Peptides for therapeutic use in dermatology

The 14-amino acid NGF1-14 peptide provides a safer and more effective treatment for skin discoloration and denervation disorders by promoting melanin production and nerve innervation, outperforming full-length NGF in efficacy and tolerability.

JP7854982B2Active Publication Date: 2026-05-07DOMPE FARMACEUTICI SPA
View PDF 4 Cites 0 Cited by

Patent Information

Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
DOMPE FARMACEUTICI SPA
Filing Date
2021-08-19
Publication Date
2026-05-07

AI Technical Summary

Technical Problem

Current treatments for skin discoloration and denervation disorders, such as vitiligo and herpes, suffer from significant side effects and limited efficacy, particularly with therapies like corticosteroids and narrowband phototherapy.

Method used

The use of a 14-amino acid NGF1-14 peptide, or derivatives with at least 85-95% sequence identity, for topical application in pharmaceutical compositions to stimulate melanin production and nerve innervation, avoiding the need for photoactivation therapy.

Benefits of technology

The NGF1-14 peptide achieves more uniform skin repigmentation and increased nerve terminal density compared to full-length NGF, with improved tolerability and reduced side effects, offering a safer and more effective treatment for skin discoloration and denervation disorders.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure 0007854982000005
    Figure 0007854982000005
  • Figure 0007854982000001
    Figure 0007854982000001
  • Figure 0007854982000002
    Figure 0007854982000002
Patent Text Reader

Abstract

The present invention relates to a peptide of 14 amino acids having SEQ ID NO: 1 or a peptide of up to 16 amino acids having a sequence that has at least 85%, preferably at least 90%, preferably at least 95% identity with SEQ ID NO: 1, or derivatives and / or salts thereof, which are capable of promoting skin pigmentation and / or innervation in abnormal skin discoloration and / or denervation diseases. Pharmaceutical compositions comprising such peptides and at least one pharmaceutically acceptable excipient are a further subject of the present invention.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to peptides capable of promoting skin pigmentation and / or innervation in skin dyschromia and / or de-innervation diseases. Pharmaceutical compositions containing such peptides and at least one pharmaceutically acceptable excipient are a further object of the present invention.

Background Art

[0002] Nerve growth factor (NGF) is a neurotrophic and neuropeptide factor mainly involved in the regulation of the growth, maintenance, proliferation and survival of specific target neurons.

[0003] NGF was discovered by Professor Rita Levi-Montalcini of the Zoology Institute of Washington University in St. Louis (Non-Patent Document 1). Since NGF can affect the development and protection of the biological functions of neurons and their regeneration, her discovery has shown remarkable progress in the study of the mechanisms of nerve cell growth and differentiation.

[0004] Numerous in vitro and in vivo studies have demonstrated the pathophysiological importance of NGF in the prevention of nerve injuries of surgical, chemical, mechanical and ischemic nature, and it has become an ideal candidate for the treatment of various conditions of the central and peripheral nervous systems (Non-Patent Documents 2, Non-Patent Document 3). In fact, over the years, clinical trials have been conducted on patients suffering from Parkinson's disease and Alzheimer's disease by intracerebral administration of mouse NGF (for example, Non-Patent Document 4). The results of these studies have supported the observations obtained in animal models and have shown that there are no side effects that can occur after administration of mouse NGF. This feature was later confirmed with human recombinant NGF (Non-Patent Document 5).

[0005] Immune cells, nerve cells and skin cells play important roles in the onset of various skin pathologies related to abnormal discoloration, such as psoriasis, atopic dermatitis, vitiligo, herpes, etc.

[0006] NGF receptors are expressed on sensory nerves, keratinocytes, melanocytes, fibroblasts, hair follicles, and various immune cells, and play an important role in skin homeostasis.

[0007] Keratinocytes are essential cellular components in both homeostatic and pathophysiological processes in the skin, producing numerous cytokines and being stimulated by various growth factors. NGF mRNA has been shown to be maximal when keratinocytes are in the logarithmic growth phase in vitro (Non-Patent Literature 6).

[0008] In various species of keratinocytes, NGF controls proliferation and differentiation and protects human keratinocytes from apoptosis by activating high-affinity receptors (trkA) to maintain epidermal integrity, while exhibiting known anti-aging and skin regeneration activities (Non-Patent Literature 7).

[0009] In fact, Trka plays a crucial role in activating signaling pathways that promote growth and survival and are also involved in the innervation processes of the skin.

[0010] In melanocytes, survival and dendritic formation increase after UV irradiation by NGF (Non-Patent Literature 8).

[0011] Conventional techniques have shown how controlling NGF can be beneficial in the treatment of both skin diseases associated with abnormal discoloration and diseases associated with denervation, such as viral rashes like herpes and rare syndromes like trigeminal neurotrophic syndrome, which often occur in areas previously affected by herpes zoster.

[0012] Treatment for vitiligo currently relies on therapies with significant side effects (Non-Patent Literature 9). In particular, treatment with corticosteroids, whether topical or oral, cannot be prolonged beyond three weeks. Despite the average quality of the results obtained (more than 75% repigmentation in 63% of cases), even the optimal treatment, represented by narrowband phototherapy (NB-UVB phototherapy), can cause acute undesirable effects such as itching, erythema, burns, and xerosis.

[0013] Patent Document 1 revealed that topical administration of a formulation containing NGF to the skin is effective in enhancing skin color, i.e., increasing pigmentation, in healthy skin not affected by pigment disorders, and similarly, is effective in improving skin conditions including skin depigmentation or hemoglobin deficiency, such as in vitiligo.

[0014] Despite advances in research, the problem of improving the treatment of skin discoloration and skin denervation remains. [Prior art documents] [Patent Documents]

[0015] [Patent Document 1] International Publication No. 2013 / 065078 [Non-patent literature]

[0016] [Non-Patent Document 1] Levi-Montalcini R., Harvey Lect., 60: 217, 1966 [Non-Patent Document 2] Hefti F., J. Neurobiol., 25: 1418, 1994 [Non-Patent Document 3] Fricker J., Lancet, 349:480, 1997 [Non-Patent Document 4] Olson L. et al., J. Neural Transm, (Parkinson's Disease and Dementia Section), 4: 79-95, 1992 [Non-Patent Document 5] Petty BG et al., Annals of Neurology, 36:244-246, 1994 [Non-Patent Document 6] Growth-regulated synthesis and secretion of biologically active nerve growth factor by human keratinocytes.J Biol Chem 1991; 266: 21718-21722 [Non-Patent Document 7] Nerve growth factor: its significance in cutaneous biology. J Invest Dermatol Symp Proc 2: 31-36, 1997 [Non-Patent Document 8] The trk family of receptors mediates nerve growth factor and neurotrophin-3 effects in melanocytes J. Clin. Invest.94: 1550-1562, 1994 [Non-Patent Document 9] Am.J. Clin. Dermatol., 2017, 18:733-744 [Overview of the Initiative] [Problems that the invention aims to solve]

[0017] The applicant has addressed the problem of improving the treatment of abnormal skin discoloration and skin denervation disorders. In particular, the applicant has focused its research on NGF-derived peptides and has found that the NGF1-14 peptide, which has SEQ ID NO: 1, is especially effective in activating melanin production by melanocytes.

Means for Solving the Problem

[0018] As shown in Example 1 of the Examples section, the NGF1-14 peptide tested in vitro in the primary cell culture of normal human melanocytes results in an equivalent increase in melanin content per cell at higher concentrations (2-3 logs) compared to the total NGF protein.

[0019] Surprisingly, with respect to the activity shown in vitro, as shown in Example 2a, the NGF1-14 peptide tested in vivo in a mouse model of human vitiligo shows a more uniform and homogeneous repigmentation than the total protein at the same dose. As shown in Example 2b, the in vivo NGF1-14 peptide surprisingly shows a greater increase in the density of nerve endings at the same dose.

[0020] <​​​​​​​​​

[0023] Accordingly, the first subject of the present invention relates to a 14-amino acid peptide having SEQ ID NO: 1, or a peptide of up to 16 amino acids having a sequence having at least 85%, preferably at least 90%, preferably at least 95%, identity with SEQ ID NO: 1, or derivatives and / or salts thereof, for use in the treatment and / or prevention of abnormal skin discoloration and / or denervation of the skin.

[0024] A second aspect of the present invention relates to a pharmaceutical composition comprising a 14-amino acid peptide having SEQ ID NO: 1, or a peptide of up to 16 amino acids having a sequence having at least 85%, preferably at least 90%, preferably at least 95%, identity with SEQ ID NO: 1, or derivatives and / or salts thereof, and at least one pharmaceutically acceptable excipient, for use in the treatment and / or prevention of abnormal skin discoloration and / or denervation of the skin.

[0025] A third aspect of the present invention relates to a therapeutic method for the treatment and / or prevention of abnormal skin discoloration and / or denervation disorders in persons in need thereof, comprising topical application of an effective amount of a composition comprising a 14-amino acid peptide having SEQ ID NO: 1, or a peptide of up to 16 amino acids having a sequence having at least 85%, preferably at least 90%, preferably at least 95% identity with SEQ ID NO: 1, or derivatives and / or salts thereof, and at least one pharmaceutically acceptable excipient.

[0026] As used herein, the term “effective dose” means, in the context of the judgment of those skilled in the art, an amount of peptide or a composition containing peptide that is sufficient, either independently or in combination, to induce the remarkable benefits encompassing the benefits disclosed herein, but low enough to avoid serious side effects, i.e., to provide a reasonable benefit / risk ratio. The effective dose can vary widely depending on known factors, such as the type of disease, the severity of the disease, the patient’s weight, the dosage form, and the number of doses per day. However, those skilled in the art can determine the optimal dose in simple and conventional ways. [Brief explanation of the drawing]

[0027] [Figure 1] The graph shows the leg retraction latency at 1, 3, 5, and 24 hours after injection in animals treated with physiological saline (black circles, solid lines), NGF1-14 10 μg / 50 μL (white squares), NGF1-14 20 μg / 50 μL (black circles, dashed lines), and rh-NGF 10 μg / 50 μL mL (black triangles). [Modes for carrying out the invention]

[0028] Preferably, in the first embodiment of the present invention, the peptide has a length of 14 amino acids and a sequence of SEQ ID NO: 1 or its derivatives and / or salts.

[0029] Sequence ID 1 according to the present invention is represented by the sequence SSSHPIFHRGEFSV.

[0030] The abbreviations for amino acid sequences used herein conform to the IUPAC-IUB nomenclature shown in Table A below.

[0031] [Table 1]

[0032] The peptides according to the present invention can have at least 85%, at least 90%, and at least 95% identity with SEQ ID NO: 1 when they are optimally aligned. Optimal sequence alignment can be performed using various known methods and computer implementations of known algorithms (e.g., BLAST, TFASTA, BESTFIT, as included in Wisconsin's Genetics Software Package, Release 7.0, Genetics Computer Group, Madison, Wisconsin). The BLAST algorithm can also be used (Altschul et al., Mol. Biol. (1990), 215, 403-410), and its software is available from the National Center for Biotechnology Information (www.ncbi.nlm.nih.gov / ).

[0033] Regarding peptide sequences, "percentage sequence identity" refers to the percentage of identical residues in two sequences. Percentage sequence identity (%SI) is calculated using the following formula. %SI=(nt-nd)×100 / nt In the formula, nt is the number of residues in the base sequence, and nd is the total number of non-identical residues in the comparison sequence when aligned so that the maximum number of amino acids are identical. Therefore, SSSHPIFHRG D The FDFSV sequence will have approximately 92.8% sequence identity with sequence number 1 (nd=1 and nt=14).

[0034] Preferably, in another embodiment relating to the first subject of the present invention, the peptide has a sequence or derivative and / or salt thereof that has a length of up to 16 amino acids and is at least 85%, preferably at least 90%, preferably at least 95%, identical to Sequence ID No. 1, and more preferably, according to such embodiment, the peptide has a length of up to 15 amino acids, more preferably 14 amino acids.

[0035] The amino acid sequence mutations in the peptide containing Sequence ID No. 1 of the present invention include conservative substitutions of amino acids that do not affect peptide activity. Substitutions that can maintain peptide activity are selected based on (a) their effectiveness in maintaining the peptide skeletal structure within the substitution region, such as a three-dimensional foil structure or a helical structure, (b) their effectiveness in maintaining the charge or hydrophobicity of the molecule within the target region, or (c) their effectiveness in maintaining most of the side chain.

[0036] Examples of conservative substitutions belong to the groups of basic amino acids (arginine, lysine, and histidine), acidic amino acids (glutamic acid and aspartic acid), polar amino acids (glutamine and asparagine), hydrophobic amino acids (leucine, isoleucine, valine, and methionine), aromatic amino acids (phenylalanine, tryptophan, and tyrosine), and small amino acids (glycine, alanine, serine, and threonine).

[0037] In general, amino acid substitutions that do not alter specific activity are known in the art of the present invention.

[0038] The most common substitutions are Ala / Ser, Val / Ile, Asp / Glu, Thr / Ser, Ala / Gly, Ala / Thr, Ser / Asn, Ala / Val, Ser / Gly, Tyr / Phe, Ala / Pro, Lys / Arg, Asp / Asn, Leu / Ile, Leu / Val, Ala / Glu, Asp / Gly, and the reverse substitutions. Another example of a conservative substitution is shown in Table C below.

[0039] [Table 2]

[0040] Preferably, according to the first aspect of the present invention, the derivative comprises the N-terminus and / or C-terminus of the peptide chemically modified or protected with an organic compound, more preferably the organic compound is selected from the group consisting of phosphoryl, glycosyl, acyl, alkyl, carboxyl, hydroxyl, biotinyl, ubiquitinyl, and amide groups.

[0041] Depending on the length, the peptides of the present invention can be synthesized by methods well known in the art, for example, by an automated peptide synthesizer, or produced by genetic engineering techniques. For example, a fusion gene encoding a fusion protein containing a fusion partner and the peptide of the present invention can be prepared by genetic engineering and then transformed into a host cell to express the fusion protein. Next, the peptide of the present invention is cleaved and isolated from the fusion protein using a protease or compound to produce the desired peptide. For this purpose, a DNA sequence encoding an amino acid residue that can be cleaved by a protease such as factor Xa or enterokinase, or by a compound such as CNBr or hydroxylamine, can be inserted between the polynucleotides encoding the fusion partner and the peptide of the present invention.

[0042] Preferably, in embodiments relating to the second subject of the present invention, the pharmaceutical composition comprises a peptide having 14 amino acid lengths and Sequence ID No. 1, or a derivative thereof and / or a salt, in a concentration of 10 to 10,000 μg / mL, preferably 100 to 5,000 μg / mL, and more preferably 200 to 4,000 μg / mL.

[0043] Preferably, in another embodiment according to the second subject of the present invention, the pharmaceutical composition comprises a peptide having a length of up to 16 amino acids and a sequence having at least 85%, preferably at least 90%, preferably at least 95%, identity with SEQ ID NO: 1, in a concentration of 10 to 10,000 μg / mL, preferably 100 to 5,000 μg / mL, more preferably 200 to 4,000 μg / mL, or derivatives and / or salts thereof.

[0044] According to a second aspect of the present invention, pharmaceutical compositions may contain a variety of other optional components suitable for making such compositions more pharmaceutically acceptable or for providing them with further advantages of use. Such conventional optional components are well known to those skilled in the art. These include all pharmaceutically acceptable components, such as those described, for example, Rowe et al., “Handbook of Pharmaceutical Excipients”, 2009, Pharmaceutical Press.

[0045] The type of vehicle or excipient used in this invention depends on the type of product desired. The compositions useful in this invention can be in various product forms, including, but not limited to, lotions, creams, gels, sticks, sprays, ointments, pastes, and mousses.

[0046] These product forms may include, but are not limited to, several types of vehicles, including solutions, aerosols, emulsions (including oil-in-water and water-in-oil), gels, solid compositions, and liposomes.

[0047] The compositions of the present invention may contain different amounts of water depending on the form of the composition. The amount of water, if present, may range from less than 1% by weight to more than 99% by weight of the total composition. The aqueous compositions of the present invention are formulated in particular as aqueous lotions, or aqueous emulsions, or as water-in-oil or oil-in-water emulsions, or as multiphase emulsions (three-phase oil-in-oil or water-in-oil emulsions).

[0048] Solid compositions, spray compositions, and water-in-oil creams generally consist of water in an amount of less than 10%, preferably less than 5%, relative to the total weight of the composition. Roll-on compositions, aqueous compositions, and deodorants generally consist of water in an amount ranging from about 15% to about 99% by weight, preferably about 30% to about 90%, and more preferably about 50% to about 80%, relative to the total weight of the composition.

[0049] The compositions of the present invention may contain one or more volatile solvents. If present, the volatile solvent or solvent mixture is generally concentrated at a concentration of about 10% to about 90% by weight, preferably about 25% to about 75% by weight, and more preferably about 35% to about 65% by weight, based on the total weight of the composition. The solvents used herein are preferably volatile organic solvents.

[0050] As used herein, the term “volatile” refers to a substance that has a significant amount of vapor pressure under ambient conditions, as understood by those skilled in the art.

[0051] The volatile solvents used herein preferably have a vapor pressure of about 2 kPa or more, more preferably about 6 kPa or more, at 25°C. The volatile solvents used preferably have a boiling point of less than about 150°C, more preferably less than about 100°C, even more preferably less than about 90°C, and even more preferably less than about 80°C in a normal atmosphere (1 atm).

[0052] Preferably, the volatile solvents used herein are relatively odorless and safe for use on human skin. Preferred volatile solvents include, but are not limited to, C1-C4 alcohols, volatile silicones, and mixtures thereof. Preferred volatile solvents are C1-C4 alcohols and mixtures thereof. Ethanol is a preferred solvent for this use.

[0053] The compositions of the present invention may also contain one or more non-volatile solvents. If present, the non-volatile solvent or solvent mixture is generally concentrated in a concentration of about 1% to about 20% by weight, preferably about 2% to about 10% by weight, and more preferably about 3% to about 5% by weight, based on the total weight of the composition. Suitable non-volatile solvents include, but are not limited to, benzyl benzoate, cetearyl alcohol, cetyl alcohol, diethyl phthalate, isopropyl myristate, dimethicone, caprylyl methicone, and mixtures thereof.

[0054] Several other additional components may be present in the composition of the present invention. These include, but are not limited to, hydrophilic polymers selected from polyethylene glycol (PEG), polyvinylpyrrolidone (PVP), hydroxypropyl methylcellulose (HPMC), and poloxamer; UV stabilizers such as benzophenone-3; antioxidants such as tocopherol acetate; preservatives such as phenoxyethanol, benzyl alcohol, methylparaben, and propylparaben; pH adjusters such as lactic acid, citric acid, sodium citrate, succinic acid, phosphoric acid, sodium hydroxide, and sodium carbonate; deodorants and antibacterial agents such as farnesol, zinc phenolsulfonate, and ethylhexylglycerin; humectants such as tribehenin and glycerin; skin conditioning agents such as allantoin; cooling agents such as trimethylisopropylbutanamide and menthol; hair treatment ingredients such as panthenol, pantethine, pantothin, panthenyl ethyl ether, and combinations thereof; propellants such as propane, isopropane, butane, and isobutene; salts such as potassium acetate and sodium chloride, and mixtures thereof; and fragrances and colorants.

[0055] If present, these additional components are preferably present at a concentration of less than 10% by weight, preferably less than 5% by weight, of the total weight of the composition.

[0056] Preferably, in embodiments relating to the second subject of the present invention, the pharmaceutical composition is for topical administration and more preferably in the form of a lotion, cream, gel, stick, spray, ointment, paste, or mousse, and even more preferably in the form of a cream.

[0057] According to the first, second, or third aspects of the present invention, the treatment and / or prevention of abnormal skin discoloration includes, for example, depigmentation disorders of hypopigmentation and / or hypopigmentation of hypopigmented skin, disorders of melanin pigmentation of the skin, such as certain pathological conditions resulting from post-nutrition, neurotrophic, post-traumatic, post-infectious, post-surgical, autoimmune, genetic, metabolic, nutritional, endocrine, chemical, physical, dystrophy, degenerative, or post-inflammatory conditions.

[0058] Preferably, according to the first, second, or third aspect of the present invention, the treatment or prevention of abnormal skin discoloration includes vitiligo, bilateral vitiligo, acrofacial vitiligo, generalized vitiligo, focal vitiligo, segmental vitiligo, universal vitiligo, perinevic or Sutton's nevus vitiligo, leukoderma, abnormal skin discoloration, mottled leukoderma, white pityriasis, tinea versicolor, idiopathic and post-inflammatory guttata hypomelanosis, acromic or depigmented nevi, and progressive macular This includes hypomelanosis, melanin deficiency resulting from metabolic, nutritional, or endocrine disorders, melanin deficiency resulting from chemicals, physical factors, or pharmaceuticals, infectious and post-infectious melanin deficiency, and inflammatory edipomelanosis.

[0059] In embodiments relating to the first or second subject of the present invention concerning peptides or compositions for use in the treatment and / or prevention of abnormal skin discoloration, the peptide or composition is combined with a steroid-based or calcitriol-based compound or composition.

[0060] In another embodiment relating to the first or second subject of the present invention, with respect to a peptide or composition for use in the treatment and / or prevention of cutaneous denervation disease, the peptide or composition is combined with an antiviral compound or composition.

[0061] Preferably, according to a third aspect of the present invention, a method for treating and / or preventing abnormal skin discoloration comprises oral, intravenous, or topical, simultaneous or sequential administration of a steroid-based or calcitriol-based compound or composition (activated vitamin D).

[0062] According to the first, second, or third aspect of the present invention, the treatment and / or prevention of cutaneous denervation disorders includes cutaneous denervation disorders of viral and / or inflammatory origin.

[0063] Preferably, according to the first, second, or third object of the present invention, the treatment and / or prevention of cutaneous denervation disorders include trigeminal trophoblastic syndrome, postherpetic pruritus, scalp paresthesia, paresthesia of the back (paresthetic notalgia), pruritus brachioradialis, paresthesia of femoral neuralgia, pruritus associated with keloids or burn scars, and small-diameter fiber neuropathy in various systemic diseases, all of which are difficult to treat or for which there is no effective treatment.

[0064] Preferably, according to a third aspect of the present invention, a method for treating and / or preventing viral cutaneous denervation disease comprises oral, intravenous, or topical, simultaneous or sequential administration of an antiviral compound or composition.

[0065] Preferably, according to the third aspect of the present invention, a method for treating and / or preventing abnormal skin discoloration and / or skin denervation disorders does not require photoactivation therapy and promotes patient adherence to treatment.

[0066] The present invention will be further illustrated by the following embodiments, which will not limit the scope of the invention as defined in the claims. [Examples]

[0067] Example 1 In vitro activity We compared the in vitro ability of NGF1-14 peptide and total NGF protein to activate melanin production by melanocytes.

[0068] Following established protocols, primary cell cultures of normal human melanocytes were seeded in petri dishes and cultured for one week in the presence or absence of various concentrations of NGF1-14 peptide, with whole human NGF protein as a control. Melanin content was measured using an ELISA enzyme immunoassay. The maximum melanin concentration, measured as the difference from baseline, was experimentally determined from the plateau of the dose-response curves for NGF and NGF1-14. EC50 represents the concentration of NGF1-14 or NGF at which 50% of the maximum cellular melanin concentration is observed. The experimental data are shown in Table 1.

[0069] [Table 3]

[0070] As reported in Table 1, the EC50 of NGF1-14 is 1.2 μM, while the EC50 of NGF is 60 pM. These data suggest that even at concentrations 2–3 log higher, NGF1-14 can determine an increase in melanin content per cell that is comparable to that of total protein NGF.

[0071] On the other hand, there were no significant differences in melanocyte proliferation and diffusion.

[0072] Example 2 2a. In vivo activity-efficacy study We compared the in vivo efficacy of NGF1-14 peptide and total NGF protein in promoting skin repigmentation.

[0073] This study was conducted using a mouse model of human vitiligo.

[0074] C57BL6-type SCF transgenic mice, in which vitiligo was induced by treating them with melanocyte-specific CD8+ T cells for 10-12 weeks, were shaved twice a week using an electric razor in an area of ​​approximately 6cm x 6cm on the dorsal side, which is affected by depigmentation. The animals were divided into two groups of the same number (8 animals per group). In the first group, topical administration was performed on two sites in the shaved area spaced apart on both sides of the midline. A topical preparation containing 200 μg / mL of NGF peptide in a base cream vehicle was applied to the left side, and only the base cream (control) was applied to the right side. The same procedure was repeated in the second group, with a topical preparation containing 200 μg / mL of NGF1-14 peptide in a base cream vehicle applied to the left side, and only the base cream (control) was applied to the right side.

[0075] The solution was applied twice daily for eight weeks, spreading evenly over a 2cm x 2cm area in the center of the shaved area. From the second day onward, the area was wiped with a cloth before applying the solution. The animals were kept away from sources of potential ultraviolet radiation.

[0076] Quantitative assessment of epidermal depigmentation was performed using a subjective scoring system based on 0-5 points (5 representing the most severe depigmentation), as reported in the literature (Rebecca L. et al., Curr Protoc Immunol. (2019), 124(1)-February). Trained researchers, blinded to the details of the experiment, performed evaluations at the treatment site.

[0077] At the end of the study, in both the NGF-treated group and the NGF1-14-treated group, 80% of the control animals treated with the base cream showed severe depigmentation with a score of 4 or higher, and the control group was judged to be unique. Using the evaluation system described in the above publication, a clear effect on pigmentation was observed in both the animal group treated with 200 μg / mL of NGF in the base cream and the animal group treated with 200 μg / mL of NGF1-14 in the base cream.

[0078] In the first group of animals treated with NGF, 37.5% showed a degree of decolorization of 2 or less, 37.5% showed moderate decolorization equivalent to 3, and 25% showed severe decolorization equivalent to 4 or more.

[0079] In the second group of animals treated with the same concentration of NGF1-14, 62.5% of the animals showed a degree of decolorization of 2 or less, 25% showed moderate decolorization corresponding to 3, but only 12.5% ​​showed severe decolorization of 4 or more.

[0080] As shown by the data above, the skin color in the areas treated with NGF1-14 peptide showed a substantial reduction in depigmentation compared to the skin color in the areas treated with the vehicle alone.

[0081] In a comparison between peptide NGF1-14 and total NGF protein, re-pigmentation was substantially equivalent, but the proportion of animals with a depigmentation degree of 2 or less was 62.5% in the NGF1-14 treated group, compared to 37.5% in the NGF treated group.

[0082] The proportion of animals with a decolorization degree of 4 or higher was also reduced by 50% in the group treated with NGF1-14 compared to the group treated with total protein.

[0083] Surprisingly, regarding in vitro activity, these data show that the NGF1-14 peptide exhibits more uniform and homogeneous re-pigmentation than the total protein at the same dose.

[0084] 2b. Histological examination We compared the in vivo ability of NGF1-14 peptide and total NGF protein to increase nerve terminal density.

[0085] Following the treatment described in Example 2a, the animals were slaughtered for histological examination, and skin samples (3 biopsies per point) were collected from both the NGF1-14 or NGF-treated area and the untreated area of ​​each animal.

[0086] To assess the density of sensory nerve fibers, peripheral sensory fibers (small diameter) were measured using antibodies against large-diameter nerve fiber protein 200 (NF200; Sigma) and transient receptor potential vanilloid 1 (TRPV1, Neuromics). The experimental data is shown in Table 2.

[0087] [Table 4]

[0088] Histological analysis revealed higher densities of both small and large nerve fibers in both the NGF-treated group and the NGF1-14-treated group. Regarding small fibers, treatment with NGF1-14 offered a clear advantage compared to treatment with whole protein NGF.

[0089] While not wishing to be bound by any interpretive theory, the applicant believes that topical application to depigmented skin increases innervation in the treatment area, thereby exerting neurotrophic effects on depigmented or hypopigmented tissue. This increased innervation then stimulates melanocytes in the skin, enabling re-pigmentation of the treatment area.

[0090] Example 3 In vivo activity-tolerance testing The in vivo intra-implant tolerability of NGF1-14 peptide was evaluated compared to that of total protein NGF.

[0091] Tyrode's isotonic solution containing rh-NGF protein at concentrations of 5-20 μg / mL and a vehicle were administered internally to the dorsal region of Sprague-Dawley rats (10 animals per concentration) using a very fine syringe in a volume of 0.05 mL.

[0092] Tyrode's isotonic solution containing mouse NGF protein at concentrations of 5-20 μg / mL and a vehicle were administered internally to the dorsal region of Sprague-Dawley rats (10 animals per concentration) using a very fine syringe in a volume of 0.05 mL.

[0093] Tyrod's isotonic solution containing NGF1-14 peptide at concentrations of 5-20 μg / mL and a vehicle were administered internally to the dorsal region of Sprague-Dawley rats (10 animals per concentration) using a very fine syringe in a volume of 0.05 mL.

[0094] The solution was administered internally to the dorsal region of Sprague-Dawley rats (10 animals per concentration) using a very fine syringe in a volume of 0.05 mL.

[0095] Following internal transplant injection, a planter thermal hyperalgesia test was performed. In particular, temperature sensitivity was determined using a Hargreaves apparatus (HA) at 1, 3, 5, and 24 hours.

[0096] Hypersensitivity to heat was assessed using a rat planter test apparatus (Ugo Basile, Italy) according to the method described by Hargreaves et al. (1988). The planter test uses three Perspex boxes (22 × 19 × 25 cm) placed on a raised glass table. Three rats were placed in each box and allowed to acclimate for at least 10 minutes so that they could be tested simultaneously in one apparatus. A portable infrared heat source was applied to the sole surface of the hind feet.

[0097] Paw retraction latency was defined as the time (in seconds) required for the rat to remove its hind limb from the heat source. The heat source was calibrated to an intensity of 15 IR, and a 50-second cutoff was applied to prevent tissue damage. Tests were performed at 1, 3, 5, and 24 hours post-injection. Each paw was tested twice per session (raw data represent the average of two measurements taken approximately 5 minutes apart).

[0098] As shown in the graph in Figure 1, in the planter test, the foot retraction latency of animals treated with the vehicle (physiological saline) did not change at each time point in the study (black circles, solid line). Rats treated with NGF1-14 10 μg / 50 μL (white square), NGF1-14 20 g / 50 μL (black circle, dashed line), and rh-NGF 10 μg / 50 μL (black triangle) showed hyperalgesic activity compared to the physiological saline group at all time points in the study (P<0.001). In particular, rh-NGF 10 μg / 50 μL showed a more pronounced and significant hyperalgesic effect compared to NGF1-14 10 and 20 μg / 50 μL (at 1-3-24 hours). * P<0.05, over 5 hours ** P<0.01).

[0099] The test results showed high tolerability of NGF1-14, with the maximum dose of 20 μg / 50 μL being significantly higher than the minimum dose of NGF at each test time.

[0100] While not wishing to be bound by any interpretive theory, the applicant believes that the unexpected tolerability of NGF1-14 is due to the selectivity of the NGF1-14 peptide's action on the receptor tyrosine kinase TrKA, with respect to a second receptor activated by NGF p75.

[0101] In conclusion, NGF1-14 peptides, tested in vitro in primary cell cultures of normal human melanocytes, resulted in a comparable increase in melanin content per cell compared to total protein, even at higher concentrations.

[0102] Surprisingly, regarding in vitro activity, NGF1-14 peptide, tested in vivo in a mouse model of human vitiligo, showed more pronounced skin repigmentation and a greater increase in nerve terminal density at the same dose compared to the total protein.

[0103] Finally, NGF1-14 peptides administered intradermally to Sprague-Dawley rats showed better tolerability than NGF protein, even at higher doses than the reference molecule. The results of the intradermal study are particularly significant in light of the well-known fact that NGF has poor cutaneous tolerability in intradermal studies.

[0104] A further advantage of NGF1-14 over the whole protein is that, unlike the whole protein, it can be easily synthesized using conventional peptide synthesis approaches and can be stored for long periods under mild conditions, resulting in a significant reduction in production costs.

[0105] Therefore, NGF1-14 peptides, for example, peptides having a sequence with at least 85%, preferably at least 90%, preferably at least 95% identity, and a length of up to 16 amino acids, are particularly useful for the treatment and / or prevention of abnormal skin discoloration such as vitiligo and denervating skin diseases.

[0106] Therefore, such oligopeptide derivatives of NGF may be applied to the treatment and / or prevention of skin discoloration abnormalities such as vitiligo in a more effective and safer manner than cortisone derivatives currently in use.

[0107] Furthermore, such oligopeptide derivatives of NGF can be applied to the treatment and / or prevention of skin denervation diseases such as herpes, for example, and to adjunct antiviral therapy.

Claims

1. A pharmaceutical composition for use in the treatment and / or prevention of abnormal skin discoloration and / or denervation of the skin, A 14-amino acid peptide having SEQ ID NO: 1, Alternatively, a peptide of up to 16 amino acids having a sequence that is at least 85% identical to Sequence ID No. 1, or their derivatives and / or salts A pharmaceutical composition comprising, wherein the derivative contains the N-terminus and / or C-terminus of the peptide, which has been chemically modified or protected with an organic compound.

2. The pharmaceutical composition according to claim 1, wherein the peptide has a sequence that is at least 85% identical to Sequence ID No. 1, and the peptide has a length of up to 15 amino acids.

3. The pharmaceutical composition according to claim 1, wherein the organic compound is selected from the group consisting of phosphoryl, glycosyl, acyl, alkyl, carboxyl, hydroxyl, biotinyl, ubiquitinyl, and amide.

4. A pharmaceutical composition, A 14-amino acid peptide having SEQ ID NO: 1, Alternatively, a peptide of up to 16 amino acids having a sequence that is at least 85% identical to Sequence ID No. 1, or derivatives and / or salts thereof, wherein the derivative contains the N-terminus and / or C-terminus of the peptide, which has been chemically modified or protected with an organic compound, At least one pharmaceutically acceptable excipient, It consists of, The pharmaceutical composition according to claim 1, for use in the treatment and / or prevention of abnormal skin discoloration and / or denervation of the skin.

5. The pharmaceutical composition according to claim 4, wherein the composition comprises 10 to 10,000 μg / mL of the peptide.

6. The pharmaceutical composition according to claim 4 or 5 for topical administration.

7. The pharmaceutical composition according to claim 6, in the form of a lotion, cream, gel, stick, spray, ointment, paste, or mousse.

8. The pharmaceutical composition according to any one of claims 4 to 7, wherein the at least one pharmaceutically acceptable excipient is selected from the group consisting of pharmaceutically acceptable vehicles, volatile and non-volatile solvents, water, surfactants, preservatives, absorbents, chelating agents, lubricants, humectants, water repellents, antioxidants, UV absorbers, anti-irritants, vitamins, trace metals, antibacterial agents, fragrances, colorants and coloring components, and / or structuring agents.

9. The pharmaceutical composition according to any one of claims 1 to 8, wherein the abnormal skin discoloration is selected from vitiligo, bilateral vitiligo, vitiligo of the limbs and face, generalized vitiligo, focal vitiligo, segmental vitiligo, universal vitiligo, perinevus or Sutton's nevus vitiligo, leukoderma, abnormal skin discoloration, mottled leukoderma, white pityriasis, tinea versicolor, idiopathic and post-inflammatory guttate melanin deficiency, depigmentation or depigmentation of a nevus, progressive macular melanin deficiency, melanin deficiency resulting from metabolic, nutritional or endocrine disease, melanin deficiency resulting from chemicals, physical factors or pharmaceuticals, infectious and post-infectious melanin deficiency, and inflammatory edipomelanosis.

10. The pharmaceutical composition according to claim 9, which can be combined with a steroid-based or calcitriol-based compound or composition.

11. The pharmaceutical composition according to any one of claims 1 to 8, wherein the denervation disorder of the skin is selected from trigeminal neurotrophic syndrome, postherpetic pruritus, scalp paresthesia, back paresthesia, brachioradial itching, paresthesia femoral neuralgia, pruritus associated with keloids or burn scars, and small-diameter fiber neuropathy in the course of a systemic disease.

12. The pharmaceutical composition according to claim 11, which can be combined with an antiviral compound or composition.

Citation Information

Patent Citations

  • Partial peptide of human nerve growth factor, antibody and use thereof

    JP1991163095A

  • A topical formulation containing NGF for inducing skin pigmentation and for the treatment of skin pigmentation disorders and vitiligo.

    JP2014532694A

  • Topical preparation containing NGF for inducing skin pigmentation and for the treatment of cutaneous dyschromias and vitiligo

    WO2013065078A2

  • Peptides for use in treating and preventing skin aging and photo-aging

    WO2020075108A1