JAK1 pathway inhibitors for treating prurigo nodularis

JP2024516302A5Pending Publication Date: 2025-05-13INCYTE CORP
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Application Number
JP2023568031
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Priority Date
2021-05-03
Filing Date
2022-05-03
Publication Date
2025-05-13

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Abstract

The present disclosure relates to JAK1 pathway inhibitors and their uses in the treatment of prurigo nodularis.
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Description

[Technical field]

[0001] This application claims the benefit of U.S. Provisional Patent Application No. 63 / 183,249, filed May 3, 2021, which is incorporated by reference herein in its entirety.

[0002] U.S. Provisional Patent Application No. 63 / 183,225, filed May 3, 2021, and a U.S. nonprovisional application entitled "Ruxolitinib for the Treatment Of Prurigo Nodularis," filed May 3, 2022, which claims priority to U.S. Provisional Patent Application No. 63 / 183,225, are incorporated herein by reference.

[0003] The present disclosure relates to JAK1 pathway inhibitors and their uses in the treatment of prurigo nodularis. [Background technology]

[0004] Prurigo nodularis (PN) is a chronic skin disease characterized by firm, dome-shaped, highly pruritic nodules ranging in size from a few millimeters to several centimeters. The nodules are often symmetrically distributed on the extensor surfaces of the limbs and the trunk. PN has an estimated prevalence of 72 per 100,000 in the United States based on health insurance coverage. Reports vary on whether it is more frequent in women than men or whether it occurs equally in both sexes. Individuals with darker skin, i.e., more pigmented skin, are substantially more likely to have PN than patients with lighter skin, i.e., less pigmented skin. Specifically, one study found that African-American patients were 3.4 times more likely to have PN than Caucasian patients.

[0005] Quality of life can be substantially affected by PN. Specifically, quality of life problems include sleep disturbance, impact on work performance, and avoidance of social activities. Furthermore, the burden of systemic comorbidity in prurigo nodularis often exceeds the burden of systemic comorbidity in other inflammatory skin diseases (e.g., atopic dermatitis or psoriasis). Prurigo nodularis is associated with mental health (especially anxiety and depression), endocrine, cardiovascular, and renal disorders, as well as increased rates of HIV and malignancies. Approximately half of all patients with PN report a history of atopic dermatitis.

[0006] Pharmacological therapy with first generation sedating antihistamines (e.g., hydroxyzine, diphenhydramine) administered at bedtime can be useful in controlling nocturnal itch. Both selective serotonin reuptake inhibitors and tricyclic antidepressants are also used in chronic pruritus, especially when a depressive component is present.

[0007] Very potent topical corticosteroids are considered the first line of therapy. Patients with extensive disease may be administered phototherapy. Patients with refractory PN may be administered systemic treatments including systemic immunosuppressants, thalidomide, lenalidomide, and anticonvulsants. These treatments are associated with potentially significant toxicity, and their efficacy in patients with refractory PN is unproven. Thus, there is a need to develop new therapies for treating prurigo nodularis. The present application addresses this and other needs. [Brief description of the drawings]

[0008] [Figure 1] 1 shows a depiction of skin punch biopsies used for JAK1-mediated pharmacological inhibition of PN pathophysiology. [Diagram 2] 1 shows a graphical representation of pharmacological inhibition of JAK1-mediated PN pathophysiology using the JAK1 inhibitor Compound 1. [Diagram 3]1 shows an outline of a Phase 2, randomized, double-blind, placebo-controlled, dose-ranging study of the efficacy and safety of Compound 1. Summary of the Invention

[0009] Provided herein is a method for treating prurigo nodularis in a subject in need thereof, comprising administering to the subject a therapeutically effective amount of a JAK1 pathway inhibitor, or a pharma- ceutical acceptable salt thereof.

[0010] Provided herein is a JAK1 pathway inhibitor, or a pharma- ceutically acceptable salt thereof, for treating prurigo nodularis in a subject in need thereof.

[0011] Provided herein is the use of a JAK1 pathway inhibitor, or a pharma- ceutical acceptable salt thereof, for the manufacture of a medicament for use in the treatment of prurigo nodularis in a subject in need thereof. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS

[0012] [Detailed Description] The present invention provides, inter alia, a method for treating prurigo nodularis in a subject in need thereof, comprising administering to the subject a therapeutically effective amount of a JAK1 pathway inhibitor, or a pharma- ceutical acceptable salt thereof.

[0013] In some embodiments, the JAK1 pathway inhibitor or a pharma- ceutically acceptable salt thereof is selective for JAK1 over JAK2, JAK3, and Tyk2.

[0014] In some embodiments, the JAK1 pathway inhibitor is 4-[3-(cyanomethyl)-3-(3',5'-dimethyl-1H,1'H-4,4'-bipyrazol-1-yl)azetidin-1-yl]-2,5-difluoro-N-[(1S)-2,2,2-trifluoro-1-methylethyl]benzamide (Compound 1), or a pharma- ceutically acceptable salt thereof.

[0015] In some embodiments, the JAK1 pathway inhibitor is 4-[3-(cyanomethyl)-3-(3',5'-dimethyl-1H,1'H-4,4'-bipyrazol-1-yl)azetidin-1-yl]-2,5-difluoro-N-[(1S)-2,2,2-trifluoro-1-methylethyl]benzamide phosphate.

[0016] In some embodiments, the JAK1 pathway inhibitor is {1-{1-[3-fluoro-2-(trifluoromethyl)isonicotinoyl]piperidin-4-yl}-3[4-(7H-pyrrolo[2,3-d]pyrimidin-4-yl)-1H-pyrazol-1-yl]azetidin-3-yl}acetonitrile or a pharma- ceutically acceptable salt thereof.

[0017] In some embodiments, the JAK1 pathway inhibitor is {1-{1-[3-fluoro-2-(trifluoromethyl)isonicotinoyl]piperidin-4-yl}-3[4-(7H-pyrrolo[2,3-d]pyrimidin-4-yl)-1H-pyrazol-1-yl]azetidin-3-yl}acetonitrile adipate.

[0018] In some embodiments, the JAK1 pathway inhibitor, or a pharma- ceutically acceptable salt thereof, is administered in a daily dose of about 5 mg to about 95 mg on a free base basis.

[0019] In some embodiments, the JAK1 pathway inhibitor, or a pharma- ceutically acceptable salt thereof, is administered in a daily dose of about 15 mg, about 45 mg, about 75 mg, or about 90 mg on a free base basis.

[0020] In some embodiments, the JAK1 pathway inhibitor, or a pharma- ceutically acceptable salt thereof, is administered in a daily dose of about 45 mg, or about 75 mg, on a free base basis.

[0021] In some embodiments, the JAK1 pathway inhibitor, or a pharma- ceutically acceptable salt thereof, is administered in combination with an additional therapeutic agent.

[0022] In some embodiments, the additional therapeutic agent is a neurokinin 1 receptor antagonist. In some embodiments, the neurokinin 1 receptor antagonist is aprepitant.

[0023] In some embodiments, the additional therapeutic agent is an anti-IL-4 / IL-13 antibody. In some embodiments, the anti-IL-4 / IL-13 antibody is dupilumab, lebrikizumab, or tralokinumab.

[0024] In some embodiments, the additional therapeutic agent is an anti-IL-5 antibody. In some embodiments, the anti-IL-5 antibody is benralizumab, mepolizumab, or reslizumab.

[0025] In some embodiments, the additional therapeutic agent is an anti-IL-31 antibody. In some embodiments, the anti-IL-31 antibody is nemolizumab.

[0026] In some embodiments, the administering comprises administering a JAK1 pathway inhibitor, or a pharma- ceutically acceptable salt thereof, with at least one pharma- ceutically acceptable carrier or excipient.

[0027] In some embodiments, the efficacy of the treatment methods disclosed herein can be established based on the physician's global severity assessment (IGA). In some embodiments, IGA-TS (physician's global severity assessment treatment success) is defined as an IGA score of 0 or 1 with an improvement of 2 or more grades from baseline. At a given time point (e.g., at 16 weeks), efficacy can be established by investigating the proportion of subjects who achieve IGA-TS (IGA of 0 or 1 with a reduction of 2 points).

[0028] In some embodiments, efficacy of the treatment methods disclosed herein can be demonstrated based on the pruritus numerical rating scale (pruritus NRS). In some embodiments, efficacy can be demonstrated by achieving a pre-determined percentage of subjects achieving at least a 2 or 4 point improvement in the pruritus NRS (e.g., at week 16). In some embodiments, efficacy can be demonstrated by observing the time to a 2 or more point, or 4 or more point improvement from baseline in the pruritus NRS. In some embodiments, the JAK1 inhibitor (e.g., Compound 1) and / or the methods of use described herein result in an improvement in the subject's response to the pruritus NRS from baseline. In some embodiments, the JAK1 inhibitor, e.g., Compound 1, and / or the methods of use described herein result in about 5%, about 10%, about 20%, about 30%, about 40%, about 50%, about 60%, about 70%, about 80%, about 90%, or about 95% improvement in the subject's response to the pruritus NRS from baseline.

[0029] In some embodiments, efficacy of the treatments disclosed herein can be demonstrated based on the Peak Itch NRS. The Peak Itch Numeric Rating Scale (NRS) was developed to assess one parameter or dimension of itch in clinical trials of investigational drugs for patients with moderate to severe AD. The Peak Itch NRS is a patient-reported outcome test designed to measure peak itch, or "worst" itch, within 24 hours. The test is based, for example, on the following question: "On a scale of 0 to 10 (0 being "no itch" and 10 being "worst itch imaginable"), how would you rate your itch at the worst moment within 24 hours?" In some embodiments, efficacy can be demonstrated by achieving a pre-defined percentage of subjects achieving at least a 2 or 4 point improvement in the Peak Itch NRS (e.g., at week 16). In some embodiments, efficacy can be demonstrated by observing the time to a 2 or more point, or 4 or more point improvement from baseline in the Peak Itch NRS. In some embodiments, a JAK1 inhibitor (e.g., Compound 1), and / or methods of use described herein, results in an improvement in the subject's response to the peak itch NRS from baseline. In some embodiments, a JAK1 inhibitor, e.g., Compound 1, and / or methods of use described herein, results in about a 5%, about 10%, about 20%, about 30%, about 40%, about 50%, about 60%, about 70%, about 80%, about 90%, or about 95% improvement in the subject's response to the peak itch NRS from baseline.

[0030] In some embodiments, the efficacy of the treatment methods disclosed herein can be established based on nodule evaluation. In some embodiments, the JAK1 inhibitor (e.g., Compound 1) and / or the methods of use described herein result in an improvement in the subject's response to PAS from baseline. In some embodiments, the JAK1 inhibitor (e.g., Compound 1) and / or the methods of use described herein result in about 5%, about 10%, about 20%, about 30%, about 40%, about 50%, about 60%, about 70%, about 80%, about 90%, or about 95% improvement in the subject's response to PAS from baseline. In some embodiments, the efficacy of the treatment methods disclosed herein can be established based on photography of the affected area. Photographs of the body area affected by PN are obtained at the clinic visit. All sites are photographed using two-dimensional photography to photograph the body area containing the PN nodules.

[0031] In some embodiments, the efficacy of the treatment methods disclosed herein can be established based on patient-reported outcomes (PROs). In some embodiments, the efficacy of the treatment methods disclosed herein can be established based on the Skin Disease Life Quality Index (DLQI). In some embodiments, the JAK1 inhibitor (e.g., Compound 1) and / or the methods of use described herein provide an improvement in the subject's response to DLQI from baseline. In some embodiments, the JAK1 inhibitor, e.g., Compound 1, and / or the methods of use described herein provide an improvement in the subject's response to DLQI from baseline of about 5%, about 10%, about 20%, about 30%, about 40%, about 50%, about 60%, about 70%, about 80%, about 90%, or about 95%.

[0032] In some embodiments, the efficacy of the treatment methods disclosed herein can be demonstrated based on the change in patient overall condition (PGIC). In some embodiments, the JAK1 inhibitor (e.g., Compound 1) and / or the methods of use described herein result in an improvement in the subject's response to PGIC from baseline. In some embodiments, the JAK1 inhibitor, e.g., Compound 1, and / or the methods of use described herein result in an improvement in the subject's response to PGIC from baseline of about 5%, about 10%, about 20%, about 30%, about 40%, about 50%, about 60%, about 70%, about 80%, about 90%, or about 95%.

[0033] In some embodiments, efficacy can be assessed based on the subject's improvement in the Hospital Anxiety and Depression Scale (HADS). In some embodiments, the JAK1 inhibitor (e.g., Compound 1) and / or the methods of use described herein result in an improvement in the subject's response to the HADS from baseline. In some embodiments, the JAK1 inhibitor, e.g., Compound 1, and / or the methods of use described herein result in about 5%, about 10%, about 20%, about 30%, about 40%, about 50%, about 60%, about 70%, about 80%, about 90%, or about 95% improvement in the subject's response to the HADS from baseline.

[0034] In some embodiments, efficacy can be assessed based on the subject's improvement in the Functional Assessment of Chronic Illness Therapy-Fatigue scale (FACIT-Fatigue scale). In some embodiments, the JAK1 inhibitor (e.g., Compound 1) and / or the methods of use described herein result in an improvement in the subject's response to the FACIT-Fatigue scale from baseline. In some embodiments, the JAK1 inhibitor, e.g., Compound 1, and / or the methods of use described herein result in an improvement in the subject's response to the FACIT-Fatigue scale from baseline of about 5%, about 10%, about 20%, about 30%, about 40%, about 50%, about 60%, about 70%, about 80%, about 90%, or about 95%.

[0035] In some embodiments, efficacy can be evaluated based on the improvement of the subject's PROMIS sleep scale. In some embodiments, the JAK1 inhibitor (e.g., Compound 1) and / or the methods of use described herein improve the subject's response to the PROMIS sleep scale from baseline. In some embodiments, the JAK1 inhibitor, e.g., Compound 1 and / or the methods of use described herein improve the subject's response to the PROMIS sleep scale from baseline by about 5%, about 10%, about 20%, about 30%, about 40%, about 50%, about 60%, about 70%, about 80%, about 90%, or about 95%.

[0036] In some embodiments, efficacy can be assessed based on an improvement in the subject's EQ-5D-5L questionnaire. In some embodiments, the JAK1 inhibitor, e.g., Compound 1, and / or the methods of use described herein, results in an improvement in the subject's response to the EQ-5D-5L questionnaire from baseline. In some embodiments, the JAK1 inhibitor, e.g., Compound 1, and / or the methods of use described herein, results in an improvement in the subject's response to the EQ-5D-5L questionnaire from baseline of about 5%, about 10%, about 20%, about 30%, about 40%, about 50%, about 60%, about 70%, about 80%, about 90%, or about 95%.

[0037] The methods described herein utilize JAK1 pathway inhibitors, particularly JAK1 selective inhibitors. JAK1 selective inhibitors are compounds that preferentially inhibit JAK1 activity over other Janus kinases. JAK1 plays a central role in several cytokine and growth factor signaling pathways that, when dysregulated, can result in or contribute to disease states. In autoimmune diseases and cancer, elevated systemic levels of inflammatory cytokines that activate JAK1 can also contribute to disease and / or associated symptoms. Thus, patients with autoimmune-related diseases, such as prurigo nodularis, may benefit from JAK1 inhibition. Selective inhibitors of JAK1 could be beneficial while avoiding the unnecessary and potentially undesirable effects of inhibiting other JAK kinases. Activated T cells showed increased IL-22 cytokine expression in patients with PN compared to healthy controls (Belzberg, et al., J Invest Dermatol, 141(9):2208-2218.e14(2021)).

[0038] In some embodiments, the JAK1 pathway inhibitor, or a pharma- ceutically acceptable salt thereof, is selective for JAK1 over JAK2, JAK3, and TYK2 (i.e., a JAK1 selective inhibitor). For example, a compound described herein, or a pharma- ceutically acceptable salt thereof, selectively inhibits JAK1 over one or more of JAK2, JAK3, and TYK2. In some embodiments, a compound preferentially inhibits JAK1 over JAK2 (e.g., JAK2 / JAK1 IC 50 In some embodiments, the compound or salt is about 10-fold selective for JAK1 over JAK2. In some embodiments, the compound or salt has an IC 50 The antibody is about 3-fold, about 5-fold, about 10-fold, about 15-fold, or about 20-fold selective for JAK1 over JAK2, as calculated by measuring the affinity of the antibody to JAK1 (see, e.g., Example A).

[0039] In some embodiments, the JAK1 pathway inhibitor is a compound in Table 1 or a pharma- ceutically acceptable salt thereof. The compounds in Table 1 are selective JAK1 inhibitors (more selective than JAK2, JAK3, and TYK2). IC obtained by the method of Example A at 1 mM ATP 50 The values ​​are shown in Table 1.

[0040] The compounds in Table 1 can be prepared, for example, from U.S. Patent Publication Nos. 2011 / 0224190, filed March 9, 2011, 2014 / 0343030, filed May 16, 2014, 2014 / 0121198, filed October 31, 2013, 2010 / 0298334, filed May 21, 2010, 2010 / 0298334, filed August 31, 2010, each of which is incorporated herein by reference in its entirety. No. 2011 / 0059951, filed Nov. 18, 2011, U.S. Patent Publication No. 2012 / 0149681, filed Nov. 18, 2011, U.S. Patent Publication No. 2012 / 0149682, filed Nov. 18, 2011, U.S. Patent Publication No. 2013 / 0045963, filed Aug. 17, 2012, and U.S. Patent Publication No. 2014 / 0005166, filed May 17, 2013, or a pharma- ceutically acceptable salt thereof. [Table 1-1] [Table 1-2] [Table 1-3] [Table 1-4] [Table 1-5] [Table 1-6] [Table 1-7] [Table 1-8] [Table 1-9] [Table 1-10] [Table 1-11] [Table 1-12] [Table 1-13]

[0041] In some embodiments, the JAK1 pathway inhibitor is 4-[3-(cyanomethyl)-3-(3',5'-dimethyl-1H,1'H-4,4'-bipyrazol-1-yl)azetidin-1-yl]-2,5-difluoro-N-[(1S)-2,2,2-trifluoro-1-methylethyl]benzamide (compound 1), or a pharma- ceutically acceptable salt thereof. In some embodiments, the JAK1 pathway inhibitor is 4-[3-(cyanomethyl)-3-(3',5'-dimethyl-1H,1'H-4,4'-bipyrazol-1-yl)azetidin-1-yl]-2,5-difluoro-N-[(1S)-2,2,2-trifluoro-1-methylethyl]benzamide phosphate. Compound 1 and its salts can be made, for example, by the procedures described in US 9,382,231, filed May 16, 2014 (see, e.g., Example 7), which is incorporated by reference herein in its entirety.

[0042] In some embodiments, the JAK1 pathway inhibitor is a compound as described in U.S. Patent Publication Nos. 2011 / 0224190, filed March 9, 2011, 2014 / 0343030, filed May 16, 2014, 2014 / 0121198, filed October 31, 2013, 2010 / 0298334, filed May 21, 2010, 2010 / 0298334, filed August 31, 2010, each of which is incorporated by reference in its entirety. No. 2011 / 0059951, filed on 2011-0110, U.S. Patent Publication No. 2012 / 0149681, filed on November 18, 2011, U.S. Patent Publication No. 2012 / 0149682, filed on November 18, 2011, U.S. Patent Publication No. 2013 / 0045963, filed on August 17, 2012, and U.S. Patent Publication No. 2014 / 0005166, filed on May 17, 2013, or a pharma- ceutical acceptable salt thereof.

[0043] In some embodiments, the JAK1 pathway inhibitor has formula (I): [ka] or a pharma- ceutically acceptable salt thereof, wherein X is N or CH; L is C(=O) or C(=O)NH; A is phenyl, pyridinyl, or pyrimidinyl, each of which is optionally selected from one or two independently selected R 1 is substituted with a group, Each R 1 is independently fluoro or trifluoromethyl.

[0044] In some embodiments, the compound of formula I is {1-{1-[3-fluoro-2-(trifluoromethyl)isonicotinoyl]piperidin-4-yl}-3[4-(7H-pyrrolo[2,3-d]pyrimidin-4-yl)-1H-pyrazol-1-yl]azetidin-3-yl}acetonitrile, or a pharma- ceutically acceptable salt thereof.

[0045] In some embodiments, the compound of formula I is 4-{3-(cyanomethyl)-3-[4-(7H-pyrrolo[2,3-d]pyrimidin-4-yl)-1H-pyrazol-1-yl]azetidin-1-yl}-N-[4-fluoro-2-(trifluoromethyl)phenyl]piperidine-1-carboxamide or a pharma- ceutically acceptable salt thereof.

[0046] In some embodiments, the compound of formula I is [3-[4-(7H-pyrrolo[2,3-d]pyrimidin-4-yl)-1H-pyrazol-1-yl]-1-(1-{[2-(trifluoromethyl)pyrimidin-4-yl]carbonyl}piperidin-4-yl)azetidin-3-yl]acetonitrile or a pharma- ceutically acceptable salt thereof.

[0047] In some embodiments, the JAK1 pathway inhibitor has formula II [ka] or a pharma- ceutically acceptable salt thereof, wherein R 2 is C 1-6 Alkyl, C 1-6 Haloalkyl, C 3-6 Cycloalkyl, or C 3-6 Cycloalkyl-C 1-3 alkyl, wherein the C 1-6 Alkyl, C 3-6 Cycloalkyl and C 3-6 Cycloalkyl-C 1-3 each alkyl is optionally substituted with 1, 2, or 3 substituents independently selected from fluoro, -CF3, and methyl; R 3 is H or methyl, R 4 is H, F, or Cl, R 5 is H or F, R 6 is H or F, R 7 is H or F, R8 is H or methyl, R 9 is H or methyl, R 10 is H or methyl, R 11 is H or methyl.

[0048] In some embodiments, the JAK1 pathway inhibitor has formula III [ka] or a pharma- ceutically acceptable salt thereof, wherein Cy 4 is a tetrahydro-2H-pyran ring, which is optionally CN, OH, F, Cl, C 1-3 Alkyl, C 1-3 Haloalkyl, Cyano-C 1-3 Alkyl, HO-C 1-3 Alkyl, Amino, C 1-3 Alkylamino and di(C 1-3 substituted with 1 or 2 groups independently selected from the group consisting of alkyl, 1-3 Alkyl and di(C 1-3 Alkyl)amino is optionally substituted with F, Cl, C 1-3 Alkylaminosulfonyl, and C 1-3 substituted with 1, 2, or 3 substituents independently selected from alkylsulfonyl; R 12 is -CH2-OH, -CH(CH3)-OH, or -CH2-NHSO2CH3.

[0049] In some embodiments, the compound of formula III is ((2R,5S)-5-{2-[(1R)-1-hydroxyethyl]-1H-imidazo[4,5-d]thieno[3,2-b]pyridin-1-yl}tetrahydro-2H-pyran-2-yl)acetonitrile, or a pharma- ceutically acceptable salt thereof.

[0050] In some embodiments, the JAK1 pathway inhibitor or a pharma- ceutically acceptable salt thereof is administered in a daily amount of about 10 mg to about 100 mg on a free base basis. Thus, in some embodiments, the selective JAK1 pathway inhibitor is administered in a daily amount of about 10 mg, about 15 mg, about 20 mg, about 25 mg, about 30 mg, about 35 mg, about 40 mg, about 45 mg, about 50 mg, about 55 mg, about 60 mg, about 65 mg, about 70 mg, about 75 mg, about 80 mg, about 85 mg, about 90 mg, about 95 mg, or about 100 mg on a free base basis. In some embodiments, the JAK1 pathway inhibitor or a pharma- ceutically acceptable salt thereof is administered in a daily amount of about 1 mg to about 100 mg on a free base basis. In some embodiments, the JAK1 pathway inhibitor or a pharma- ceutically acceptable salt thereof is administered in a daily amount of about 10 mg to about 80 mg on a free base basis. In some embodiments, the JAK1 pathway inhibitor or its pharma- ceutically acceptable salt is administered in a daily dose of about 90 mg based on free base.In some embodiments, the JAK1 pathway inhibitor or its pharma- ceutically acceptable salt is administered in a daily dose of about 75 mg based on free base.In some embodiments, the JAK1 pathway inhibitor or its pharma- ceutically acceptable salt is administered in a daily dose of about 45 mg based on free base.

[0051] The term "about" means "approximately" (eg, approximately ±10% of the indicated value).

[0052] In some embodiments, the JAK1 pathway inhibitor, or a pharma- ceutically acceptable salt thereof, is administered as one or more extended release dosage forms, each comprising the JAK1 pathway inhibitor, or a pharma- ceutically acceptable salt thereof.

[0053] In some embodiments, the JAK1 pathway inhibitor, or a pharma- ceutically acceptable salt thereof, is administered orally.

[0054] The embodiments described herein are intended to be combined in any suitable combination as if the embodiments were multiple dependent claims (e.g., embodiments relating to the selective JAK1 pathway inhibitors and dosages thereof, embodiments relating to any salt forms of the compounds disclosed herein, embodiments relating to individual types of cytokine-related diseases or disorders, and compositions and / or administration embodiments which may be combined in any combination).

[0055] All possible combinations are not listed separately herein merely for the sake of brevity.

[0056] The compounds described herein may be asymmetric (e.g., having one or more stereocenters). All stereoisomers, such as enantiomers and diastereomers, are intended unless otherwise specified. Compounds containing asymmetrically substituted carbon atoms may be isolated in optically active or racemic forms. Methods for preparing optically active forms from optically inactive starting materials are known in the art, such as by resolution of racemic mixtures or stereoselective synthesis. Many geometric isomers of olefins, C=N double bonds, and the like, may also be present in the compounds described herein, and all such stable isomers are contemplated in the present invention. Cis and trans geometric isomers in the compounds of the present invention are described and may be isolated as a mixture of isomers or as separated isomeric forms.

[0057] In some embodiments, the compound has the (R) configuration. In some embodiments, the compound has the (S) configuration.

[0058] The resolution of racemic mixtures of compounds can be carried out by any of a number of methods well known in the art. An exemplary method includes fractional recrystallization using chiral resolving acids that are optically active salt-forming organic acids. Suitable resolving agents for fractional recrystallization are, for example, optically active acids such as D and L forms of tartaric acid, diacetyltartaric acid, dibenzoyltartaric acid, mandelic acid, malic acid, lactic acid, or various optically active camphorsulfonic acids such as β-camphorsulfonic acid. Other resolving agents suitable for fractional crystallization include stereoisomerically pure forms of α-methylbenzylamine (e.g., S and R forms, or diastereomerically pure forms), 2-phenylglycinol, norephedrine, ephedrine, N-methylephedrine, cyclohexylethylamine, 1,2-diaminocyclohexane, and the like.

[0059] Resolution of racemic mixtures can also be carried out by elution on a column packed with an optically active resolving agent (e.g., dinitrobenzoylphenylglycine). Suitable elution solvent compositions can be determined by one skilled in the art.

[0060] The compounds described herein also include tautomeric forms. Tautomeric forms are obtained by the exchange of adjacent double and single bonds with the concomitant migration of a proton. Tautomeric forms include prototropic tautomers, which are isomeric protonation states with the same empirical formula and total charge. Exemplary prototropic tautomers include ketone-enol pairs, amide-imidic acid pairs, lactam-lactim pairs, enamine-imine pairs, and cyclic forms in which protons can occupy more than one position of a heterocyclic ring system, such as 1H- and 3H-imidazole, 1H-, 2H-, and 4H-1,2,4-triazole, 1H- and 2H-isoindole, and 1H- and 2H-pyrazole. Tautomeric forms may be in equilibrium or may be sterically fixed in one form by appropriate substitution.

[0061] The compounds described herein may also include isotopically labeled compounds of the present disclosure. An "isotopically" or "radiolabeled" compound is a compound of the present disclosure in which one or more atoms are replaced or substituted by an atom having an atomic mass or mass number different from the atomic mass or mass number usually found in nature (i.e., occurring in nature). Suitable radionuclides that can be incorporated into the compounds of the present disclosure include: 2 H (also written with D for deuterium), 3 H (also written as T for tritium), 11 C. 13 C. 14 C. 13 N, 15 N, 15 O. 17 O. 18 O. 18 F, 35 S, 36 Cl, 82 Br, 75 Br, 76 Br, 77 Br, 123 I, 124 I, 125 I and 131 For example, one or more hydrogen atoms in the compounds of the present disclosure can be replaced with a deuterium atom (e.g., C of the compounds of formula (I), (II), or (III) or Table 1). 1-6 One or more hydrogen atoms of an alkyl group can be optionally replaced with a deuterium atom, such as -CD3 being replaced with -CH3. As used herein, the term "compound" is meant to include all stereoisomers, geometric isomers, tautomers, and isotopes for the depicted structure, unless the name indicates a specific stereoisomer. Compounds herein that are identified by name or structure as one particular tautomeric form are intended to include other tautomeric forms, unless otherwise specified.

[0062] All compounds, and pharma- ceutically acceptable salts thereof, may be found together or isolated with other substances such as water and solvents (eg, hydrates and solvates).

[0063] In some embodiments, the compounds described herein or salts thereof are substantially isolated. "Substantially isolated" means that the compounds are at least partially or substantially separated from the environment in which they were formed or detected. Partial separation can include, for example, compositions enriched for the compounds described herein. Substantial separation can include compositions that contain at least about 50% by weight, at least about 60% by weight, at least about 70% by weight, at least about 80% by weight, at least about 90% by weight, at least about 95% by weight, at least about 97% by weight, or at least about 99% by weight of the compounds described herein or salts thereof. Methods for isolating compounds and their salts are routine in the art.

[0064] The phrase "pharmacologically acceptable" is used herein to refer to compounds, materials, compositions, and / or dosage forms that are suitable for use in contact with the tissues of human beings and animals, within the scope of sound medical judgment, without undue toxicity, irritation, allergic response, or other problem or complication, commensurate with a reasonable benefit / risk ratio.

[0065] As used herein, the expressions "ambient temperature" and "room temperature" or "rt" are understood in the art and generally refer to a temperature near the temperature of the room in which the reaction is carried out, e.g., a temperature of about 20° C. to about 30° C., e.g., the reaction temperature.

[0066] The present invention also includes pharma- ceutically acceptable salts of the compounds described herein. As used herein, "pharma- ceutically acceptable salts" refers to derivatives of the disclosed compounds, in which the parent compound is modified by converting an existing acid or base moiety into its salt form. Examples of pharma- ceutically acceptable salts include, but are not limited to, inorganic or organic acid salts of basic residues such as amines, alkali or organic salts of acidic residues such as carboxylic acids, and the like. The pharma- ceutical acceptable salts of the present invention include conventional non-toxic salts of the parent compound formed, for example, from non-toxic inorganic or organic acids. The pharma- ceutical acceptable salts of the present invention can be synthesized from the parent compound containing a basic or acidic moiety by conventional chemical methods. In general, such salts can be prepared by reacting the free acid or base forms of these compounds with a stoichiometric amount of the appropriate base or acid in water or in an organic solvent, or in a mixture of the two, generally with non-aqueous media such as ether, ethyl acetate, alcohol (e.g., methanol, ethanol, isopropanol, or butanol) or acetonitrile (ACN) being preferred. Lists of suitable salts can be found in Remington's Pharmaceutical Sciences, 17th ed., Mack Publishing Company, Easton, Pa., 1985, p. 1418, and Journal of Pharmaceutical Science, 66, 2 (1977), each of which is incorporated herein by reference in its entirety.

[0067] As used herein, the terms "subject", "individual" or "patient", used interchangeably, refer to any animal, including a mammal, preferably a mouse, rat, other rodent, rabbit, dog, cat, pig, cow, sheep, horse or primate, most preferably a human. In some embodiments, the "subject", "individual" or "patient" is in need of the above-mentioned treatment.

[0068] In some embodiments, the inhibitor is administered in a therapeutically effective amount. As used herein, the phrase "therapeutically effective amount" refers to an amount of an active compound or pharmaceutical agent that elicits the biological or pharmacological response sought in a tissue, system, animal, individual, or human by a researcher, veterinarian, physician, or other clinician.

[0069] The term "treating" or "treatment" refers to one or more of: (1) inhibition of a disease, e.g., inhibition of a disease, condition or disorder in an individual experiencing or displaying a lesion or symptom of the disease, condition or disorder (i.e., halting further development of the lesion and / or symptom); (2) amelioration of a disease, e.g., improvement of a disease, condition or disorder in an individual experiencing or displaying a lesion or symptom of the disease, condition or disorder (i.e., improvement of the lesion and / or symptom), e.g., improvement in disease severity.

[0070] In some embodiments, the JAK1 inhibitor can prevent prurigo nodularis in individuals who may be susceptible to the disease. The term "preventing" refers to blocking the development of the disease in patients who may be susceptible to the disease but who have not yet experienced or exhibited the symptoms or symptomology of the disease.

[0071] Combination therapy The methods described herein can further include administering one or more additional therapeutic agents. The one or more additional therapeutic agents can be administered to the patient simultaneously or sequentially. The one or more additional therapeutic agents can be administered using different methods (e.g., topically).

[0072] In some embodiments, the additional therapeutic agent is selected from a JAK inhibitor. Additional JAK inhibitors may include ATI-50002 (JAK1 / 3 selective). Additional JAK inhibitors may include PF-06651600 (JAK3 selective). Additional JAK inhibitors may include PF06700841 (JAK1 / TYK2 selective). Additional JAK inhibitors may include baricitinib (JAK1 / JAK2 selective). Additional JAK inhibitors may include TYK2 selective inhibitors.

[0073] In some embodiments, the additional therapeutic agent is selected from an antioxidant. The antioxidant can be selected from pseudocatalase, vitamin E, vitamin C, ubiquinone, lipoic acid, fern, catalase / superoxide dismutase combination, and ginkgo. In some embodiments, the antioxidant can be further administered in combination with phototherapy. The administration of antioxidant during or before phototherapy aims to counteract the effect of oxidative stress induced by ultraviolet irradiation itself and to enhance the effectiveness of the phototherapy.

[0074] In some embodiments, the additional therapeutic agent includes an antihistamine.

[0075] In some embodiments, the additional therapeutic agent is an antimetabolite. Antimetabolites may include 5-fluorouracil.

[0076] In some embodiments, the additional therapeutic agent is selected from a topical corticosteroid, an immunostimulant, a calcineurin inhibitor, and phototherapy, hi some embodiments, the additional therapy is a systemic steroid or an immunosuppressant.

[0077] In some embodiments, the additional therapeutic agent includes steroids (e.g., orally administered steroids), including systemic steroids. Steroid treatment may include oral steroid minipulse therapy (e.g., using β-methasone and / or dexamethasone).

[0078] In some embodiments, the topical corticosteroid is selected from potentiated β-methasone dipropionate, clobetasol propionate, diflorasone diacetate, halobetasol propionate amcinonide, β-methasone valerate, desoximetasone, diflorasone diacetate, fluocinolone acetonide, halcinonide, and triamcinolone acetonide.

[0079] In some embodiments, the additional therapeutic agent includes an immunomodulatory agent. The immunomodulatory agent may include an anti-IL15 therapy (e.g., AMG 714 monoclonal antibody). The immunomodulatory agent may include an anti-IL36 therapy (e.g., imcidolimbab and spesolimab). The immunomodulatory agent may include an anti-TNFα therapy (e.g., etanercept and infliximab).

[0080] In some embodiments, the immunomodulatory agent is selected from apremilast, crisaborole, afamelanotide, minocycline, zinc, tofacitinib, AMG 714 monoclonal antibody, imcidolimbab, spesolimab cyclosporine, etanercept, infliximab, cyclophosphamide, cyclosporine, methotrexate, and oxo-dihydro-acridinyl sodium acetate (ODHAA).

[0081] In some embodiments, the calcineurin inhibitor is selected from tacrolimus (FK-506) and pimecrolimus.

[0082] In some embodiments, phototherapy involves exposure to ultraviolet light (eg, an excimer lamp or laser).

[0083] In some embodiments, the additional therapeutic agent is a Janus kinase inhibitor. In some embodiments, the Janus kinase inhibitor is administered locally.

[0084] In some embodiments, the additional therapeutic agent is a neurokinin 1 receptor antagonist (eg, aprepitant).

[0085] In some embodiments, the additional therapeutic agent includes an anti-IL-4 / IL-13 antibody, hi some embodiments, the anti-IL-4 / IL-13 antibody is selected from dupilumab, lebrikizumab, and tralokinumab.

[0086] In some embodiments, the additional therapeutic agent includes an anti-IL-5 antibody, hi some embodiments, the anti-IL-5 antibody is selected from benralizumab, mepolizumab, and reslizumab.

[0087] In some embodiments, the additional therapeutic agent includes an anti-IL-31 antibody. In some embodiments, the anti-IL-31 antibody includes nemolizumab.

[0088] In some embodiments, the additional therapeutic agent is an IL-6 antagonist or receptor antagonist. In some embodiments, the IL-6 receptor antagonist is tocilizumab.

[0089] Pharmaceutical Preparations and Dosage Forms When used as a pharmaceutical, the JAK1 pathway inhibitor or its pharma- ceutical acceptable salts can be administered in the form of pharmaceutical compositions. These compositions can be prepared by methods well known in the pharmaceutical art, and can be administered by various routes, depending on whether local or systemic treatment is desired and on the area to be treated. Administration can be topical (such as transdermal, epidermal, ophthalmic, and mucous membranes, including intranasal, intravaginal, and rectal delivery), pulmonary (e.g., by inhalation or insufflation of powder or aerosol, including by nebulizer, intratracheal or intranasal), oral, or parenteral. Parenteral administration can include intravenous, intraarterial, subcutaneous, intraperitoneal, intramuscular, or injection or infusion, or intracranial, e.g., intrathecal or intraventricular administration. Parenteral administration can be in the form of a single bolus dose, or can be, for example, by a continuous perfusion pump. Pharmaceutical compositions and formulations for topical administration may include transdermal patches, ointments, lotions, creams, gels, drops, suppositories, sprays, foams, liquids and powders. Conventional pharmaceutical carriers, aqueous, powder or oily bases, thickeners and the like may be necessary or desirable.

[0090] The present invention also includes pharmaceutical compositions containing the JAK1 pathway inhibitors described herein or pharma- ceutically acceptable salts thereof as active ingredients, in combination with one or more pharma- ceutical acceptable carriers (excipients).In some embodiments, the compositions are suitable for topical administration.When preparing the compositions, the active ingredient is usually mixed with excipients, diluted with excipients, or enclosed in a carrier, for example, in the form of capsule, sachet, paper or other container.When the excipient serves as a diluent, the excipient can be a solid, semi-solid, or liquid material, which functions as a vehicle, carrier, or medium for the active ingredient. Thus, the compositions can be in the form of tablets, pills, powders, lozenges, sachets, cachets, elixirs, suspensions, emulsions, solutions, syrups, aerosols (as a solid or in a liquid medium), ointments containing up to 10% by weight of the active compound, soft and hard gelatin capsules, suppositories, sterile injectable solutions and sterile packaged powders.

[0091] When preparing a formulation, the active compound can be milled to a suitable particle size before mixing with other components.If the active compound is substantially insoluble, it can be milled to a particle size of less than 200 mesh.If the active compound is substantially water-soluble, the particle size can be adjusted by milling to obtain a substantially uniform distribution in the formulation, for example, about 40 mesh.

[0092] The JAK1 pathway inhibitor may be milled using known milling procedures, such as wet milling, to obtain a particle size suitable for tablet formation and other formulation types. Micronized (nanoparticulate) preparations of the JAK1 selective inhibitor compound can be prepared by processes known in the art. See, for example, International Application No. 2002 / 000196.

[0093] The compositions can be formulated in unit dosage forms, each dosage containing a set amount of the active ingredient in free or salt form. The term "unit dosage form" refers to physically discrete units suitable as unitary dosages for human subjects and other mammals, each unit containing a predetermined amount of active material calculated to produce a desired therapeutic effect, in association with a suitable pharmaceutical excipient.

[0094] Similar dosages of the compounds described herein can be used in the methods and uses of the present invention.

[0095] The active compound may be effective over a wide dosage range and is generally administered in a therapeutically effective amount. However, it will be understood that the amount of the compound actually administered will usually be determined by the physician depending on the relevant circumstances, including the condition being treated, the selected route of administration, the compound actually administered, the age, weight and response of the individual patient, the severity of the patient's symptoms, etc.

[0096] When preparing solid compositions such as tablets, the active ingredient is mixed with pharmaceutical excipients to form a solid preformulation composition containing a homogeneous mixture of the compound of the present invention. When these preformulation compositions are referred to as homogeneous, the active ingredient is usually evenly distributed throughout the composition, so that the composition can be easily further divided into unit dosage forms of equal potency, such as tablets, pills, and capsules. This solid preformulation is then further divided into unit dosage forms of the above types, for example, containing about 0.1 to about 1000 mg of the active ingredient of the present invention.

[0097] The tablet or pill of the present invention may be coated or compounded to obtain a dosage form that provides the advantage of sustained action. For example, the tablet or pill may comprise an inner dosage component and an outer dosage component, the latter being in the form of an envelope over the former. These two components may be separated by an enteric layer that serves to resist disintegration in the stomach and allow the inner component to enter the duodenum intact or to delay its release. A variety of materials may be used for such enteric layers or coatings, including some polymeric acids and mixtures of polymeric acids with materials such as shellac, cetyl alcohol, and cellulose acetate.

[0098] Liquid forms for administration orally or by injection into which the compounds and compositions of the present invention may be incorporated include aqueous solutions, suitably flavored syrups, aqueous or oily suspensions, and emulsions flavored with edible oils, for example cottonseed oil, sesame oil, coconut oil, or peanut oil, as well as elixirs and similar pharmaceutical vehicles.

[0099] Compositions for inhalation or insufflation include liquids and suspensions in pharma- ceutically acceptable aqueous or organic solvents, or mixtures thereof, as well as powders. Liquid or solid compositions may contain suitable pharma- ceutically acceptable excipients as described above. In some embodiments, the compositions are administered by oral or nasal respiratory route for local or systemic effect. Compositions may be nebulized by use of inert gases. Nebulized solutions may be inhaled directly from the nebulizing device, or the nebulizing device may be attached to a face mask, tent, or intermittent positive pressure breathing machine. Solution, suspension, or powder compositions may be administered orally or nasally from a device that delivers the formulation in an appropriate manner.

[0100] Topical formulations may include one or more conventional carriers. In some embodiments, ointments may contain water and one or more hydrophobic carriers selected from, for example, liquid paraffin, polyoxyethylene alkyl ether, propylene glycol, white petrolatum, etc. The carrier composition of creams may be based on a combination of water with glycerol and one or more other components, for example, glycerol monostearate, PEG-glycerol monostearate, and cetylstearyl alcohol. Gels may be formulated using isopropyl alcohol and water, preferably in combination with other components, such as, for example, glycerol, hydroxyethylcellulose, etc.

[0101] The amount of compound or composition administered to a patient will vary depending on what is being administered, the purpose of the administration, e.g., prophylaxis or treatment, the condition of the patient, the method of administration, etc. In therapeutic applications, compositions can be administered to a patient already suffering from a disease in an amount sufficient to cure or at least partially arrest the symptoms of the disease and its complications. The effective amount will depend on the condition being treated, as well as the judgment of the attending physician depending on factors such as the severity of the disease, the age, weight, and general condition of the patient.

[0102] The compositions administered to a patient may be in the form of pharmaceutical compositions described above. These compositions may be sterilized by conventional sterilization techniques or may be sterile filtered. Aqueous solutions may be packaged for use as is or may be lyophilized, with the lyophilized preparations being mixed with a sterile aqueous carrier prior to administration. The pH of the compound preparations is usually 3-11, more preferably 5-9, most preferably 7-8. It will be appreciated that the use of certain of the above excipients, carriers or stabilizers will result in the formation of pharmaceutical salts.

[0103] The therapeutic amount of the compound of the present invention may vary according to, for example, the particular application to be treated, the method of administration of the compound, the health and condition of the patient, and the judgment of the prescribing physician. The proportion or concentration of the compounds described herein in a pharmaceutical composition may vary depending on many factors, including dosage, chemical properties (e.g., hydrophobicity), and route of administration. The dosage may depend on variables such as the type and extent of progression of the disease or disorder, the overall health of the particular patient, the relative bioefficacy of the selected compound, the formulation of excipients, and its route of administration. Effective doses may be extrapolated from dose-response curves derived from in vitro or animal model test systems.

[0104] The compositions of the invention can further comprise one or more additional pharmaceutical agents, such as chemotherapeutic agents, steroids, anti-inflammatory compounds, or immunosuppressants, examples of which are listed herein.

[0105] kit The present invention also includes pharmaceutical kits, for example, useful in the treatment and / or prevention of prurigo nodularis, which include one or more containers containing a pharmaceutical composition comprising a therapeutically effective amount of a compound described herein.As those skilled in the art can easily understand, such kits can further include one or more of various conventional pharmaceutical kit components, such as a container containing one or more pharma-ceutically acceptable carriers, additional containers, etc., as needed.Instructions indicating dosages of components, guidelines for administration, and / or guidelines for mixing components can also be included in the kit as an insert or label. EXAMPLES

[0106] The present invention will be described in more detail by specific examples.The following examples are presented for illustrative purposes and are not intended to limit the present invention in any way.Those skilled in the art will easily recognize various non-critical parameters that can be changed or modified to obtain essentially the same results.The compounds of the examples have been found to be JAK inhibitors by at least one assay described herein.

[0107] Example A: In vitro JAK kinase assay JAK1 pathway inhibitors that may be used to treat cytokine-related diseases or disorders are tested for inhibitory activity of JAK targets according to the following in vitro assay described in Park et al., Analytical Biochemistry 1999, 269, 94-104. The catalytic domains of human JAK1 (aa837-1142), JAK2 (aa828-1132) and JAK3 (aa781-1124) with N-terminal His tags are expressed in insect cells using baculovirus and purified. The catalytic activity of JAK1, JAK2 or JAK3 is assayed by measuring the phosphorylation of a biotinylated peptide. The phosphorylated peptide was detected by homogeneous time-resolved fluorescence (HTRF). The IC of the compounds was 50was measured for each kinase in a 40 μL reaction containing enzyme, ATP, and 500 nM peptide in 50 mM Tris (pH 7.8) buffer with 100 mM NaCl, 5 mM DTT, and 0.1 mg / mL (0.01%) BSA. An IC of 1 mM 50 For measurements, the ATP concentration in the reaction was 1 mM. Reactions were carried out at room temperature for 1 hour and then stopped with 20 μL of assay buffer containing 45 mM EDTA, 300 nM SA-APC, and 6 nM Eu-Py20 (Perkin Elmer, Boston, MA). Binding to europium-labeled antibodies was carried out for 40 minutes and the HTRF signal was measured on a Fusion plate reader (Perkin Elmer, Boston, MA). Compounds in Table 1 were tested in this assay and showed IC values ​​also found in Table 1. 50 It was found to have value.

[0108] Example B: Pharmacological inhibition of JAK1-mediated PN pathophysiology Full-thickness (4 mm) skin biopsies of active disease, untreated prurigo nodularis were obtained. Two 4 mm punch biopsies were obtained for each lesion (see FIG. 1). The biopsies were divided longitudinally into two pieces for a total of four 2 mm full-thickness sections, which were then placed in culture. FIG. 1 shows a depiction of the skin punch biopsy used for the pharmacological inhibition of JAK1-mediated PN pathophysiology. The biopsies were then cultured for 8 days in the presence of vehicle control (DMSO) or a small molecule JAK1 inhibitor compound (Compound 1 in this example). Every two days, the supernatants were collected for cytokine / protein analysis. The collected supernatants were analyzed to quantify chemokines, cytokines, and growth factors secreted by the skin explants in culture. A total of 51 proteins were detected and quantified in the culture supernatants by Procarta Multiplex Immunoassay (Thermo Fisher, Waltham, MA). Supernatants and standards were incubated overnight at 4°C. Assay plates were read on a Luminex 200 Instrument (Luminex Corporation, Austin, TX). Concentrations were estimated from antigen calibration curves for each analyte. Percent inhibition for each analyte was calculated using DMSO (C D ) and a culture medium containing the JAK1 inhibitor compound 1 (C J ) in the culture medium, i.e., (C D -C J ) / C D See FIG. 2.

[0109] Compound 1 was shown to inhibit key chemokines, cytokines, and growth factors involved in key disease pathways (see Table 2 and Figure 2). These key chemokines, cytokines, and growth factors are involved in the development of inflammation, itch (pruritus), or lesions that may be associated with PN. For example, PN lesional skin has been shown to have increased levels of CXCL8, CXCL10, and interferon-gamma when compared to non-lesional control skin (Tsoi et al., J Allergy Clin Immunol 149, 1329-39 (2022)).

[0110] In addition, other cytokines such as IL-31 and IL-17 have also been shown to play a role in PN. For example, CD4+ T cells have been shown to significantly infiltrate lesional PN compared to non-lesional control skin (Wong, et al., J Investigative Dermatology, 140(3), 702-706.e2 (2020)). CD4+ T cells can express interleukin 31 (IL-31), which has been shown to be an indicator of itch, a key symptom of PN (Stander, et al., N Engl J Med, 382:706-716 (2020)). Expressed IL-31 has been shown to play a role in the development of PN with inhibition of IL-31 by nemolizumab, resulting in improvement of itch and skin lesions in PN patients (Stander, supra). When PN skin was cultured with nemolizumab (an IL-31 inhibitor), reduced IL-17 levels in lesional skin were observed, suggesting that inhibition of IL31R signaling may affect IL-17 expression (Tsoi, supra). Furthermore, IL-17-expressing cells are increased in the dermis of PN lesional skin compared to control skin (Wong, supra). Furthermore, IL-2 is important for the growth, maintenance, and function of infiltrating + T cells (Furtado, J Exp Med, 196(6):851-7(2002)) and is a potent pruritus mediator (Xie, et al., J Dermatol, 46(3), 177-185 2019)). Furthermore, the epidermis of PN skin has been shown to be positive for STAT6, a marker for Th2 cytokines such as IL-5 and IL-31 (Mullins, et al., NLM, StatPearls Publishing, https: / / www.ncbi.nlm.nih.gov / books / NBK459204), Sep.14, 2021). Finally, a pathogenesis of PN has been suggested, especially around the itch (Zhong et al, Acta Dermato-Venereologicavolume 99, 579-5861 May(2019)). In the skin, keratinocytes produce IL-34.

[0111] Thus, Compound 1 has been shown to inhibit multiple key chemokines, cytokines, and growth factors involved in PN and / or the underlying inflammation and itch associated with PN. [Table 2]

[0112] Example C: Phase II Study of Compound 1 Study design A phase 2 randomized, double-blind, placebo-controlled, dose-ranging study of the efficacy and safety of JAK inhibitor Compound 1 treatment in patients with prurigo nodularis is described. Figure 3 shows a study conducted with Compound 1 to treat participants with prurigo nodularis. The study may include a 24-week double-blind extension period in participants with prurigo nodularis. Participants may include people with prurigo nodularis (e.g., clinically diagnosed for at least 3 months) who have a total of 20 or more nodules, nodules in 2 or more different body regions, an IGA of 3 or more, and severe itch. The study may include both men and women aged 18 years or older.

[0113] Participants will participate for up to 48 weeks, including up to 4 weeks for screening, up to 40 weeks for treatment (16 weeks in the placebo-controlled period and 24 weeks in the extension), and 4 weeks for safety follow-up. Approximately 105 participants will be randomized 1:1:1 to 1 into 3 treatment arms: Dose A (45 mg (e.g., Compound 1 in a 15 mg tablet and 2 placebo tablets), Dose B (75 mg (e.g., Compound 1 in a 15 mg tablet), or placebo (e.g., 5 placebo tablets)). Compound 1 or matching placebo will be taken orally QD. Based on efficacy response at week 16, participants will receive one of two doses of active study drug for an additional 24 weeks. For example, a person is a responder if they respond to treatment by achieving a 4 or more point reduction in the Pruritus NRS (based on the average weekly pruritus score) and an IGA-TS (a score of 0 or 1 with a 2 or more grade improvement from baseline) and is not a responder if they do not meet the definition of a responder.

[0114] In some embodiments, the criteria for participants to be included in the study include any one of the following: male or female aged 18 years or older; clinical diagnosis of prurigo nodularis for at least 3 months; having 20 or more nodules; having nodules in 2 or more different body areas; IGA of 3 or more; and severe itch. Severe itch can be defined as a mean itch NRS score of 5 or more in the week prior to screening; and a mean itch NRS of 5 or more in the week prior to Day 1 (Note: participants must have pre-baseline itch data for at least 4 out of 7 days to calculate the mean and to be randomized). Participants must be using appropriate, medically acceptable means of contraception and be willing not to become pregnant or father a child during study participation. Female participants must also have a negative serum pregnancy test at screening and a negative urine pregnancy test on Day 1 prior to randomization.

[0115] Embodiments of the activity schedules for the placebo control and extension periods are shown in Tables 3 and 4, respectively. [Table 3-1]

Table 3-2

Table 3-3

Table 3-4

Table 4-1

Table 4-2

Table 4-3

Table 4-4

[0116] In some embodiments, criteria for excluding participants from the study include any one of the following: chronic pruritus due to conditions other than prurigo nodularis (e.g., scabies, bites, lichen Widal's, psoriasis, acne, folliculitis, habitual picking disease, lymphomatoid papulosis, chronic actinic dermatitis, dermatitis herpetiformis, sporotrichosis, bullous disease, excoriation syndrome); neuropathic and psychogenic pruritus (e.g., paresthesia dorsalis, pruritus cutaneous, small fiber neuropathy, skin picking syndrome, or delusional parasitosis); and history of concurrent medical conditions and other diseases. History of concurrent medical conditions and other diseases may include the following: history of thrombocytopenia, coagulation disorder, platelet dysfunction, or thrombotic events; history of immunocompromise (e.g., lymphoma, acquired immune deficiency syndrome, Wiskott-Aldrich syndrome) or malignancy within 5 years prior to baseline; chronic or acute infection requiring treatment with systemic antibiotics, antivirals, anthelmintics, antiprotozoals, or antifungals within 2 weeks prior to the baseline visit; active acute cytoplasmic renal failure within 1 week prior to the baseline visit; fungal, fungal, or viral skin infections (e.g., herpes simplex, shingles, chickenpox, clinically infected atopic dermatitis, impetigo); any other concomitant skin disease (e.g., generalized erythroderma such as Netherton syndrome), pigmentation, or extensive scarring that, in the investigator's opinion, may interfere with the evaluation of PN lesions or efficacy studies or may compromise the participant's safety; current herpes zoster infection, history of disseminated herpes simplex, or history of shingles; history of malignancy, including melanoma, lymphoma, and leukemia, within 5 years prior to Day 1, except for successfully treated nonmetastatic cutaneous squamous cell carcinoma, basal cell carcinoma, or in situ localized carcinoma of the cervix; and albinism.

[0117] In some embodiments, the criteria for excluding patients are receipt of any of the following treatments within the indicated washout period prior to the baseline visit: current use of anticoagulants or medications known to cause thrombocytopenia; 4 weeks - systemic corticosteroids or adrenocorticotropic hormone analogs, cyclosporine, methotrexate, azathioprine, or other systemic immunosuppressants or immunomodulators (e.g., mycophenolate or tacrolimus) (Note: Use of corticosteroid inhalers and nasal sprays is permitted if deemed acceptable by the investigator and sponsor, and use of oral corticosteroids for non-dermatological conditions (e.g., asthma exacerbations, bronchitis) for 7 days or less is permitted); 2 weeks - systemic antibiotics and vaccinations; sedating antihistamines (non-sedating antihistamines are permitted) unless on a long-term stable regimen (Note: live vaccines are not recommended during the course of the study); 1 week - corticosteroids, calcineurin inhibitors, PDE4 inhibitors, coadministration of use of any topical treatments (other than bland emollients) for PN, such as water tar (shampoo), topical antibiotics, antimicrobial cleansing body wash / soap (unless on a long-term stable regimen); for any topical or systemic JAK or TYK2 inhibitors, less than 12 weeks or 5 half-lives (if known), whichever is longer; for any investigational or experimental treatment, less than 12 weeks or 5 half-lives (if known), whichever is longer; for systemic immunosuppressive or immunoregulatory biologics, less than 12 weeks or 5 half-lives (if known), whichever is longer; for live vaccines less than 6 weeks or plans to receive a live vaccine during the study or within 6 weeks after the last dose of study drug; for any oral or topical PDE-4 inhibitors (e.g., apremilast, crisaborole), less than 3 weeks; for strong and moderate systemic CYP3A4 inhibitors and strong systemic CYP3A4 inducers, less than 2 weeks or 5 half-lives (if known), whichever is shorter; and for antiplatelet agents, less than 1 week. NOTE: Low-dose acetylsalicylic acid (≤100 mg QD) is permitted for cardiovascular prophylaxis at the investigator's discretion.

[0118] In some embodiments, criteria for excluding participants from the study include uncontrolled thyroid function at screening as measured by the investigator (Note: if the participant has a history of thyroid disease and is on treatment, the participant must be on a stable thyroid regimen for at least 3 months prior to Day 1). In some embodiments, criteria for excluding participants from the study include laboratory values ​​at screening, as defined in Table 5. [Table 5]

[0119] In some embodiments, the criteria for excluding participants from the study include evidence of HBV or HCV infection, or risk of reactivation. Participants cannot be positive for hepatitis B surface antigen, anti-hepatitis B core antibody, or HCV antibody; patients also cannot be positive for HBV DNA or HCV RNA if it is necessary to carry out these reflex studies (participants who have been vaccinated against HBV and have positive antibodies to HBsAg (hepatitis B surface antibody) as the only evidence of pre-exposure and have no previous history of HBV infection can participate in the study; participants with a history of HCV infection who are antibody positive, have been successfully treated more than 12 weeks ago, and have no detectable HCV RNA are allowed into the study). In some embodiments, the criteria for excluding participants from the study include known HIV infection.

[0120] In some embodiments, criteria for excluding participants from the study include evidence of active, latent, or inadequately treated infection with Mycobacterium tuberculosis (i.e., TB), as defined by the following: a positive QFT-GIT or a positive Mantoux / PPD tuberculin skin test performed prior to or within 12 weeks of Day 1 will exclude; a history of latent or active TB infection, either untreated or inadequately treated; if the participant has previously received a sufficient course of therapy for either latent or active TB infection, neither QFT-GIT nor Mantoux / PPD tuberculin skin test is required, but a chest x-ray(s) or other appropriate diagnostic imaging performed within 3 months of Day 1 is required; and participants currently receiving treatment for an active TB infection must be excluded.

[0121] In some embodiments, the criteria for excluding participants from the study include known hypersensitivity or serious reaction to Compound 1 or Compound 1 excipients. In some embodiments, the criteria for excluding participants from the study include pregnant or breastfeeding participants, or those who are thought to be pregnant. In some embodiments, the criteria for excluding participants from the study include a history of alcoholism or drug addiction within one year prior to screening, or current alcohol or drug use, which, in the opinion of the investigator, would interfere with the participant's ability to comply with the dosing schedule and study surveys. In some embodiments, the criteria for excluding participants from the study include the participant's inability or likelihood to comply with the dosing schedule and study surveys, in the opinion of the investigator.

[0122] In some embodiments, the efficacy of the treatment methods disclosed herein can be established based on the physician global assessment (IGA). IGA is an overall severity rating of 0 to 4, as shown in Table 6. In some embodiments, IGA-TS (physician global assessment of treatment success) is defined as an IGA score of 0 or 1 with an improvement of 2 or more grades from baseline. Efficacy can be established by examining the proportion of participants who achieve an IGA-TS (IgA of 0 or 1 with a reduction of 2 points) at a given time point (e.g., at week 16). [Table 6]

[0123] In some embodiments, the efficacy of the treatment methods disclosed herein can be established based on the pruritus numerical rating scale (pruritus NRS). Participants can be issued with a handheld device (eDiary) for daily surveys. Participants can be instructed to complete the diary during specific time points required for each survey, starting from the screening date, until a set end point (e.g., week 40) or treatment discontinuation. In some embodiments, efficacy can be demonstrated by achieving a pre-defined percentage of participants achieving at least a 2 or 4 point improvement in the pruritus NRS (e.g., at week 16). In some embodiments, efficacy can be demonstrated by observing the time to a 2 or more point or 4 or more point improvement from baseline in the pruritus NRS. In some embodiments, compound 1 and / or the methods of use described herein result in an improvement in the participant's response to the NRS from baseline.

[0124] In some embodiments, the efficacy of the treatment methods disclosed herein can be established based on nodule assessment. In some embodiments, the number of nodules is counted at each clinic visit, and disease activity is examined with the PAS. In some embodiments, Compound 1 and / or the methods of use described herein result in an improvement in participants' response to the PAS from baseline. The PAS (Prurigo Activity Score) examines disease activity in terms of the percentage of prurigo lesions on the abrasion / upper integument (reflecting active scratching), and the percentage of healed prurigo lesions is measured in the subcategory "activity" of the PAS to quantify the change in prurigo nodular skin lesions.

[0125] In some embodiments, the efficacy of the treatment methods disclosed herein can be established based on photographs of the affected areas. Photographs of the body areas affected by PN are obtained at the time of the clinic visit. All sites are photographed using 2-dimensional photography to photograph the body areas containing PN nodules.

[0126] In some embodiments, the efficacy of the treatments disclosed herein can be established based on patient-reported outcomes (PROs). In some embodiments, the efficacy of the treatments disclosed herein can be established based on the Dermatology Life Quality Index (DLQI). In some embodiments, Compound 1 and / or the methods of use described herein result in an improvement in participants' response to the DLQI from baseline. The DLQI is a validated questionnaire (e.g., 10 questions) to measure how much skin symptoms have affected participants in the previous 7 days, as outlined in the SoAs. Participants answer the questionnaire with either (1) a lot, (2) a lot, (3) a little, or (4) not at all. The questionnaire can be analyzed under six headings: symptoms and sensations; daily activities; leisure; work and school; personal relationships; and treatment.

[0127] In some embodiments, the efficacy of the treatments disclosed herein can be established based on the Patient Global Change in Condition (PGIC). In some embodiments, Compound 1 and / or the methods of use described herein result in an improvement in the participant's response to PGIC from baseline. The PGIC is a participant self-reported measure that reflects the participant's belief about the efficacy of the treatment. The PGIC is a 7-point scale that describes the participant's rating of overall improvement and is captured during the site visit. For example, participants may respond with: "Since the start of treatment receiving this study, PN in the areas treated with the study drug has: (1) significantly improved, (2) much improved, (3) slightly improved, (4) unchanged, (5) slightly worse, (6) much worse, and (7) significantly worse." In some embodiments, efficacy can be assessed based on participants' improvement in the Hospital Anxiety and Depression Scale (HADS). In some embodiments, Compound 1 and / or the methods of use described herein result in an improvement in participants' response to the HADS from baseline. The HADS is a 14-item questionnaire that investigates the level of anxiety and depression that a person currently experiences. There are seven questions each to measure anxiety and depression, and each question has four possible answers (answers are scored as 0, 1, 2, or 3). Separate scores are calculated for anxiety and depression.

[0128] In some embodiments, efficacy can be assessed based on participants' improvement in the Functional Assessment of Chronic Illness Therapy-Fatigue scale (FACIT-Fatigue scale). In some embodiments, Compound 1 and / or the methods of use described herein result in an improvement in participants' response to the FACIT-Fatigue scale from baseline. The FACIT-Fatigue scale is a validated instrument with a 13-point questionnaire originally designed to investigate fatigue in patients with chronic illnesses over a 7-day recall period. Each item uses a 5-point scale ranging from "4=not at all" to "0=very true". The total FACIT-Fatigue score ranges from 0 (maximum fatigue) to 52 (no fatigue). Participants must complete the questionnaire before on-site personnel administer any clinical investigations and before any interaction with on-site personnel occurs to avoid biasing participants' responses.

[0129] In some embodiments, efficacy can be assessed based on improvement in the participant's PROMIS sleep scale. In some embodiments, Compound 1 and / or the methods of use described herein result in an improvement in the participant's response to the PROMIS sleep scale from baseline. With the PROMIS sleep scale, sleep is investigated using two of the PROMIS: short form, sleep-related dysfunction, and sleep disturbance. The PROMIS short form-sleep-related dysfunction questionnaire assesses self-reported perceptions of alertness, sleepiness, and fatigue during normal wake time, as well as perceived dysfunction during wakefulness associated with sleep problems or alertness failure. The questionnaire has eight questions, which are rated using a five-point scale. Scores range from 8 to 40, with higher scores indicating greater severity of sleep-related dysfunction. The PROMIS short form-sleep disturbance questionnaire assesses self-reported perceptions of sleep quality, sleep depth, and sleep-related restoration. Sleep disturbance does not focus on specific sleep disorder symptoms and does not subjectively estimate sleep quality (e.g., total amount of sleep, time to fall asleep, amount of wakefulness during sleep). Short forms of sleep disturbance are genetic rather than disease-specific. The questionnaire has eight questions and is rated using a five-point scale. Scores range from 8 to 40, with higher scores indicating greater severity of sleep disturbance.

[0130] In some embodiments, efficacy can be assessed based on the improvement of the participant's EQ-5D-5L questionnaire. In some embodiments, Compound 1 and / or the methods of use described herein result in an improvement in the participant's response to the EQ-5D-5L questionnaire from baseline. The EQ-5D-5L questionnaire is a standardized and validated instrument for use as a measure of health outcomes. The EQ-5D-5L questionnaire provides data for use in economic models and analyses, including the evolution of health utility, or quality-adjusted life years (QALYs). The EQ-5D-5L questionnaire is composed of two sections: the EQ-5D explanatory system and the EQ VAS. The explanatory system includes five characteristics: mobility, self-care, usual activities, pain / discomfort, and anxiety / depression.

[0131] Each characteristic has five levels: level 1 is "no problem", level 2 is "slight problem", level 3 is "moderate problem", level 4 is "severe problem", and level 5 is "extreme problem". This part of the EQ-5D-5L questionnaire provides descriptive profiles that can be used to generate health state profiles. For example, a participant with "health state 12345" has no problems with mobility, slight problems with self-care (washing or dressing), moderate problems with performing usual activities, severe pain or discomfort, and extreme anxiety or depression. Each health state can optionally be assigned a summary index score based on the societally desirable weight for the health state. These weights, sometimes called efficacies, are often used to calculate QALYs for use in health economic analyses. Health state index scores typically range from <0 (where 0 is a health state value equivalent to death and negative values ​​represent values ​​worse than death) to 1 (perfect health), with higher scores indicating greater health efficacies. Health preferences often represent national or regional values ​​and may therefore vary between countries / regions. The WQ VAS records participants' self-rated health on a vertical visual analogue scale (0–100), where the endpoints are "best imaginable health (score 100)" and "worst imaginable health (score 0)."

[0132] Several populations are analyzed. In some embodiments, the intention to treat (ITT) population is analyzed. The ITT population includes all randomized participants. Treatment groups for this population are defined according to treatment assignment at the time of randomization. In some embodiments, the safety population is analyzed. The safety population includes all participants who received at least one dose of study drug, and treatment groups for this population are determined according to the actual treatment the participant received on Day 1. In some embodiments, the PK / PD-evaluable population is analyzed. The PK / PD-evaluable population includes participants who received at least one dose of study drug (Compound 1 and / or placebo) and received at least one post-dose PK / PD sample / survey. A study pharmacokinetics expert reviews the data listings of participants' dosing and sample records to identify participants to be excluded from the analysis.

[0133] statistical analysis In some embodiments, the primary analysis is based on the ITT population. The primary alternative hypothesis (superiority of the Compound 1 group compared to the placebo group in the proportion of participants who achieve a 4-item improvement in pruritus NRS (responders) at week 16) is tested using rigorous logistic regression. The model includes treatment groups and stratification factors. The raw p-values ​​of the Compound 1 group and the placebo group are compared to the pre-specified significance level. The odds ratios and corresponding 95% confidence intervals are also provided. All non-responders in the placebo-controlled period, as well as all participants who are missing post-baseline values, are defined as non-responders in the non-responder imputation analysis.

[0134] In some embodiments, secondary efficacy analysis is performed on the ITT population. Descriptive statistics are used to summarize all secondary efficacy variables. For the binary endpoint, the proportion of participants achieving IGA-TS (IGA of 0 or 1 with a 2-point reduction) at week 16, summary statistics include sample size, frequency, and proportion. For the time-to-event endpoint of time to 2 or more points improvement from baseline in pruritus NRS, Kaplan-Meier curves are presented by treatment group. The number of participants, events, and censoring are summarized by treatment group. KM estimates for median time are presented with their 95% CI.

[0135] In some embodiments, safety analysis is performed on the safety population. A TEAE is any AE reported after the first dose of study drug, either for the first time or for a worsening of a pre-existing event, up to 28 days after the last dose of study drug. Although the analysis of AEs is limited to TEAEs, the data listing includes all AEs regardless of when drug administration was investigated. Adverse events are tabulated by MedDRA preferred time period and system organ class. AE severity is based on the National Cancer Institute CTCAE v5.0, using grades 1-5.

[0136] The subset of AEs considered by the investigator to be related to the study drug will be considered treatment-related AEs. If the investigator does not specify the relationship of the AE to the study drug, the AE will be considered related to treatment. The incidence of AEs and treatment-related AEs will be tabulated.

[0137] Clinical laboratory data will be analyzed using summary statistics; no formal treatment group comparisons are planned. Laboratory test values ​​outside of normal ranges will be examined for severity based on normal ranges for clinical reference laboratories. The occurrence of abnormal laboratory values ​​and shift tables compared to baseline will be tabulated. Descriptive statistics and mean change from baseline will be determined for vital signs (blood pressure, pulse, respiratory rate, and temperature) at each study time. Descriptive statistics and mean change from baseline will be determined for each ECG parameter at each study time.

[0138] In some embodiments, descriptive statistics are used to summarize the efficacy variables. For categorical measurements, summary statistics include sample size, frequency, and percentage. For continuous measurements, summary statistics include sample size, mean, median, standard deviation, minimum, and maximum. Summary measures for continuous measurements are presented for baseline, actual measurements at each visit, and, if applicable, change from baseline and percentage change at each visit. For time-to-event endpoints, the number of participants, number of events, and number of censors are summarized by treatment group. KM estimates for median times are presented with their 95% CI.

[0139] In some embodiments, pharmacokinetic analysis is performed in a PK-evaluable population. Compound 1 plasma concentration data is analyzed by a population PK modeling approach. Such data is combined with data from other studies in clinical development programs in which healthy participants, hidradenitis suppurativa participants, and / or vitiligo participants are surveyed to develop or refine a population PK model, and if significant, is included in the model as a covariate. This model can be used to investigate the effect of intrinsic and exogenous covariates on the PK of Compound 1 and to measure individual plasma exposure measurements (such as steady-state peak, trough, and / or time-averaged concentrations). The data analysis plan and results of the population PK analysis are reported separately.

[0140] In some embodiments, pharmacokinetic / pharmacodynamic analyses are performed in PK / PD evaluable populations. For example, clinical responses such as platelet counts are analyzed. Data analysis plans and results of population PK / PD analyses are reported separately.

[0141] In addition to those described herein, various modifications of the present invention will become apparent to those skilled in the art from the foregoing description. Such modifications are also intended to fall within the scope of the appended claims. Each reference, including all patents, patent applications, and publications cited in this application, is hereby incorporated by reference in its entirety.

Claims

1. A pharmaceutical composition for treating prurigo nodularis in a subject, comprising a JAK1 pathway inhibitor or a pharma- ceutical acceptable salt thereof.

2. 2. The pharmaceutical composition of claim 1, wherein the JAK1 pathway inhibitor or a pharma- ceutically acceptable salt thereof is selective for JAK1 over JAK2, JAK3, and Tyk2.

3. 2. The pharmaceutical composition of claim 1, wherein the JAK1 pathway inhibitor or a pharma- ceutically acceptable salt thereof is 4-[3-(cyanomethyl)-3-(3',5'-dimethyl-1H,1'H-4,4'-bipyrazol-1-yl)azetidin-1-yl]-2,5-difluoro-N-[(1S)-2,2,2-trifluoro-1-methylethyl]benzamide, or a pharma- ceutically acceptable salt thereof.

4. The pharmaceutical composition of claim 1, wherein the JAK1 pathway inhibitor or a pharma- ceutically acceptable salt thereof is a pharma- ceutically acceptable salt of 4-[3-(cyanomethyl)-3-(3',5'-dimethyl-1H,1'H-4,4'-bipyrazol-1-yl)azetidin-1-yl]-2,5-difluoro-N-[(1S)-2,2,2-trifluoro-1-methylethyl]benzamide.

5. 5. The pharmaceutical composition of claim 4, wherein the JAK1 pathway inhibitor or a pharma- ceutical acceptable salt thereof is 4-[3-(cyanomethyl)-3-(3',5'-dimethyl-1H,1'H-4,4'-bipyrazol-1-yl)azetidin-1-yl]-2,5-difluoro-N-[(1S)-2,2,2-trifluoro-1-methylethyl]benzamide phosphate.

6. 2. The pharmaceutical composition of claim 1, wherein the JAK1 pathway inhibitor or a pharma- ceutical acceptable salt thereof is {1-{1-[3-fluoro-2-(trifluoromethyl)isonicotinoyl]piperidin-4-yl}-3[4-(7H-pyrrolo[2,3-d]pyrimidin-4-yl)-1H-pyrazol-1-yl]azetidin-3-yl}acetonitrile, or a pharma-ceutical acceptable salt thereof.

7. The pharmaceutical composition of claim 1, wherein the JAK1 pathway inhibitor or a pharma- ceutically acceptable salt thereof is a pharma- ceutically acceptable salt of {1-{1-[3-fluoro-2-(trifluoromethyl)isonicotinoyl]piperidin-4-yl}-3[4-(7H-pyrrolo[2,3-d]pyrimidin-4-yl)-1H-pyrazol-1-yl]azetidin-3-yl}acetonitrile.

8. 8. The pharmaceutical composition of claim 7, wherein the JAK1 pathway inhibitor or a pharma- ceutical acceptable salt thereof is {1-{1-[3-fluoro-2-(trifluoromethyl)isonicotinoyl]piperidin-4-yl}-3[4-(7H-pyrrolo[2,3-d]pyrimidin-4-yl)-1H-pyrazol-1-yl]azetidin-3-yl}acetonitrile adipate.

9. The pharmaceutical composition of any one of claims 1 to 8, wherein the JAK1 pathway inhibitor, or a pharma- ceutically acceptable salt thereof, is administered in a daily dose of about 5 mg to about 95 mg, on a free base basis.

10. The pharmaceutical composition of any one of claims 1 to 8, wherein the JAK1 pathway inhibitor, or a pharma- ceutically acceptable salt thereof, is administered in a daily dose of about 45 mg, or about 75 mg, on a free base basis.

11. The pharmaceutical composition of any one of claims 1 to 8, wherein the JAK1 pathway inhibitor or a pharma- ceutically acceptable salt thereof is administered in a daily dose of about 45 mg to about 75 mg on a free base basis.

12. The pharmaceutical composition of any one of claims 1 to 8, wherein the JAK1 pathway inhibitor or a pharma- ceutically acceptable salt thereof is administered in a daily dose of about 45 mg on a free base basis.

13. The pharmaceutical composition of any one of claims 1 to 8, wherein the JAK1 pathway inhibitor or a pharma- ceutically acceptable salt thereof is administered in a daily dose of about 75 mg on a free base basis.

14. The pharmaceutical composition of any one of claims 1 to 8, wherein the JAK1 pathway inhibitor, or a pharma- ceutically acceptable salt thereof, is administered in combination with a further therapeutic agent.

15. 15. The pharmaceutical composition of claim 14, wherein the additional therapeutic agent is a neurokinin 1 receptor antagonist.

16. 16. The pharmaceutical composition of claim 15, wherein the neurokinin 1 receptor antagonist is aprepitant.

17. The pharmaceutical composition of claim 14, wherein the additional therapeutic agent is an anti-IL-4 and / or an IL-13 antibody.

18. The pharmaceutical composition of claim 17, wherein the anti-IL-4 and / or IL-13 antibody is dupilumab, lebrikizumab, or tralokinumab.

19. The pharmaceutical composition of claim 14, wherein the additional therapeutic agent is an anti-IL-5 antibody.

20. The pharmaceutical composition of claim 19, wherein the anti-IL-5 antibody is benralizumab, mepolizumab, or reslizumab.

21. The pharmaceutical composition of claim 14, wherein the additional therapeutic agent is an anti-IL-31 antibody.

22. The pharmaceutical composition of claim 21, wherein the anti-IL-31 antibody is nemolizumab.

23. The pharmaceutical composition of any one of claims 1 to 8, further comprising at least one pharma- ceutically acceptable carrier or excipient.