISP-1, renin, AgRP, MDL-1, ROBO3, RANTES, endothelial cell-specific molecules, particulate lysin, hCGb, mesothelin, TLR1, TRAIL, MOG, DDR1, NGF R, TRAIL R3, trypsin 3, ARSB, LIF Rα, BAFF R, CD157, Granulase A, 2B4, ESAM, IL-1R4, CXCL14, IL-31, SIRP α, Urinary Modulatory Protein, CTRC, CEACAM-1, TARC, MIP-3a, SDF-1b, NKp46, MCP-3, IL-32 α, TGFb3FOLR2, CD58, IL-23, CD36, TNFb, Shh-N, fibrinogen-1, Reg4, ILT2, Mer, TREM-2, Flt-3L, CDS, IL-6, CD229, Insulin, Synaptic Fusion Protein 6, GRO, Bcl-w, Lipocrine-2, PDGF-AA, IL-2 Ra, Angiopoietin, LYVE-1, CD4, RAGE, CDNF, Short Proteoglycan, NAP-2, PU.1, EDAR, ADAMTS13, Kynurenase, PTH1R, IFN-γ R1, CrkL, B7-1, PARC, Draxin, VE-cadherin, procalcitonin, SOX15, kallikrein 11, BCMA, dendritic cell-associated C-lectin-2, EpCAM, HCC-4, TGFa, IP-10, BLAME, CILP-1, PIGF, LOX-1, MCP-2, resistin, HVEM, ENPP-7, cohesin-4, IL-2 Rg, MICA, dopa decarboxylase, NPDC-1, MCP-4, EG-VEGF, glycoprotein V, brain signaling protein 4G, IL-12p40, total PSA, IL-15, MAP1D, C1q, TNF4, Dtk, endothelial glycoprotein, ENA-78, Reg3A, MIP-1b, FGF-17, IL-6R, IL-8, galactolectin-8, CA4, cysteine ​​protease protein EM, FUT8, B7-H3, GCP-2, CD40L, MDC, 4-1BB, HO-1, SOST, S100A13, kallikrein 7, and IL-13.

[0146] The nucleic acid content of the therapeutic product was determined, and the following nucleic acids were found: hsa-let-7a-5p, hsa-let-7b-5p, hsa-let-7c-5p, hsa-let-7d-3p, hsa-let-7e-5p, hsa-let-7g-5p, hsa-let-7i, hsa-let-7i-5p, hsa-miR-100-5p, hsa-miR-103a-3p, hsa-miR-106a-5p, hsa-miR-106b-5p, hsa-mir-10b, hsa-miR-10b-5p, hsa-mir-1246, hsa-miR-1246, hsa-miR-125a-5p, hsa-miR-125b-5p, hsa-miR-130a-3p, hsa-mir-130b, hsa-miR-130b-3p, hsa-miR-132-3p, hsa-miR-136-5p, hsa-miR-138-5p, hsa-miR-139-5p, hsa-mir-140, hsa-miR-140-3p, hsa-miR-145-5p, hsa-mir-146a, hsa-miR-146a- 5p, hsa-miR-148a-3p, hsa-miR-152-3p, hsa-miR-15a-5p, hsa-miR-15b-5p, hsa-mir-16-1, hsa-mir-16-2, hsa-miR-16-5p, hsa-miR-17-5p, hsa-miR-181a-5p, hsa-miR-191-5p, hsa-miR-193a-5p, hsa-miR-193b-3p, hsa-miR-197-3p, hsa-miR-199a-3p, hsa-miR-199a-5p, hsa-miR-199b-5p, hsa-miR-19a-3p, hsa-miR-19b-3p, hsa-miR-20a-5p, hsa-mir-203a, hsa-miR-203a-3p, hsa-miR-214-3p, hsa-mir-21, hsa-miR-21-3p, hsa-miR-21-5p, hsa-mir-221, hsa-miR-221-3p, hsa-mir-222, hsa-miR-222-3p, hsa-miR-22-3p, hsa-miR-23a-3p, hsa-miR-23b-3p, hsa-mir-24-1, hsa-mir-24-2, hsa-miR-24-3p, hsa-mir-25, hsa-miR-25-3p,hsa-miR-26a-5p, hsa-miR-27a-3p, hsa-mir-27b, hsa-miR-27b-3p, hsa-miR-29a-3p, hsa-m iR-29c-3p, hsa-miR-30a-5p, hsa-miR-30a-5p, hsa-miR-30b-5p, hsa-miR-30c-5p, hsa-mir -30d, hsa-miR-30d-5p, hsa-mir-30e, hsa-miR-30e-5p, hsa-miR-31-3p, hsa-miR-31-5p, hs a-miR-320a, hsa-miR-342-3p, hsa-miR-345-5p, hsa-miR-34a-5p, hsa-miR-361-5p, hsa-mi R-376a-3p, hsa-miR-376c-3p, hsa-miR-423-3p, hsa-miR-423-5p, hsa-miR-424-5p, hsa-mi R-484, hsa-mir-486-1, hsa-mir-486-2, hsa-miR-486-5p, hsa-miR-570-3p, hsa-miR-574-3 p, hsa-miR-663a, hsa-miR-874-3p, hsa-mir-92a-1, hsa-mir-92a-2, hsa-miR-92a-3p, hsa- miR-92b-3p, hsa-mir-93, hsa-miR-93-5p, hsa-miR-940, hsa-miR-99a-5p and hsa-miR-99b-5p. ,

[0147] Example 2: Production of the therapeutic composition The MSC secretome therapeutic composition was prepared by the following method: Human bone marrow-derived MSCs were cultured in culture dishes with growth medium to expand the MSC population. The growth medium was then removed, and the cells were washed with PBS. The MSCs were then cultured under hypoxic conditions in a glucose-reduced medium with a pH less than 7.0. The conditioned medium was then collected and percolated, followed by sterilization. The production of the therapeutic product was carried out in accordance with current good manufacturing practices and current good tissue practices.

[0148] The tetraspan membrane protein profile of extracellular vesicles present in the therapeutic composition was determined, and it was found that more than 95% of the extracellular vesicles present in the therapeutic composition were CD63. + CD9 - CD81 - .

[0149] The protein contents of the therapeutic product were identified, and the following proteins were found: ferritin, IGFBP-4 (insulin-like growth factor binding protein-4), IL-1 R6 (interleukin-1 receptor 6), LAMP2 (lysosome-associated membrane glycoprotein 2), bIG-H3 (transforming growth factor-β-inducible protein ig-h3), GPR115 (adhesion G protein-coupled receptor F4), CD63 antigen, CD109 antigen, serine protease inhibitor F1 (pigment epithelium-derived factor), IGFBP-6 (insulin-like growth factor binding protein-6), HS3ST4 (heparanol sulfate glucosamine 3-O-sulfotransferase 4), OPN (osteopontin), and PAI-1 (plasminogen activator inhibitor-1 or sERPINE). 1) Cathepsin B, IGFBP-2 (insulin-like growth factor binding protein-2), brain signaling protein 6C, IGF-2 (insulin-like growth factor-2), sorting protein, serine protease inhibitor B6, Dkk-3 (Dickkopf-related protein 3), CNTF (ciliary neurotrophic factor), TSP-1 (thromboretin-1), GM-CSF Ra (granulocyte-macrophage colony-stimulating factor receptor subunit α), coagulation regulatory protein, endoglucan, (podocyte protein-like protein 2) IGFBP-3 (insulin-like binding protein-3), RGM-C (hepcidin regulatory protein), PF4 (platelet factor 4), MIF (macrophage migration inhibitory factor), TGM4 (protein-glutamine-γ-glutamyltransferase 4), periosteal protein, furin protease, TIMP-1 (MMP tissue inhibitor 1), gypsum glycan, PCK1 (cytosol-type phosphoenolpyruvate carboxykinase), CD9 antigen, CD99 antigen, CA2 (carbonic anhydrase 2), PRDX4 (peroxide reductase-4), transferrin, DcR3 (tumor necrosis factor receptor superfamily member 6B), GP73 (Golgi membrane protein 1), CD81 antigen, phytoglucan, and TIMP-2 (MMP tissue inhibitor 2).

[0150] The nucleic acid inclusions of the therapeutic product were identified, and the following nucleic acids were found to be present: hsa-miR-125b-5p, hsa-miR-145-5p, hsa-miR-191-5p, hsa-miR-199a-3p, hsa-miR-21-5p, hsa-miR-221-3p, hsa-miR-222-3p, hsa-miR-22-3p, and hsa-miR-23a-3p. , hsa-miR-23b-3p, hsa-miR-27a-3p, hsa-miR-27b-3p, hsa-miR-29a-3p, hsa-miR-29c-3p, hsa- miR-31-5p, hsa-miR-320a, hsa-miR-34a-5p, hsa-miR-423-3p, hsa-miR-424-5p and hsa-miR-940.

[0151] Example 3: Treatment in Humans The study protocol was approved by the Institute of Regenerative and Cellular Medicine. Informed consent was obtained from all enrolled participants. The study cohort initially consisted of eight women (aged 30 to 70 years, of any race / ethnicity) from the principal investigator's (PI) medical practice who had a diagnosis of fibrotic radiated breast tissue and breast cancer. The PI determined suitable participants after they met the following inclusion and exclusion criteria. The planned number of participants in the study was 10. Of the eight enrolled participants, six completed the study; two were lost to follow-up due to relocation from the PI's location and refusal of a second biopsy.

[0152] Inclusion criteria All candidates in this study were eligible to be enrolled only if they met all of the following inclusion criteria: 1. Voluntarily sign the approved informed consent form. 2. Women aged 30 to 70 3. Women with irradiated breast skin due to breast reconstruction after mastectomy. 4. Agree not to become pregnant during the research period. 5. The principal investigator has the final authority to determine suitable research subjects who have met the first four criteria. Exclusion criteria Candidates who meet any of the following exclusion criteria during the research process are ineligible for enrollment in the study: 1. The subjects were unable to comply with the study protocol's follow-up procedures and visits.

[0153] 2. Subjects have major risk factors, such as a history of narcotic abuse, lack of family support, unemployment, a history of physical or psychological abuse, or serious medical comorbidities.

[0154] 3. Individuals with any other autoimmune disease.

[0155] 4. Any object that the principal investigator deems unsuitable as a research subject.

[0156] This IP is produced under cGMP conditions and provides a consistent product with extensive characterization capabilities, including advanced particle analysis, proteomics assessment, and USP. <71> Aseptic technique was maintained, along with comprehensive identification and quantification of cytokines and growth factors. Subjects underwent an initial 5 mm irradiated breast skin biopsy, followed by an intradermal injection of 5 mL of IP in the same 4x4 cm area under local anesthesia. A second 5 mm biopsy was performed on the irradiated and treated breast skin 9 months later to assess changes in the area. Primary safety outcome measures included daily monitoring of any adverse events and complications reported by subjects, whether directly or indirectly related to IP treatment. Direct subject follow-up consultations were scheduled at 2, 3, 6, 12, 24, and 36 weeks post-treatment to monitor for safety events. As an example, the IP was a product of Example 2.

[0157] Secondary efficacy assessments included determining changes in the stiffness or induration properties of the irradiated breast skin using the SkinFibroMeter (Delfin Technologies). The SkinFibroMeter utilizes a pressure head that is briefly pressed onto the skin. When external force is applied, the skin resists changes in shape, and thus the skin's response to short-term load indicates its stiffness. Stiffness readings are quantitative indicators of palpable tissue induration both before treatment and at a 9-month follow-up period.

[0158] Efficacy testing also included histopathological analysis of skin biopsies by an independent dermatopathologist. Measurements included improvements in dermal collagen, elastin, and glycosaminoglycans (GAGs), based on initial skin biopsies of irradiated skin to assess abnormal skin structure, elastin, collagen, epithelial cell death, dermal / epidermal junction structure, melanocyte spikes, and vascular distribution. Specimens were embedded entirely in paraffin, and three sections were taken and stained: one with hematoxylin and eosin (H&E), one with Miller's elastomer van Gieson stain (to assess elastin), and one with Sirius red stain (to assess collagen). Additional sections were taken as needed as test and negative control sections for immunohistochemical (IHC) labeling. Sections designated for immunohistochemistry were labeled for type I collagen and CD31 (an anti-human antibody specific to human endothelial cells). Human placental sections were used as positive control tissues for both CD31 and type I collagen labeling. Dermatopathologists provided independent semi-quantitative and qualitative analyses of biopsies obtained before and 9 months after treatment. Microscopic analysis of all sections was performed under treatment-blinded conditions to assess fibrosis, necrosis, clear dermal / epidermal junction, elastin, type I collagen, and inflammation using a pre-defined semi-quantitative scoring system (Table 2). Qualitative analysis further evaluated the sections microscopically. Photomicrographs were taken to illustrate the findings. Comparative analyses of two biopsies for each subject were also performed.

[0159] Table 2 below shows the semi-quantitative scoring system used for histopathology (a: macrophages, giant cells (GC), lymphocytes, plasma cells, and heterophile granulocytes; b: PHF = per high power field).

[0160] Table 2 result Security Except for subjects who did not complete the study due to personal reasons, there were no adverse events in any part of this study. No evidence of infection was found in any biopsy samples from the subjects studied.

[0161] effect Skin stiffness was measured in 8 subjects before treatment, and post-treatment readings were obtained from 6 of these 8 subjects. Figure 1A-1B The average SkinFibroMeter reading decreased by 27% (from 0.16 N to 0.12 N), with the greatest effect (36% reduction) seen in the three subjects with the highest induration before treatment (from 0.22 N to 0.14 N).

[0162] The tissue samples were semi-quantitative and qualitatively analyzed by independent histopathologists. Figure 2 The image shows semi-quantitative histopathological scores for five specific tissue parameters from biopsies taken from six subjects before and after treatment. Figure 3 The inflammatory cell subsets observed in skin biopsies were summarized. A trend toward improvement in mean scores for fibrosis, necrosis, and elastin was observed post-treatment, but these results were not statistically significant. Improvements in fibrosis, necrosis, and elastin scores were observed in four, three, and four subjects, respectively, and an improvement in type I collagen score was observed in one subject. One different subject in each category showed a deterioration in fibrosis, elastin, and type I collagen scores. No significant changes in the scores of inflammatory cell subsets in the biopsy tissue were observed post-treatment. Figure 3 ).

[0163] Qualitative analysis of the three subjects (subjects 3, 5, and 6) with the highest SkinFibroMeter scores before treatment (these subjects also showed the largest percentage improvement in that score) revealed improvements in fibrosis and necrosis scores, as well as the quality and distribution of elastin fibers. For the remaining three subjects (subjects 1, 2, and 4) (who had relatively low SkinFibroMeter scores before treatment and showed little to almost no improvement in their scores after treatment), a greater amount of elastin was found in two of the three subjects, with longer and more evenly distributed fibers. However, it is noted that these qualitative changes were relatively small and susceptible to variation due to the small sample size.

[0164] Figure 1A-1B The effect of treatment on the stiffness of irradiated skin is shown. SkinFibroMeter induration measurements in Newtons (N) were obtained from the affected skin sites of subjects before and after treatment. Figure 1A The thick bars represent the sample average, and the whiskers represent the 95% confidence interval. Figure 1B : Plot the results showing the hardening measurements for each object.

[0165] Figure 2 Histopathological results (H&E staining) of skin biopsy samples obtained immediately before treatment and 9 months after treatment are shown. The top row shows the semi-quantitative score for each subject, with mean (solid bar), 95% confidence interval (upper and lower whisker lines), and the results of t-test analysis (p). p < 0.05 was considered statistically significant; ns = not significant. The bottom row shows the progression of the score for each subject after treatment, and results may overlap between different subjects.

[0166] Figure 3The quantification of inflammation by immune cell type (H&E staining) in skin biopsy samples obtained immediately before treatment and 9 months after treatment is shown. The top row shows the semi-quantitative score for each subject, with mean (solid bar), 95% confidence interval (upper and lower whisker lines), and results of t-test analysis (p, ns). p < 0.05 was considered statistically significant; ns = not significant. The bottom row shows the progression of the score for each subject after treatment, and results may overlap between different subjects. In summary, in this prospective study, six breast cancer patients with RFS were treated with a single intradermal injection of the hBM-MSC EV formulation, and safety events were monitored over the following 9 months. Skin induration was quantified using SkinFibroMeter, and skin biopsies were obtained before treatment and 9 months after treatment for histopathological comparison. Injections were safe throughout the study. hBM-MSCEV improved fibrosis, necrosis, and elastin levels in irradiated skin.

Claims

1. A method of treating irradiated skin in a subject in need, the method comprising administering to the subject a composition comprising one or more extracellular vesicles (EVs); wherein the one or more EVs comprise hsa-miR-125b-5p, hsa-miR-145-5p, hsa-miR-191-5p, hsa-miR-199a-3p, hsa-miR-21-5p, hsa-miR-221-3p, hsa-miR-222-3p, hsa-miR-22- 3p, hsa-miR-23a-3p, hsa-miR-23b-3p, hsa-miR-27a-3p, hsa-miR-27b-3p, hsa-miR-29a-3p, hsa-miR-29c-3p, hsa-miR-31-5p, hsa-miR-320a, hsa-miR-34a-5p, hsa-miR-423-3p, hsa-miR-424-5p, or hsa-miR-940, or a combination of two or more thereof.

2. A method of treating irradiated skin in a subject in need, the method comprising administering to the subject a composition comprising one or more extracellular vesicles (EVs); wherein at least 80% of the EVs are CD63+, CD9-, or CD81-.

3. A method of treating irradiated skin in a subject in need, the method comprising administering to the subject a composition comprising: ferritin, IGFBP-4 (insulin-like growth factor binding protein-4), IL-1 R6 (interleukin-1 receptor 6), LAMP2 (lysosome-associated membrane glycoprotein 2), bIG-H3 (transforming growth factor-β-inducible protein ig-h3), GPR115 (adhesion G protein-coupled receptor F4), CD63 antigen, CD109 antigen, serine protease inhibitor F1 (pigment epithelium-derived factor), IGFBP-6 (insulin-like growth factor binding protein-6), HS3ST4 (heparanol sulfate glucosamine 3-O-sulfotransferase 4), OPN (osteopontin), PAI-1 (plasminogen activator inhibitor-1 or sERPINE). 1) Cathepsin B, IGFBP-2 (insulin-like growth factor binding protein-2), brain signaling protein 6C, IGF-2 (insulin-like growth factor-2), sorting protein, serine protease inhibitor B6, Dkk-3 (Dickkopf-related protein 3), CNTF (ciliary neurotrophic factor), TSP-1 (thromboretin-1), GM-CSF Ra (granulocyte-macrophage colony-stimulating factor receptor subunit α), coagulation regulatory protein, endosaccharide, (podocyte protein-like protein 2) IGFBP-3 (insulin-like binding protein-3), RGM-C (hepcidin regulatory protein), PF4 (platelet factor 4), MIF (macrophage migration inhibitory factor), TGM4 (protein-glutamine-γ-glutamyltransferase 4), periosteal protein, furin protease, TIMP-1 (MMP tissue inhibitor 1), gypsum proteoglycan, PCK1 (cytosol-type phosphoenolpyruvate carboxykinase), CD9 antigen, CD99 antigen, CA2 (carbonic anhydrase 2), PRDX4 (peroxide reductase-4), transferrin, DcR3 (tumor necrosis factor receptor superfamily member 6B), GP73 (Golgi membrane protein 1), CD81 antigen, luminescent proteoglycan, or TIMP-2 (MMP tissue inhibitor 2), or a combination of two or more thereof.

4. The method of claim 2, wherein the one or more EVs comprise hsa-miR-125b-5p, hsa-miR-145-5p, hsa-miR-191-5p, hsa-miR-199a-3p, hsa-miR-21-5p, hsa-miR-221-3p, hsa-miR-222-3p, hsa-miR-22-3p, hsa-miR-23a-3p, hsa- miR-23b-3p, hsa-miR-27a-3p, hsa-miR-27b-3p, hsa-miR-29a-3p, hsa-miR-29c-3p, hsa-miR-31-5p, hsa-miR-320a, hsa-miR-34a-5p, hsa-miR-423-3p, hsa-miR-424-5p, or hsa-miR-940, or a combination of two or more thereof.

5. The method of claim 1 or 2, wherein the composition comprises ferritin, IGFBP-4 (insulin-like growth factor binding protein-4), IL-1 R6 (interleukin-1 receptor 6), LAMP2 (lysosome-associated membrane glycoprotein 2), bIG-H3 (transforming growth factor-β inducible protein ig-h3), GPR115 (adhesion G protein-coupled receptor F4), CD63 antigen, CD109 antigen, serine protease inhibitor F1 (pigment epithelial-derived factor), IGFBP-6 (insulin-like growth factor binding protein-6), HS3ST4 (heparanol sulfate glucosamine 3-O-sulfotransferase 4), OPN (osteopontin), PAI-1 (plasminogen activator inhibitor-1 or sERPINE). 1) Cathepsin B, IGFBP-2 (insulin-like growth factor binding protein-2), brain signaling protein 6C, IGF-2 (insulin-like growth factor-2), sorting protein, serine protease inhibitor B6, Dkk-3 (Dickkopf-related protein 3), CNTF (ciliary neurotrophic factor), TSP-1 (thromboretin-1), GM-CSF Ra (granulocyte-macrophage colony-stimulating factor receptor subunit α), coagulation regulatory protein, endosaccharide, (podocyte protein-like protein 2) IGFBP-3 (insulin-like binding protein-3), RGM-C (hepcidin regulatory protein), PF4 (platelet factor 4), MIF (macrophage migration inhibitory factor), TGM4 (protein-glutamine-γ-glutamyltransferase 4), periosteal protein, furin protease, TIMP-1 (MMP tissue inhibitor 1), gypsum proteoglycan, PCK1 (cytosol-type phosphoenolpyruvate carboxykinase), CD9 antigen, CD99 antigen, CA2 (carbonic anhydrase 2), PRDX4 (peroxide reductase-4), transferrin, DcR3 (tumor necrosis factor receptor superfamily member 6B), GP73 (Golgi membrane protein 1), CD81 antigen, luminescent proteoglycan, or TIMP-2 (MMP tissue inhibitor 2), or a combination of two or more thereof.

6. The method of any one of claims 1-5, wherein the subject suffers from radiation fibrosis syndrome (RFS) or radiation-induced fibrosis (RIF).

7. The method of any one of claims 1-6, wherein the irradiated skin has been subjected to ionizing radiation.

8. The method of any one of claims 1-7, wherein the irradiated skin exhibits one or more of the following: fibrosis, hardening, thickening, induration, inflammation, skin hardness, elastin content, and / or collagen content.

9. The method of any one of claims 1-8, wherein the subject has been diagnosed with cancer.

10. The method of claim 9, wherein the subject has been diagnosed with breast cancer.

11. The method of any one of claims 1-10, wherein the object has fibrotic, irradiated mammary tissue.

12. The method of any one of claims 1-11, wherein the subject experiences improvement after treatment in one or more of the following skin characteristics: fibrosis, hardening, thickening, induration, inflammation, skin firmness, elastin content and / or collagen content, and combinations thereof.

13. The method of any one of claims 1-12, wherein the dose of the composition administered to the object is a cell equivalent dose of 700,000 to 7,000,000 cells / kg.

14. The method of any one of claims 1-13, wherein administration includes intravenous administration.

15. The method of any one of claims 1-14, wherein the composition is prepared by a method comprising the steps of: (a) culturing bone marrow mesenchymal stem cells (BM-MSCs) under conditions of: (i) oxygen tension below 5%; and (ii) a medium with a pH below 7; (b) harvesting the MSC conditioned medium; and (c) formulating the MSC conditioned medium to produce the composition.

16. The method of any one of claims 1-15, the method comprising preparing the composition prior to the administration, wherein the preparation of the composition is carried out by a method comprising the steps of: (a) culturing bone marrow mesenchymal stem cells (BM-MSCs) under conditions of: (i) oxygen tension below 5%; and (ii) a medium with a pH below 7; (b) harvesting the MSC conditioned medium; and (c) preparing the MSC conditioned medium to produce the composition.

17. The method of claim 15 or 16, wherein the culture medium is serum-free.

18. The method of any one of claims 15-17, wherein the culture medium has a glucose concentration of less than 4.5 g / L.

19. The method of any one of claims 15-18, wherein preparing the MSC conditioned medium comprises replacing the conditioned medium with a pharmaceutically acceptable formulation.

20. The method of claim 19, wherein the pharmaceutically acceptable formulation comprises saline solution.

21. The method of any one of claims 1, 2, or 4, wherein the composition comprises at least 6 × 10 10 Up to 8 × 10 10 One extracellular vesicle per ml, and administered at doses of 10, 11, 12, 13, 14, 15, 16, 17, 18, 19 or 20 ml.