Quinoline Derivatives for Use in the Treatment of Inflammatory Diseases - Patent application
By using specific compounds, such as the compounds in formula (I) and their phosphate forms, a variety of inflammatory diseases can be effectively treated and prevented, and the inflammatory indicators can be significantly improved, and the problem of difficult to effectively treat and prevent inflammatory diseases in the prior art is solved.
Patent Information
- Application Number
- JP2021535248
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2018-12-20
- Filing Date
- 2019-12-19
- Publication Date
- 2025-05-16
- Estimated Expiration
- 2039-12-19
AI Technical Summary
The prior art is difficult to effectively treat and prevent various inflammatory diseases, disorders or conditions.
It is administered in the patient in need of treatment by oral or other route using a specific compound, such as the compound in formula (I) and its phosphate form. These compounds have anti-inflammatory effects and are able to treat a variety of inflammatory diseases.
These compounds significantly alleviate the symptoms of inflammatory disease and improve inflammatory indicators in patients, such as NAFLD activity score (NAS), steatohepatitis score, inflammation score, and spherical cell swelling score in non-alcoholic steatohepatitis (NASH) models.
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Abstract
Description
[Background technology]
[0001] Inflammation is a defensive response by the immune system to tissue injury and infection. However, the inflammatory response can be damaging to the body in some circumstances. In the acute phase, inflammation is characterized by pain, heat, redness, swelling, and loss of function.
[0002] Inflammatory diseases encompass a broad range including inflammatory diseases associated with autoimmune diseases, inflammatory diseases of the central nervous system (CNS), inflammatory diseases of the joints, inflammatory gastrointestinal diseases, and inflammatory skin.
[0003] Several quinoline derivatives are described in WO 2010 / 143169, WO 2012 / 080953, WO 2016 / 009065 and WO 2016 / 009066, the contents of which are incorporated herein by reference in their entireties. Summary of the Invention [Problem to be solved by the invention]
[0004] It has now been found that the compounds of the present invention and pharma- ceutically acceptable compositions thereof are useful for treating and / or preventing a variety of inflammatory diseases, disorders or conditions. In one aspect, the present invention provides a method for treating an inflammatory disease, disorder or condition, comprising administering to a patient in need thereof a compound of formula (I) or a pharma- ceutically acceptable salt thereof: [ka] where each variable is as defined and described herein. [Brief description of the drawings]
[0005] [Figure 1]FIG. 1 shows the NAFLD activity score in the STAM model of nonalcoholic steatohepatitis (NASH study). [Diagram 2] FIG. 2 shows the steatosis scores in the STAM model of non-alcoholic steatohepatitis (NASH study) implemented on ABX464 and its glucuronide metabolites (Example 2). [Diagram 3] FIG. 3 shows the inflammation scores in the STAM model of non-alcoholic steatohepatitis (NASH study) performed on ABX464 and its glucuronide metabolites (Example 2). [Figure 4] FIG. 4 shows the ballooning scores in the STAM model of non-alcoholic steatohepatitis (NASH study) implemented on ABX464 and its glucuronide metabolites (Example 2). [Diagram 5] FIG. 5 shows areas of fibrosis in histological analysis in the STAM model of non-alcoholic steatohepatitis (NASH study) performed on ABX464 and its glucuronide metabolites (Example 2). DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0006] General description of specific embodiments of the present invention:
[0007] The compounds of the present invention, and pharmaceutical compositions thereof, are useful for treating inflammatory diseases, disorders or conditions, such as those described herein.
[0008] In one aspect, the present invention provides a method for treating an inflammatory disease, disorder or condition comprising administering to a patient in need thereof a compound of formula (I) below or a pharma- ceutically acceptable salt thereof. [ka] Where: Z is C or N; V is C or N; [ka] means an aromatic ring, where V is C or N, and if V is N, then V is in the ortho, meta or para position relative to Z; Each R is independently a hydrogen atom, a halogen atom, -CN, hydroxyl, (C1-C3)fluoroalkyl, (C1-C3)fluoroalkoxy, (C3-C6)cycloalkyl, -NO2, -NR1R2, (C1-C4)alkoxy, phenoxy, -NR1-SO2-NR1R2, -NR1-SO2-R1, -NR1-C(=O)-R1, -NR1-C(=O)-NR1R2, -SO2-NR1R2, -SO3H, -O-SO2-OR3, -OP(=O)-(OR3)(OR4), -O-CH2-COOR3, (C1-C3)alkyl, where the alkyl is optionally a hydroxyl group, a group of formula (IIa) [ka] Or a group of the following formula (IIIa) [ka] optionally mono- or di-substituted by Q is N or O, with the proviso that when Q is O, then R″ is absent; Each of R1 and R2 is independently a hydrogen atom or a (C1-C3) alkyl; Each of R3 and R4 is independently a hydrogen atom, Li+, Na+, K+, N+(Ra)4, or benzyl; n is 1, 2 or 3; n' is 1, 2 or 3; Each R' is independently a hydrogen atom, a (C1-C3) alkyl, a hydroxyl, a halogen atom, -NO2, -NR1R2, morpholinyl, morpholino, N-methylpiperazinyl, a (C1-C3) fluoroalkyl, a (C1-C4) alkoxy, -OP(=O)-(OR3)(OR4), -CN, a group of formula (IIa) below, [ka] Or a group of the following formula (IIIa) [ka] and A is a covalent bond, an oxygen atom or NH; B is a covalent bond or NH; m is 1, 2, 3, 4 or 5; p is 1, 2 or 3; Each of Ra and Rb is independently a hydrogen atom, a (C1-C5) alkyl or a (C3-C6) cycloalkyl; or Ra and Rb together with the nitrogen atom to which they are attached may form a saturated 5- or 6-membered heterocycle, which may be optionally substituted by one or more Ra, with the proviso that when R' is a (IIa) or (IIIa) group, n' may be 2 or 3 only if the other R' group is different from said (IIa) or (IIIa) group; and R″ is a hydrogen atom, a (C1-C4) alkyl or a group of formula (IIa) as defined above.
[0009] According to a further aspect, the present invention relates to any one of the compounds of formula (I) below, or a metabolite thereof, or a pharma- ceutically acceptable salt thereof, for use in treating and / or preventing an inflammatory disease, disorder or condition. [ka] Where: Z is C or N; V is C or N; [ka] means an aromatic ring, where V is C or N, and if V is N, then V is in the ortho, meta or para position relative to Z; Each R is independently a hydrogen atom, a halogen atom, -CN, hydroxyl, (C1-C3)fluoroalkyl, (C1-C3)fluoroalkoxy, (C3-C6)cycloalkyl, -NO2, -NR1R2, (C1-C4)alkoxy, phenoxy, -NR1-SO2-NR1R2, -NR1-SO2-R1, -NR1-C(=O)-R1, -NR1-C(=O)-NR1R2, -SO2-NR1R2, -SO3H, -O-SO2-OR3, -OP(=O)-(OR3)(OR4), -O-CH2-COOR3, (C1-C3)alkyl, where the alkyl is optionally a hydroxyl group, a group of formula (IIa) [ka] Or a group of the following formula (IIIa) [ka] optionally mono- or di-substituted by Q is N or O, with the proviso that when Q is O, then R″ is absent; Each of R1 and R2 is independently a hydrogen atom or a (C1-C3) alkyl; Each of R3 and R4 is independently a hydrogen atom, Li+, Na+, K+, N+(Ra)4, or benzyl; n is 1, 2 or 3; n' is 1, 2 or 3; Each R' is independently a hydrogen atom, a (C1-C3) alkyl, a hydroxyl, a halogen atom, -NO2, -NR1R2, morpholinyl, morpholino, N-methylpiperazinyl, a (C1-C3) fluoroalkyl, a (C1-C4) alkoxy, -OP(=O)-(OR3)(OR4), -CN, a -NH-SO2-N(CH3)2 group, a group of formula (IIa) [ka] Or a group of the following formula (IIIa) [ka] and A is a covalent bond, an oxygen atom or NH; B is a covalent bond or NH; m is 1, 2, 3, 4 or 5; p is 1, 2 or 3; Each of Ra and Rb is independently a hydrogen atom, a (C1-C5) alkyl or a (C3-C6) cycloalkyl; or Ra and Rb together with the nitrogen atom to which they are attached may form a saturated 5- or 6-membered heterocycle, which may optionally contain further heteroatoms selected from among N, O, S, which may optionally be substituted by one or more Ra, with the proviso that when R' is a (IIa) or (IIIa) group, n' may be 2 or 3 only if the other R' group is different from said (IIa) or (IIIa) group; and R″ is a hydrogen atom, a (C1-C4) alkyl or a group of formula (IIa) as defined above, The inflammatory disease, disorder or condition is selected from: (a) an inflammatory disease, disorder or condition of the pancreas selected from type 1 diabetes, type 2 diabetes, acute pancreatitis and chronic pancreatitis; (b) an inflammatory disease, disorder or condition of the kidney selected from glomerulosclerosis, glomerulonephritis, nephritis, acute kidney injury, Berger's disease, Goodpasture's syndrome, Wegener's granulomatosis, and acute or chronic rejection of a kidney transplant; (c) an inflammatory disease, disorder or condition of the liver selected from nonalcoholic steatohepatitis (NASH), nonalcoholic fatty liver disease (NAFLD), cholestatic liver disease, sclerosing cholangitis, and acute or chronic rejection of a liver transplant; (d) an inflammatory disease, disorder or condition of the lung or heart selected from chronic obstructive pulmonary disease (COPD), pulmonary fibrosis, pulmonary hypertension, sarcoidosis, myocarditis, pericarditis, and acute or chronic rejection of a lung or heart transplant; (e) an inflammatory disease, disorder or condition of the skin selected from contact dermatitis, atopic dermatitis, alopecia areata, erythema multiforme, dermatitis herpetiformis, scleroderma, vitiligo, hypersensitivity vasculitis, urticaria, bullous pemphigoid, pemphigus vulgaris, pemphigus foliaceus, paraneoplastic pemphigus, epidermolysis bullosa acquisita, acne, keloid scars, and other inflammatory or allergic conditions of the skin; (f) an inflammatory disease, disorder or condition in the blood vessels / blood selected from Behcet's disease, vasculitis, sepsis, tumor angiogenesis, proliferative vascular disease, and restenosis; (g) an ocular inflammatory disease, disorder or condition selected from conjunctivitis, scleritis, episcleritis, panuveitis, choroiditis, chorioretinitis, neuroretinitis, uveitis, orbital inflammatory disease, and optic neuritis; (h) an inflammatory disease, disorder or condition of the central or peripheral nervous system selected from non-viral and viral encephalitis and meningitis, depression, neuropathic pain including chronic pain, traumatic brain injury including stroke, Parkinson's disease, myelitis, Charcot-Marie-Tooth type 1 disease (including CMT1A and CMT1B), amyotrophic lateral sclerosis (ALS), Creutzfeldt-Jakob disease, demyelinating polyneuropathy, and peripheral neuropathy; (i) an autoimmune disease, disorder or condition selected from lupus, including lupus of the skin and kidney, Guillain-Barre syndrome, myasthenia gravis, Hashimoto's thyroiditis, idiopathic purpura, aplastic anemia, Graves' disease, and myocarditis; (k) an inflammatory disease, disorder or condition in the reproductive system selected from endometriosis, uterine fibroids, prostatic dysplasia or growths, and cervical dysplasia; and (l) An inflammatory disease, disorder or condition of the bones and / or joints selected from juvenile idiopathic arthritis, psoriatic arthritis, periodontitis, and arthritis and / or demineralization of the hands, feet, ankles, knees, hips, shoulders, elbows or spine.
[0010] Moreover, the present invention relates to a method for preventing, inhibiting or treating the above-mentioned inflammatory diseases defined above, which comprises at least one step consisting of administering to a patient suffering from the same an effective amount of a compound defined below in formula (I), formula (Ib), formula (Ib'), formula (IV), (IVb) or formula (IVb') or a pharma- ceutically acceptable salt thereof. The above relates to the method.
[0011] Compounds and Definitions
[0012] In the framework of the present invention, the following definitions can be given: Effective amount: An amount of a pharmaceutical compound that provides an effect on the tumor being treated, and / or an amount of a compound of the present invention that is effective in preventing, alleviating, eliminating, treating, or controlling the symptoms of the diseases and conditions described herein. The term "effective amount" encompasses a "prophylactically effective amount" as well as a "treatment effective amount." The term "prophylactically effective amount" refers to a concentration of a compound of the present invention that is effective in inhibiting, preventing, or reducing the likelihood of inflammatory disease.
[0013] The term "patient", as used herein, means an animal, preferably a mammal, and most preferably a human.
[0014] In the context of the present invention, the term "treat" or "treatment" as used herein means reversing, alleviating, arresting the progression of, or preventing an inflammatory disease.
[0015] The term "control" is intended to refer to any process that may slow, interrupt, prevent, or halt the progression of the diseases and conditions described herein, but does not necessarily indicate the complete elimination of all disease and condition symptoms, and is intended to encompass preventative treatment.
[0016] The term "prevent" as used herein means to reduce the risk of developing or to delay the onset of a given phenomenon, i.e., a given phenomenon in the present invention, an inflammatory disease. As used herein, "prevent" also encompasses "reducing the likelihood of occurrence" or "reducing the likelihood of recurrence."
[0017] The compounds of the present invention can exist in the form of a free base or in the form of an addition salt with a pharma- ceutically acceptable acid.Suitable physiologically acceptable acid addition salts of the compounds of the present invention include sulfates, hydrobromides, citrates, trifluoroacetates, ascorbates, hydrochlorides, tartrates, triflates, maleates, mesylates, formates, acetates, fumarates and sulfonates, particularly alkylsulfonates or arylsulfonates, more particularly mesylates, triflates, edisylates, besylates and tosylates.
[0018] The compounds of the present invention and / or their salts may form solvates or hydrates, and the present invention includes all such solvates and hydrates. The terms "hydrate" and "solvate" simply mean that the compounds according to the present invention may be in the form of hydrates or solvates, i.e., in the form of hydrates or solvates combined or associated with one or more water or solvent molecules. This is merely a chemical property of such compounds, which can be applied to all organic compounds of this type.
[0019] The compounds of the present invention may contain one or more asymmetric carbon atoms. They may therefore exist in the form of enantiomers or diastereoisomers. These enantiomers, diastereoisomers and mixtures thereof, including racemic mixtures, are included within the scope of the present invention.
[0020] In the context of the present invention the following terms are defined as follows: "halogen atom" is understood to mean a chlorine, fluorine, bromine or iodine atom and in particular to denote a chlorine, fluorine or bromine atom; - "(C1-C5) alkyl" as used herein refers to a C1-C5 linear, secondary or tertiary saturated hydrocarbon, respectively. Examples include, but are not limited to, methyl, ethyl, 1-propyl, 2-propyl, butyl, pentyl; - "(C3-C6)cycloalkyl" refers to a cyclic saturated hydrocarbon, as used herein. Examples include, but are not limited to, cyclopropyl, cyclobutyl, cyclopentyl, cyclohexyl. - "(C1-C4)alkoxy" as used herein refers to an O-(C1-C4)alkyl residue, where alkyl is as defined above. Examples are, but are not limited to, methoxy, ethoxy, 1-propoxy, 2-propoxy, butoxy. - "fluoroalkyl group" and "fluoroalkoxy group" refer respectively to alkyl and alkoxy groups as defined above, wherein the group is substituted with at least one fluorine atom. Examples are perfluoroalkyl groups, such as trifluoromethyl or perfluoropropyl. - "saturated 5- or 6-membered heterocycle" as used herein refers to a saturated ring containing at least one heteroatom. Examples include, but are not limited to, morpholine, piperazine, thiomorpholine, piperidine, and pyrrolidine.
[0021] As used herein, the term "pharmaceutical acceptable salt" refers to a salt that is suitable for use in contact with the tissues of humans and lower animals without undue toxicity, irritation, allergic reaction, etc., within the scope of sound medical judgment, and is commensurate with a reasonable benefit / risk ratio. Pharmaceutically acceptable salts are well known in the art. For example, S. M. Berge et al. describe pharmaceutical acceptable salts, which are detailed in J. Pharmaceutical Sciences, 1977, 66, 1-19, which is incorporated herein by reference. Pharmaceutically acceptable salts of the compounds of the present invention include those derived from suitable inorganic and organic acids and bases.
[0022] Pharmaceutically acceptable salts of the compounds of the present invention include those derived from suitable inorganic and organic acids and bases. Examples of pharma-ceutically acceptable, non-toxic acid addition salts are salts of amino groups formed with inorganic acids such as hydrochloric acid, hydrobromic acid, phosphoric acid, sulfuric acid and perchloric acid, or with organic acids such as acetic acid, oxalic acid, maleic acid, tartaric acid, citric acid, succinic acid or malonic acid, or by using other methods used in the art, such as ion exchange. Other pharma- ceutically acceptable salts include adipate, alginate, ascorbate, aspartate, benzenesulfonate, benzoate, bisulfate, borate, butyrate, camphorate, camphorsulfonate, citrate, cyclopentanepropionate, digluconate, dodecyl sulfate, ethanesulfonate, formate, fumarate, glucoheptonate, glycerophosphate, gluconate, hemisulfate, heptanoate, hexanoate, hydroiodide, 2-hydroxy-ethanesulfonate, and the like. Salts include, but are not limited to, lactobionate, lactate, laurate, lauryl sulfate, malate, maleate, malonate, methanesulfonate, 2-naphthalenesulfonate, nicotinate, nitrate, oleate, oxalate, palmitate, pamoate, pectinate, persulfate, 3-phenylpropionate, phosphate, pivalate, propionate, stearate, succinate, sulfate, tartrate, thiocyanate, p-toluenesulfonate, undecanoate, valerate, and the like.
[0023] Salts derived from appropriate bases include alkali metal, alkaline earth metal, ammonium, and N+(C 1~4 Representative alkali or alkaline earth metal salts include sodium, lithium, potassium, calcium, magnesium, and the like. Additionally, pharma- ceutically acceptable salts include, where appropriate, non-toxic ammonium, quaternary ammonium, and amine cations formed using counterions such as halides, hydroxides, carboxylates, sulfates, phosphates, nitrates, lower alkyl sulfonates, and aryl sulfonates.
[0024] Unless otherwise stated, structures depicted herein are also meant to include all isomeric (e.g., enantiomeric, diastereomeric, and geometric (or conformational)) forms of the external structure, such as the R and S configurations of each asymmetric center, Z and E double bond isomers, and Z and E conformational isomers. Thus, single stereochemical isomers, as well as enantiomeric, diastereomeric, and geometric (or conformational) mixtures of the compounds of the present invention are within the scope of the present invention. Unless otherwise stated, all tautomeric forms of the compounds of the present invention are within the scope of the present invention. Additionally, unless otherwise stated, structures depicted herein are also meant to include compounds that differ only in the presence of one or more isotopically enriched atoms. For example, compounds having the structures of the present invention that include the replacement of a hydrogen atom with deuterium or tritium, or the replacement of a carbon with a 13C- or 14C-enriched carbon are within the scope of the present invention. Such compounds are useful, for example, as analytical tools, probes in biological assays, or as therapeutic agents according to the present invention.
[0025] Description of exemplary embodiments:
[0026] In one aspect, the present invention provides a method for treating an inflammatory disease, disorder or condition, comprising administering to a patient in need thereof a compound of formula (I) below, or a pharma- ceutically acceptable salt thereof. [ka] Where: Z is C or N; V is C or N; [ka] means an aromatic ring, where V is C or N, and if V is N, then V is in the ortho, meta or para position relative to Z; Each R is independently a hydrogen atom, a halogen atom, -CN, hydroxyl, (C1-C3)fluoroalkyl, (C1-C3)fluoroalkoxy, (C3-C6)cycloalkyl, -NO2, -NR1R2, (C1-C4)alkoxy, phenoxy, -NR1-SO2-NR1R2, -NR1-SO2-R1, -NR1-C(=O)-R1, -NR1-C(=O)-NR1R2, -SO2-NR1R2, -SO3H, -O-SO2-OR3, -OP(=O)-(OR3)(OR4), -O-CH2-COOR3, (C1-C3)alkyl, where the alkyl is optionally a hydroxyl group, a group of formula (IIa) below, or a group of formula [ka] Or a group of the following formula (IIIa) [ka] optionally mono- or di-substituted by Q is N or O, with the proviso that when Q is O, then R″ is absent; Each of R1 and R2 is independently a hydrogen atom or a (C1-C3) alkyl; Each of R3 and R4 is independently a hydrogen atom, Li+, Na+, K+, N+(Ra)4, or benzyl; n is 1, 2 or 3; n' is 1, 2 or 3; Each R' is independently a hydrogen atom, a (C1-C3) alkyl, a hydroxyl, a halogen atom, -NO2, -NR1R2, morpholinyl, morpholino, N-methylpiperazinyl, a (C1-C3) fluoroalkyl, a (C1-C4) alkoxy, -OP(=O)-(OR3)(OR4), -CN, a group of formula (IIa) [ka] Or a group of the following formula (IIIa) [ka] and A is a covalent bond, an oxygen atom or NH; B is a covalent bond or NH; m is 1, 2, 3, 4 or 5; p is 1, 2 or 3; Each of Ra and Rb is independently a hydrogen atom, a (C1-C5) alkyl or a (C3-C6) cycloalkyl; or Ra and Rb together with the nitrogen atom to which they are attached may form a saturated 5- or 6-membered heterocycle, which may be optionally substituted by one or more Ra, with the proviso that when R' is a (IIa) or (IIIa) group, n' may be 2 or 3 only if the other R' group is different from said (IIa) or (IIIa) group; and R″ is a hydrogen atom, a (C1-C4) alkyl, or a group of formula (IIa) as defined above.
[0027] Z is C or N as generally defined above.
[0028] In some embodiments, Z is C. In some embodiments, Z is N.
[0029] In some embodiments, Z is selected from those set forth in Tables 1-3 below.
[0030] V is C or N as generally defined above.
[0031] In some embodiments, V is C. In some embodiments, V is N.
[0032] In some embodiments, V is selected from those set forth in Tables 1-3 below.
[0033] As generally defined above, [ka] means an aromatic ring, where V is C or N, and when V is N, V is in the ortho, meta or para position relative to Z.
[0034] In some embodiments, [ka] means an aromatic ring, where V is C.
[0035] In some embodiments, [ka] means an aromatic ring, where V is N and V is in the ortho, meta or para position relative to Z.
[0036] In some embodiments, V is N and V is in the ortho position relative to Z. In some embodiments, V is N and V is in the meta position relative to Z. In some embodiments, V is N and V is in the para position relative to Z.
[0037] In some embodiments, [ka] is phenyl.
[0038] In some embodiments, [ka] is pyridine.
[0039] In some embodiments, [ka] is a pyridazine.
[0040] In some embodiments, [ka] is a pyrimidine.
[0041] In some embodiments, [ka] is a pyrazine.
[0042] In some embodiments, [ka] is selected from those listed in Tables 1 to 3 below.
[0043] As generally described above, each R is independently a hydrogen atom, a halogen atom, -CN, hydroxyl, (C1-C3)fluoroalkyl, (C1-C3)fluoroalkoxy, (C3-C6)cycloalkyl, -NO2, -NR1R2, (C1-C4)alkoxy, phenoxy, -NR1-SO2-NR1R2, -NR1-SO2-R1, -NR1-C(=O)-R1, -NR1-C(=O)-NR1R2, -SO2-NR1R2, -SO3H, -O-SO2-OR3, -OP(=O)-(OR3)(OR4), -O-CH2-COOR3, or (C1-C3)alkyl, where the alkyl is optionally a hydroxyl group or a group of formula (IIa) [ka] Or a group of the following formula (IIIa) [ka] It may be mono- or di-substituted by:
[0044] In some embodiments, R is a hydrogen atom. In some embodiments, R is a halogen atom. In some embodiments, R is -CN. In some embodiments, R is hydroxyl. In some embodiments, R is (C1-C3)fluoroalkyl, where the alkyl is optionally mono- or di-substituted with hydroxyl. In some embodiments, R is (C1-C3)fluoroalkoxy. In some embodiments, R is (C3-C6)cycloalkyl. In some embodiments, R is -NO2. In some embodiments, R is -NR1R2. In some embodiments, R is (C1-C4)alkoxy. In some embodiments, R is phenoxy. In some embodiments, R is -NR1-SO2-NR1R2. In some embodiments, R is -NR1-SO2-R1. In some embodiments, R is -NR1-C(=O)-R1. In some embodiments, R is -NR1-C(=O)-NR1R2. In some embodiments, R is -SO2-NR1R2. In some embodiments, R is -SO3H. In some embodiments, R is -O-SO2-OR3. In some embodiments, R is -OP(=O)-(OR3)(OR4). In some embodiments, R is -O-CH2-COOR3. In some embodiments, R is (C1-C3) alkyl, where the alkyl is optionally trifluoromethoxy, amino, a halogen atom, or -OP(=O)-(OR3)(OR4). In some embodiments, R is methyl. In some embodiments, R is methoxy. In some embodiments, R is trifluoromethyl. In some embodiments, R is trifluoromethoxy. In some embodiments, R is amino. In some embodiments, R is -OP(=O)-(OR3)(OR4).
[0045] In some embodiments, each R is independently methyl, methoxy, trifluoromethyl, a halogen atom, trifluoromethoxy, or amino.
[0046] In some embodiments, R is selected from those set forth in Tables 1-3 below.
[0047] As generally described above, Q is N or O, with the proviso that when Q is O, R" is absent.
[0048] In some embodiments, Q is N. In some embodiments, Q is O and R″ is absent.
[0049] In some embodiments, Q is selected from those set forth in Tables 1-3 below.
[0050] As generally described above, each of R1 and R2 is independently a hydrogen atom or a (C1-C3) alkyl.
[0051] In some embodiments, R1 is a hydrogen atom. In some embodiments, R1 is a (C1-C3) alkyl. In some embodiments, R2 is a hydrogen atom. In some embodiments, R2 is a (C1-C3) alkyl.
[0052] In some embodiments, each of R1 and R2 is independently selected from those set forth in Tables 1-3 below.
[0053] As generally described above, each of R3 and R4 is independently a hydrogen atom, Li+, Na+, K+, N+(Ra)4, or benzyl.
[0054] In some embodiments, R3 is a hydrogen atom. In some embodiments, R3 is Li+. In some embodiments, R3 is Na+. In some embodiments, R3 is K+. In some embodiments, R3 is N+(Ra)4. In some embodiments, R3 is benzyl. In some embodiments, R4 is a hydrogen atom. In some embodiments, R4 is Li+. In some embodiments, R4 is Na+. In some embodiments, R4 is K+. In some embodiments, R4 is N+(Ra)4. In some embodiments, R4 is benzyl.
[0055] In some embodiments, each of R3 and R4 is independently selected from those set forth in Tables 1-3 below.
[0056] As generally described above, n is 1, 2 or 3.
[0057] In some embodiments, n is 1 or 2. In some embodiments, n is 1. In some embodiments, n is 2. In some embodiments, n is 3.
[0058] In some embodiments, n is selected from those set forth in Tables 1-3 below.
[0059] As generally described above, n' is 1, 2 or 3.
[0060] In some embodiments, n' is 1 or 2. In some embodiments, n' is 1. In some embodiments, n' is 2. In some embodiments, n' is 3.
[0061] In some embodiments, n' is selected from those set forth in Tables 1-3 below.
[0062] As generally described above, each R' is independently a hydrogen atom, (C1-C3) alkyl, hydroxyl, a halogen atom, -NO2, -NR1R2, morpholinyl, morpholino, N-methylpiperazinyl, (C1-C3) fluoroalkyl, (C1-C4) alkoxy, -OP(=O)-(OR3)(OR4), -CN, a group of formula (IIa) below: [ka] Or a group of the following formula (IIIa) [ka] It is.
[0063] In some embodiments, R' is a hydrogen atom. In some embodiments, R' is (C1-C3) alkyl. In some embodiments, R' is hydroxyl. In some embodiments, R' is a halogen atom. In some embodiments, R' is -NO2. In some embodiments, R' is -NR1R2. In some embodiments, R' is morpholinyl. In some embodiments, R' is morpholino. In some embodiments, R' is N-methylpiperazinyl. In some embodiments, R' is (C1-C3) fluoroalkyl. In some embodiments, R' is (C1-C4) alkoxy. In some embodiments, R' is -OP(=O)-(OR3)(OR4). In some embodiments, R' is -CN.
[0064] In some embodiments, R' is a group of formula (IIa): [ka]
[0065] In some embodiments, R' is a group of formula (IIIa): [ka]
[0066] In some embodiments, R' is amino. In some embodiments, R' is methyl. In some embodiments, R' is a group of the formula: [ka] where A is O or NH, m is 2 or 3, and X1 is O, CH2 or N-CH3, with the proviso that when R' is such a group, n' is 1 or 2, and when n' is 2, the other R' groups are different from the above groups.
[0067] In some embodiments, R' is a group of the following formula: [ka] where A is O or NH, m is 2, and X1 is O, CH2 or N-CH3, with the proviso that when R' is such a group, n' is 1 or 2, and when n' is 2, the other R' groups are different from the above groups.
[0068] In some embodiments, R' is a group of the following formula: [ka] where A is O or NH, m is 3, and X1 is O, CH2 or N-CH3, with the proviso that when R' is such a group, n' is 1 or 2, and when n' is 2, the other R' groups are different from the above groups.
[0069] In some embodiments, each R' is independently a hydrogen atom, a halogen atom, amino, methyl, -OP(=O)-(OR3)(OR4), or a group of the formula: [ka] where A is O or NH, m is 2 or 3, and X1 is O, CH2 or N-CH3, with the proviso that when R' is such a group, n' is 1 or 2, and when n' is 2, the other R' groups are different from the above groups.
[0070] In some embodiments, each R' is independently a hydrogen atom, a halogen atom, methyl, or a group of the formula: [ka] where A is O or NH, m is 2, and X1 is O, CH2 or N-CH3, with the proviso that when R' is such a group, n' is 1 or 2, and when n' is 2, the other R' groups are different from the above groups.
[0071] In some embodiments, each R' is independently a halogen atom, a (C1-C3) alkyl, hydroxyl, -NR1R2, morpholinyl, morpholino, N-methylpiperazinyl, a (C1-C3) fluoroalkyl, a (C1-C4) alkoxy, or a group of Formula (IIa) or Formula (IIIa) described herein.
[0072] In some embodiments, R' is a halogen atom or methyl.
[0073] In some embodiments, each R' is independently selected from those set forth in Tables 1-3 below.
[0074] As generally described above, A is a covalent bond, an oxygen atom, or NH.
[0075] In some embodiments, A is a covalent bond. In some embodiments, A is an oxygen atom. In some embodiments, A is NH.
[0076] In some embodiments, A is selected from those set forth in Tables 1-3 below.
[0077] As generally described above, B is a covalent bond or NH.
[0078] In some embodiments, B is a covalent bond. In some embodiments, B is NH.
[0079] In some embodiments, B is selected from those set forth in Tables 1-3 below.
[0080] As generally described above, m is 1, 2, 3, 4 or 5.
[0081] In some embodiments, m is 1. In some embodiments, m is 2. In some embodiments, m is 3. In some embodiments, m is 4. In some embodiments, m is 5.
[0082] In some embodiments, m is selected from those set forth in Tables 1-3 below.
[0083] As generally described above, p is 1, 2 or 3.
[0084] In some embodiments, p is 1. In some embodiments, p is 2. In some embodiments, p is 3. In some embodiments, p is 4. In some embodiments, p is 5.
[0085] In some embodiments, p is selected from those set forth in Tables 1-3 below.
[0086] As generally described above, each of Ra and Rb is independently a hydrogen atom, a (C1-C5) alkyl or a (C3-C6) cycloalkyl, or Ra and Rb together with the nitrogen atom to which they are attached may form a saturated 5- or 6-membered heterocycle, which may be optionally substituted by one or more Ra, with the proviso that when R' is a (IIa) or (IIIa) group, n' may be 2 or 3 only if the other R' group is different from said (IIa) or (IIIa) group.
[0087] In some embodiments, Ra is a hydrogen atom. In some embodiments, Ra is a (C1-C5) alkyl. In some embodiments, Ra is a (C3-C6) cycloalkyl. In some embodiments, Rb is a hydrogen atom. In some embodiments, Rb is a (C1-C5) alkyl. In some embodiments, Rb is a (C3-C6) cycloalkyl. In some embodiments, Rb is a hydrogen atom. In some embodiments, Rb is a (C1-C5) alkyl. In some embodiments, Rb is a (C3-C6) cycloalkyl.
[0088] In some embodiments, R and Rb together with the nitrogen atom to which they are attached form a saturated 5- or 6-membered heterocyclic ring, which may be optionally substituted by one or more R, provided that when R' is a group of formula (IIa) or formula (IIIa), n' can be 2 or 3 only if the other R' group is different from a group of formula (IIa) or formula (IIIa). In some embodiments, as described above, the saturated 5- or 6-membered heterocyclic ring formed by R and Rb together with the nitrogen atom to which they are attached may optionally have an additional heteroatom selected from N, O, and S.
[0089] In some embodiments, Ra and Rb together with the nitrogen atom to which they are attached form a saturated 5- or 6-membered heterocycle having an additional heteroatom selected from N, O and S, which is optionally substituted by one or more Ra, with the proviso that when R' is a group of formula (IIa) or formula (IIIa), n' can be 2 or 3 only if the other R' group is different from the group of formula (IIa) or formula (IIIa).
[0090] In some embodiments, Ra and Rb together with the nitrogen atom to which they are attached form a saturated 5- or 6-membered heterocycle, with the proviso that when R' is a group of Formula (IIa) or Formula (IIIa), n' can be 2 or 3 only if the other R' group is different from the group of Formula (IIa) or Formula (IIIa).
[0091] In some embodiments, Ra and Rb together with the nitrogen atom to which they are attached form a saturated 6-membered heterocycle, with the proviso that when R' is a group of Formula (IIa) or Formula (IIIa), n' can be 2 or 3 only if the other R' group is different from the group of Formula (IIa) or Formula (IIIa).
[0092] In some embodiments, Ra and Rb together with the nitrogen atom to which they are attached form a saturated 5- or 6-membered heterocycle having an additional heteroatom selected from N, O, and S, which may be optionally substituted with one or more Ra, with the proviso that when R' is a (IIa) or (IIIa) group, n' can be 2 only if the other R' group is different from the (IIa) or formula (IIIa) group.
[0093] In some embodiments, each of Ra and Rb is independently selected from those set forth in Tables 1-3 below.
[0094] As generally described above, R″ is a hydrogen atom, a (C1-C4) alkyl, or a group of formula (IIa) as defined above.
[0095] In some embodiments, R" is a hydrogen atom or a (C1-C4) alkyl. In some embodiments, R" is a hydrogen atom. In some embodiments, R" is a (C1-C4) alkyl. In some embodiments, R" is a group of formula (IIa) defined above.
[0096] In some embodiments, R″ is a group of the following formula: [ka] where m is 2 or 3, and X1 is O, CH2 or N-CH3.
[0097] In some embodiments, R″ is selected from those set forth in Tables 1-3 below.
[0098] In some embodiments, n is 1, n' is 1 or 2, R" is H, R is selected from methyl, methoxy, trifluoromethyl, a halogen atom, trifluoromethoxy, and amino, and each R' is independently a halogen atom, methyl, or a group described below. [ka] wherein A is O or NH, m is 2 or 3, and X1 is O, CH2 or N-CH3, with the proviso that when n' is 2, the other R' groups are different from the above groups.
[0099] In some embodiments, n is 1, n' is 1, R" is H, R is selected from methyl, methoxy, trifluoromethyl, a halogen atom, and trifluoromethoxy, and R' is a halogen atom or methyl.
[0100] In some embodiments, the present invention provides a method for treating an inflammatory disease, disorder, or condition, comprising administering to a patient in need thereof a compound of Formula (Ia) below, or a pharma- ceutically acceptable salt thereof. [ka] wherein the variables R, R', R", n, and n' are independently as defined above and in the embodiments herein, both alone and in combination.
[0101] In some embodiments, the present invention provides a method for treating an inflammatory disease, disorder, or condition, comprising administering to a patient in need thereof any one of the compounds of formula (Ib) below, or a metabolite thereof, or a pharma- ceutically acceptable salt thereof. [ka] wherein the variables R, R', R", n, and n' are independently as defined above and in the embodiments herein, both alone and in combination.
[0102] In some embodiments, the present invention provides any one of the compounds, or metabolites thereof, or pharma- ceutically acceptable salts thereof, for the uses defined above. wherein the compound is of formula (Ib): [ka] where R, R', and R'' are as defined above.
[0103] In some embodiments, the present invention provides a method for treating an inflammatory disease, disorder, or condition, comprising administering to a patient in need thereof a compound of formula (Ic) below, or a pharma- ceutically acceptable salt thereof. [ka] wherein each of the variables R, R', R", n, and n' are independently as defined above and in the embodiments herein, both alone and in combination.
[0104] In some embodiments, the present invention provides a method for treating an inflammatory disease, disorder, or condition, comprising administering to a patient in need thereof a compound of formula (Id) below, or a pharma- ceutically acceptable salt thereof. [ka] wherein each of R and R' is independently as defined above and in embodiments herein, both alone and in combination, and R''' is a hydrogen atom or a group described below. [ka] where A is O or NH, m is 2 or 3, and X1 is O, CH2 or N-CH3.
[0105] In some embodiments, the present invention provides a method for treating an inflammatory disease, disorder, or condition, comprising administering to a patient in need thereof a compound of Formula (Id) or a pharma- ceutically acceptable salt thereof. where R is methyl, methoxy, trifluoromethyl, a halogen atom, trifluoromethoxy, or amino, R' is a halogen atom or methyl; and R''' is a hydrogen atom or the following group: [ka] where A is O or NH, m is 2 or 3, and X1 is O, CH2 or N-CH3.
[0106] In some embodiments, R''' is a hydrogen atom.
[0107] In some embodiments, R''' is the following group: [ka] where A is O or NH, m is 2 or 3, and X1 is O, CH2 or N-CH3.
[0108] In some embodiments, R''' is the following group: [ka] where A is O, m is 2 or 3, and X1 is O, CH2 or N-CH3.
[0109] In some embodiments, R''' is the following group: [ka] where A is NH, m is 2 or 3, and X1 is O, CH2 or N-CH3.
[0110] In some embodiments, the present invention provides a method for treating an inflammatory disease, disorder, or condition, comprising administering to a patient in need thereof a compound of formula (Ib') below, or a pharma- ceutically acceptable salt thereof. [ka] wherein each of the variables R, R', R", n, and n' are independently as defined above and in the embodiments herein, both alone and in combination.
[0111] In some embodiments, the present invention provides a method for treating an inflammatory disease, disorder, or condition, comprising administering to a patient in need thereof a compound of Formula (Ib) or a pharma- ceutically acceptable salt thereof; Where: each R is independently a halogen atom, a (C1-C3)fluoroalkyl, a (C1-C3)fluoroalkoxy, -NR1R2, a (C1-C4)alkoxy, or a (C1-C3)alkyl, wherein the alkyl is optionally mono- or di-substituted by a hydroxyl group; n is 1 or 2; n' is 1 or 2; Each of R1 and R2 is independently a hydrogen atom or a (C1-C3) alkyl; each R' is independently a halogen atom, (C1-C3)alkyl, hydroxyl, -NR1R2, morpholinyl, morpholino, N-methylpiperazinyl, (C1-C3)fluoroalkyl, (C1-C4)alkoxy, or formula (IIa) or formula (IIIa) as described herein; A is a covalent bond, an oxygen atom or NH; B is a covalent bond or NH; m is 1, 2, 3, 4 or 5; p is 1, 2 or 3; Each of Ra and Rb is independently a hydrogen atom, a (C1-C5) alkyl or a (C3-C6) cycloalkyl; or Ra and Rb together with the nitrogen atom to which they are attached may form a saturated 5- or 6-membered heterocycle, which may optionally have additional heteroatoms selected from N, O and S, which may optionally be substituted by one or more Ra, with the proviso that when R' is a (IIa) or (IIIa) group, n' may be 2 only if the other R' group is different from said (IIa) or (IIIa) group; and R″ is a hydrogen atom or a (C1-C4) alkyl.
[0112] In some embodiments, the present invention provides a method for treating an inflammatory disease, disorder, or condition, comprising administering to a patient in need thereof a compound of Formula (Ib) or a pharma- ceutically acceptable salt thereof; Where: each R' is independently a hydrogen atom, a halogen atom, a (C1-C3) alkyl or a (C1-C4) alkoxy group, wherein the alkyl is optionally mono- or di-substituted by a hydroxyl group; R″ is a hydrogen atom or a (C1-C4) alkyl; n is 1 or 2; n' is 1 or 2; when n is 1, R is (C1-C3)fluoroalkoxy, NR1R2, or phenoxy; wherein each of R1 and R2 is independently (C1-C3) alkyl, and when n is 2, one of the two R groups is (C1-C3) fluoroalkoxy, and the other R group is (C1-C3) alkyl.
[0113] In some embodiments, the present invention provides a method for treating an inflammatory disease, disorder, or condition, comprising administering to a patient in need thereof a compound of Formula (Ib) or a pharma- ceutically acceptable salt thereof; Where: Each R is independently (C1-C3)fluoroalkoxy; each R' is independently a hydrogen atom, a halogen atom, a (C1-C3)alkyl or a (C1-C4)alkoxy; R" is a hydrogen atom or a (C1-C4)alkyl; n is 1; and n' is 1 or 2.
[0114] In some embodiments, the present invention provides a method for treating an inflammatory disease, disorder, or condition, comprising administering to a patient in need thereof a compound of Formula (Ib') or a pharma- ceutically acceptable salt thereof; Where: each R is independently a hydrogen atom, a halogen atom, a (C1-C3) alkyl, -NR1R2, (C1-C3) fluoroalkoxy, -NO2, phenoxy, or a (C1-C4) alkoxy, wherein the alkyl is optionally mono- or di-substituted with a hydroxyl group; each of R1 and R2 is independently a hydrogen atom or a (C1-C3) alkyl; R' is a hydrogen atom, a halogen atom, a (C1-C3) alkyl, or a (C1-C4) alkoxy, with the proviso that R' is different from a methyl group at the 4-position of the quinoline group; R" is a hydrogen atom or a (C1-C4) alkyl; n is 1, 2, or 3; and n' is 1 or 2.
[0115] In some embodiments, the present invention provides a compound for the use defined above, wherein the compound is of formula (Ib') below, or any one of its metabolites or its pharma- ceutically acceptable salts. [ka] where the variables R, R', and R" are as defined above.
[0116] In some embodiments, the present invention provides a compound of formula (Ib'), or any one of its metabolites or pharma- ceutically acceptable salts thereof, for use as defined above, Where: R is independently a halogen atom, a (C1-C3) fluoroalkoxy group, a -NR1R2 group, a (C1-C4) alkoxy group, a -OP(=O)(OR3)(OR4) group, a (C1-C3) alkyl group, a NO2 group, or -A-(CH2) m -B-NRaRb group (Formula IIa), and -(O-CH2-CH2) p represents a group selected from the -O-Ra group (formula IIIa), n is 1 or 2; R' is a hydrogen atom, a halogen atom, or a -NR1R2 group, a -OP(=O)(OR3)(OR4) group, a -NH-SO2-N(CH3)2 group, or a -A-(CH2) m -B-NRaRb groups IIa), R″ is a hydrogen atom, a (C1-C4) alkyl group, or -A-(CH2) m -B-NRaRb group (formula IIa), R1 and R2 are independently a hydrogen atom or a (C1-C3) alkyl group; R3 and R4 are independently a hydrogen atom, Li+, Na+, K+, N+(Ra)4 or benzyl; A is a covalent bond, an oxygen atom or NH; B is a covalent bond, m is 2, 3 or 4; p is 1, 2 or 3; Ra and Rb each independently represent a hydrogen atom or a (C1-C5) alkyl group, and Ra and Rb may further be taken together with the nitrogen atom to which they are attached to form a saturated 5- or 6-membered heterocycle, which may optionally have a heteroatom selected from N, O and S, and which may optionally be substituted by one or more Ra.
[0117] According to an even more particular embodiment, the present invention provides a compound of formula (Ib'), or any one of its metabolites or a pharma- ceutically acceptable salts thereof, for the use as defined above, Where: R independently represents F, Cl, -NH2, -N(CH3)2, -OCH3, -O-(CH2)3-CH3, -OCF3, -CH3, -O-(CH2)2-OH, -O-(CH2)2-O-(CH2)2-OCH3, -NO2 group, -OP(=O)(OH)(OH) group, -O-(CH2)2-morpholino group, or -O-(CH2)2-piperidino group; n is 1 or 2; R' represents a hydrogen atom, Cl, -CH2-CH2-CH3, -O-CH2)2-morpholino group, -O-(CH2)2-piperidino group, -O-(CH2)3-piperidino group, -N-(CH2)3-morpholino group, -NH-SO2-N(CH3)2 group, NH2, or -OP(=O)(OH)(OH) group, and R″ represents a hydrogen atom, —CH3, a —(CH2)3-piperidino group, a —(CH2)2-morpholino group, a —(CH2)4-morpholino group, or a —(CH2)2-pyrrolidino group.
[0118] In one embodiment, the present invention provides a compound of formula (Ib'), or any one of its metabolites or pharma- ceutically acceptable salts thereof, for use as defined above, wherein the compound is selected from compounds 96, 98, 108, 109, 111, 115, 122, 125, 128, 129, 130, 132, 133, 135, 138-141, 143, and 145-164 listed herein below.
[0119] In some embodiments, the present invention provides a method for treating an inflammatory disease, disorder, or condition, comprising administering to a patient in need thereof a compound of the following formula (ABX464), or a pharma- ceutically acceptable salt thereof: [ka]
[0120] In some embodiments, the present invention provides a compound of formula (Ib'), or any one of its metabolites or its pharma- ceutically acceptable salts, for the use defined above, wherein the compound is 8-chloro-N-(4-(trifluoromethoxy)phenyl)quinolin-2-amine.
[0121] In some embodiments, the compound ABX464 or its pharma- ceutically acceptable salt is in amorphous form. In some embodiments, the compound ABX464 or its pharma- ceutically acceptable salt is in crystalline form. In some embodiments, the crystalline form of the compound ABX464 or its pharma- ceutically acceptable salt has a melting point of 120.5°C (±2°C).
[0122] In some embodiments, the crystallized form of the compound ABX464 or a pharma- ceutically acceptable salt thereof exhibits peaks in an x-ray powder diffractogram (XRPD) at angles 7.3, 14.6, 18.4, and 24.9. In some embodiments, the crystallized form of the compound ABX464 or a pharma- ceutically acceptable salt thereof exhibits one or more XRD peaks at angles selected from 18.0, 24.2, 28.3, and 29.5. In some embodiments, the crystallized form of the compound ABX464 or a pharma- ceutically acceptable salt thereof exhibits one or more XRD peaks at angles selected from 18.6, 22.3, 23.0, and 23.5.
[0123] In certain embodiments, the crystalline polymorph of 8-chloro-N-(4-(trifluoromethoxy)phenyl)quinolin-2-amine is characterized by the following main peaks expressed as theta angles by XRPD analysis of order 2-XRPD: 7.3, 14.6, 23.5 and 28.4 (each time ±0.2), and may further exhibit the following additional peaks expressed as theta angles of order 2-XRPD analysis: 12.1, 17.3, 18.4, 23.0; 24.2, 24.9, 27.4 and 29.1 (each time ±0.2), and may further optionally exhibit the following additional peaks expressed as theta angles of order 2-XRPD analysis: 13.7, 16.3, 16.9, 18.1, 22.4 and 29.6 (each time ±0.2).
[0124] In some embodiments, the present invention provides a method for treating an inflammatory disease, disorder, or condition, comprising administering to a patient in need thereof a compound selected from Table 1 below, or a pharma- ceutical acceptable salt thereof.
[0125] [Table 1] JPEG0007678477000056.jpg255136JPEG0007678477000057.jpg255140JPEG000 7678477000058.jpg255140JPEG0007678477000059.jpg255137JPEG00076784770 00060.jpg255145JPEG0007678477000061.jpg255132JPEG0007678477000062.j pg255144JPEG0007678477000063.jpg255134JPEG0007678477000064.jpg124170
[0126] In some embodiments, the present invention provides a method for treating an inflammatory disease, disorder, or condition, comprising administering to a patient in need thereof a compound selected from Table 2 below, or a pharma- ceutical acceptable salt thereof.
[0127] [Table 2] JPEG0007678477000066.jpg255132JPEG0007678477000067.jpg255132JPEG0007678477000068.jpg255131JPEG00076784770 00069.jpg255133JPEG0007678477000070.jpg255147JPEG0007678477000071.jpg255131JPEG0007678477000072.jpg163170
[0128] In some embodiments, the present invention provides a method for treating an inflammatory disease, disorder, or condition, comprising administering to a patient in need thereof a compound selected from Table 3 below, or a pharma- ceutical acceptable salt thereof.
[0129] [Table 3] JPEG0007678477000074.jpg255134JPEG0007678477000075.jpg94170
[0130] In some embodiments, the compounds described herein are in the form of a salt selected from sulfate, hydrobromide, citrate, trifluoroacetate, ascorbate, hydrochloride, tartrate, triflate, maleate, mesylate, formate, acetate, fumarate, and sulfonate. In some embodiments, the compounds described herein are in the form of a salt as an alkylsulfonate or arylsulfonate. In some embodiments, the compounds described herein are in the form of a salt as a mesylate, triflate, edisylate, besylate, and tosylate.
[0131] In one aspect, the present invention provides metabolites of the compounds described herein. In some embodiments, the present invention provides N-glucuronide metabolites of the compounds described herein. In some embodiments, the present invention provides methods for treating an inflammatory disease, disorder, or condition, comprising administering to a patient in need thereof an N-glucuronide metabolite of a compound described herein.
[0132] In some embodiments, the present invention provides a compound of formula (IV) below, or a pharma- ceutically acceptable salt thereof: [ka] wherein each of the variables V, Z, R, R', n, and n' is independently as defined above and as described herein, both alone and in combination, with the proviso that the compound is not a compound of the formula: [ka]
[0133] In some embodiments, the present invention provides a compound of formula (IVa) below, or a pharma- ceutically acceptable salt thereof: [ka] wherein each of the variables R, R', n, and n' are independently as defined above and as described herein, both alone and in combination, with the proviso that the compound is not a compound of the formula:
[0134] In some embodiments, the present invention provides a compound of formula (IVb) below, or a pharma- ceutically acceptable salt thereof: [ka] wherein each of the variables R, R', n, and n' are independently as defined above and as described herein, both alone and in combination, with the proviso that the compound is not a compound of the formula: [ka]
[0135] In some embodiments, the present invention provides a compound of formula (IVc): or a pharma- ceutically acceptable salt thereof: [ka] wherein each of the variables R, R', n, and n' are independently as defined above and as described in the embodiments herein, both alone and in combination.
[0136] In some embodiments, the present invention provides a compound of formula (IVb') below, or a pharma- ceutically acceptable salt thereof: [ka] wherein each of the variables R, R', and n is independently as defined above and as described herein, both alone and in combination, with the proviso that the compound is not a compound of the formula: [ka]
[0137] In some embodiments, the present invention provides a compound of formula (IVd) below, or a pharma- ceutically acceptable salt thereof: [ka] wherein each of the variables R, R', and R" is independently as defined above and as described herein, both alone and in combination, with the proviso that the compound is not a compound of the formula: [ka]
[0138] In some embodiments, the present invention provides a method for treating an inflammatory disease, disorder, or condition, comprising administering to a patient in need thereof a compound of any one of Formula (IV), Formula (IVa), Formula (IVb), Formula (IVc), Formula (IVb'), and Formula (IVd), or a pharma- ceutically acceptable salt thereof.
[0139] In some embodiments, the present invention provides a method for treating an inflammatory disease, disorder, or condition, comprising administering to a patient in need thereof a compound of the following formula, or a pharma- ceutically acceptable salt thereof: [ka]
[0140] In some embodiments, the present invention provides a compound of formula (IV) below, or a pharma- ceutically acceptable salt thereof, for use for treating and / or preventing an inflammatory disease, disorder or condition, as defined above. [ka] where V, Z, R, R', n and n' are as defined above.
[0141] The present invention further provides a compound of formula (IV) below or a pharma- ceutically acceptable salt thereof, for use for treating and / or preventing an inflammatory disease, disorder or condition as defined above, wherein the compound is of formula (IVb) below: [ka] where R, n, R' and n' are as defined above.
[0142] There is further provided herein a compound of formula (IVb) below or a pharma- ceutically acceptable salt thereof, for use for treating and / or preventing an inflammatory disease, disorder or condition as defined above, wherein the compound is of formula (IVb'): [ka] where R, n, R' and n' are as defined above.
[0143] There is further provided herein a compound of formula (IVb') below or a pharma- ceutically acceptable salt thereof, for use for treating and / or preventing an inflammatory disease, disorder or condition as defined above, wherein the compound is [ka]
[0144] In some embodiments, the method of the present invention for treating an inflammatory disease, disorder or condition further comprises measuring the level of a compound described herein or a pharma- ceutically acceptable salt thereof or a metabolite thereof in a patient. In some embodiments, the level of a compound described herein or a pharma- ceutically acceptable salt thereof or a metabolite thereof is measured in a biological sample from the patient. In some embodiments, the biological sample from the patient is a blood, plasma, tissue, saliva and / or serum sample.
[0145] In a further embodiment, the present invention provides compound (I), (Ib), (Ib'), (IV), (IVb) or (IVb') for use as defined above for treating a patient, wherein the level of a compound of formula (I), formula (Ib), formula (Ib'), formula (IV), formula (IVb) or formula (IVb') or a pharma- ceutically acceptable salt thereof as defined above in a sample of the patient's blood, plasma, tissue, saliva and / or serum is measured during said use.
[0146] In some embodiments, the method of the present invention for treating an inflammatory disease, disorder or condition further comprises measuring the level of the compound of Formula (I), Formula (Ia), Formula (Ib), Formula (Ib'), Formula (Ic) and Formula (Id) or a pharma- ceutically acceptable salt thereof in the patient. In some embodiments, the method of the present invention for treating an inflammatory disease, disorder or condition further comprises measuring the level of the compound of Formula (IV), Formula (IVa), Formula (IVb), Formula (IVb'), Formula (IVc) and Formula (IVd) or a pharma- ceutically acceptable salt thereof in the patient. In some embodiments, the method of the present invention for treating an inflammatory disease, disorder or condition further comprises measuring the total level of the compound of Formula (I) and Formula (IV) or a pharma- ceutically acceptable salt thereof in the patient. In some embodiments, the method of the present invention for treating an inflammatory disease, disorder or condition further comprises measuring the total level of the compound of Formula (I) and Formula (IV) or a pharma- ceutically acceptable salt thereof in the patient. In some embodiments, the method of the present invention for treating an inflammatory disease, disorder or condition further comprises measuring the total level of the compound of formula (Ia) and formula (IVa) or a pharma- ceutically acceptable salt thereof in the patient. In some embodiments, the method of the present invention for treating an inflammatory disease, disorder or condition further comprises measuring the total level of the compound of formula (Ib) and formula (IVb) or a pharma- ceutically acceptable salt thereof in the patient. In some embodiments, the method of the present invention for treating an inflammatory disease, disorder or condition further comprises measuring the total level of the compound of formula (Ib') and formula (IVb') or a pharma- ceutically acceptable salt thereof in the patient. In some embodiments, the method of the present invention for treating an inflammatory disease, disorder or condition further comprises measuring the total level of the compound of formula (Ic) and formula (IVc) or a pharma- ceutically acceptable salt thereof in the patient. In some embodiments, the methods of the present invention for treating an inflammatory disease, disorder or condition further include measuring the total level of the compounds of Formula (Id) and Formula (IVd) or a pharma- ceutical acceptable salt thereof in the patient.
[0147] In some embodiments, the methods of the invention for treating an inflammatory disease, disorder, or condition further comprise measuring and / or monitoring the presence and / or level of a biomarker in the patient. In some embodiments, the presence and / or level of a biomarker is measured in a biological sample of the patient. In some embodiments, the biological sample of the patient is a blood sample. In some embodiments, the biological sample of the patient is a tissue sample. In some embodiments, the biomarker measured and / or monitored in the methods of the invention is miR-124, as described in WO 2014 / 111892, the entire contents of which are incorporated herein by reference. In some embodiments, the methods of the invention for treating an inflammatory disease, disorder, or condition further comprise measuring and / or monitoring the presence and / or expression level of miR-124 in the patient prior to administering a compound or pharma- ceutically acceptable salt or composition thereof described herein. In some embodiments, the methods of the invention for treating an inflammatory disease, disorder, or condition further comprise measuring and / or monitoring the presence and / or expression level of miR-124 in the patient during the course of treatment with a compound or pharma- ceutically acceptable salt or composition thereof described herein. In some embodiments, the methods of the invention for treating an inflammatory disease, disorder, or condition further comprise selecting a patient for treatment with a compound or pharma- ceutically acceptable salt or composition thereof described herein by measuring and / or monitoring the presence and / or expression level of miR-124 in the patient. In some embodiments, the methods of the invention for treating an inflammatory disease, disorder, or condition further comprise excluding a patient from treatment with a compound or pharma- ceutically acceptable salt or composition thereof described herein by measuring and / or monitoring the presence and / or expression level of miR-124 in the patient.In some embodiments, the methods of the invention for treating an inflammatory disease, disorder, or condition further include adjusting (e.g., increasing or decreasing) the administration regimen (e.g., dosage and / or administration schedule) of a compound or pharma- ceutical acceptable salt or composition thereof described herein to be administered to a patient by measuring and / or monitoring the presence and / or expression level of miR-124 in the patient.
[0148] In some embodiments, the method of the present invention for treating an inflammatory disease, disorder or condition comprises comparing the measured expression level of miR-124 in a patient to a control reference value. The control reference value to be used to compare the measured expression level of miR-124 in a patient is obtained from a control sample. The control sample can be obtained from a variety of sources. In some embodiments, the control sample is taken from a patient prior to treatment or prior to the presence of disease (e.g., a stored blood sample or tissue sample). In some embodiments, the control sample is taken from a set of normal, non-diseased members of a population. In some embodiments, the control sample is taken from a patient prior to treatment with a compound or pharma- ceutically acceptable salt or composition thereof described herein. In some embodiments, a cellular assay can be performed on the biological sample.
[0149] In some embodiments, modulated presence and / or expression level of miR-124 in a patient compared to a control reference value is indicative of an inflammatory disease, disorder, or condition. In some embodiments, modulated presence and / or expression level of miR-124 in a patient compared to a control reference value is indicative of the efficacy of treatment with a compound or pharma- ceutically acceptable salt or composition thereof described herein administered to the patient. The term "modulation" or "modulated presence and / or expression level" means that the presence or expression level of a biomarker is either induced or increased, or, alternatively, inhibited or decreased.
[0150] In some embodiments, the measured, decreased or inhibited presence or decreased expression level of miR-124 relative to the control reference value indicates an inflammatory disease, disorder or condition. In some embodiments, the measured, induced or increased presence or increased expression level of miR-124 relative to the control reference value indicates the efficacy of a compound or pharma- ceutically acceptable salt or composition thereof described herein. In some embodiments, the measured expression level of miR-124 in a patient treated with a compound or pharma- ceutically acceptable salt or composition thereof described herein is increased by 2-fold, 4-fold, 6-fold, 8-fold, or 10-fold relative to the control reference value.
[0151] Thus, in a particular embodiment, the present invention further provides a compound of formula (I), formula (Ib), formula (Ib'), formula (IV), formula (IVb) or formula (IVb') or a pharma- ceutically acceptable salt thereof for the use as defined above for treating a patient, wherein the presence and / or expression level of miR-124 in blood and / or tissue samples of the patient is measured before and / or during said use.
[0152] In some embodiments, the present invention provides an algorithm that links miR-124 levels to levels of cytokines or other biomarkers or levels of a compound of Formula (I) or Formula (IV) or a pharma- ceutically acceptable salt thereof to monitor the severity of a disease, disorder, or condition and / or to monitor the effectiveness of a treatment, including, but not limited to, those described herein. In some embodiments, the treatment methods described herein include using an algorithm that links miR-124 levels to levels of cytokines or other biomarkers or levels of a compound of Formula (I) or Formula (IV) or a pharma- ceutically acceptable salt thereof to monitor the severity of a disease, disorder, or condition and / or to monitor the effectiveness of a treatment.
[0153] Further provided herein is a compound for use according to the invention, wherein an algorithm linking miR-124 levels with levels of cytokines or other biomarkers or levels of a compound of formula (I) or formula (IV) or a pharma- ceutical acceptable salt thereof as defined herein above is used to monitor the severity of a disease, disorder or condition and / or to monitor the effectiveness of a treatment.
[0154] Further provided herein is a compound for use according to the invention, wherein an algorithm linking miR-124 levels with levels of cytokines or other biomarkers or levels of a compound of formula (I) or formula (IV) or a pharma- ceutical acceptable salt thereof as defined herein above is used to select patients for said use or treatment.
[0155] Further provided herein is an algorithm that links miR-124 levels with levels of cytokines or other biomarkers or levels of a compound of formula (I) or formula (IV) or a pharma- ceutical acceptable salt thereof as defined herein above, for monitoring the severity of a disease, disorder or condition and / or for monitoring the efficacy of a treatment.
[0156] Thus, in a particular embodiment, the present invention further provides a compound of formula (I), (Ib), (Ib'), (IV), (IVb) or (IVb') for the use as defined above, wherein an algorithm linking miR-124 levels with levels of cytokines or other biomarkers or levels of a compound of formula (I) or formula (IV) or a pharma- ceutical acceptable salt thereof as defined herein above is used to monitor the severity of a disorder or condition and / or to monitor the efficacy of a treatment.
[0157] Use, Formulation and Administration
[0158] Pharmaceutically acceptable compositions
[0159] According to another embodiment, the present invention provides a composition comprising a compound of the present invention or a pharma- ceutically acceptable derivative thereof, and a pharma- ceutically acceptable carrier, adjuvant, or vehicle. In some embodiments, the composition of the present invention is formulated for administration to a patient in need of such a composition. In some embodiments, the composition of the present invention is formulated for oral administration to a patient.
[0160] The term "patient", as used herein, means an animal, preferably a mammal, and most preferably a human.
[0161] The term "pharmaceutical acceptable carrier, auxiliary agent or vehicle" refers to a non-toxic carrier, auxiliary agent or vehicle that does not destroy the pharmacological activity of the compound to be formulated. Pharmaceutically acceptable carriers, auxiliary agents or vehicles that can be used in the compositions of the present invention include, but are not limited to, ion exchangers, alumina, aluminum stearate, lecithin, serum proteins such as human serum albumin, buffer substances such as phosphates, glycine, sorbic acid, potassium sorbate, partial glyceride mixtures of saturated vegetable fatty acids, water, salts or electrolytes such as protamine sulfate, disodium hydrogen phosphate, potassium hydrogen phosphate, sodium chloride, zinc salts, colloidal silica, magnesium trisilicate, polyvinylpyrrolidone, cellulose-based substances, polyethylene glycol, sodium carboxymethylcellulose, polyacrylates, waxes, polyethylene-polyoxypropylene-block polymers, polyethylene glycol, and wool fat.
[0162] "Pharmaceutically acceptable derivative" means any non-toxic salt, ester, salt of an ester, or other derivative of a compound of the invention which, upon administration to a recipient, is capable of providing, either directly or indirectly, a compound of the invention, or an active metabolite or residue thereof.
[0163] A "biological sample" suitable for the present invention can be a biological fluid, such as a blood, plasma or serum, saliva, interstitial fluid, or urine sample; a cell sample, such as a cell culture, cell line, or PBMC sample, a tissue biopsy, such as a sample of oral tissue, gastrointestinal tissue, skin, oral mucosa, or a plurality of samples from a clinical trial.
[0164] The biological sample may be a crude sample or may be purified to various degrees prior to storage, processing or measurement. In some embodiments, the biological sample is selected from the group consisting of a biological tissue sample, a whole blood sample, a swab sample, a plasma sample, a serum sample, a saliva sample, a vaginal fluid sample, a sperm sample, a pharyngeal fluid sample, a synovial fluid sample, a bronchial or pleural fluid sample, a fecal fluid sample, a cerebrospinal fluid sample, a tear sample, and a tissue culture supernatant sample.
[0165] The compositions of the present invention may be administered orally, parenterally, by inhalation spray, topically, rectally, nasally, bucally, intravaginally, or via an implanted reservoir. The term "parenteral" as used herein includes subcutaneous, intravenous, intramuscular, intra-articular, intra-synovial, intrasternal, intrathecal, intrahepatic, intralesional, and intracranial injection or infusion techniques. Preferably, the compositions are administered orally, intraperitoneally, or intravenously. Sterile injectable forms of the compositions of the present invention may be aqueous or oily suspensions. These suspensions may be formulated according to techniques known in the art using suitable dispersing or wetting agents and suspending agents. The sterile injectable preparation may also be a sterile injectable solution or suspension in a non-toxic parenterally acceptable diluent or solvent, for example as a solution in 1,3-butanediol. Among the acceptable vehicles and solvents that may be used are water, Ringer's solution, and isotonic sodium chloride solution. In addition, sterile, fixed oils are conventionally employed as a solvent or suspending medium.
[0166] For this purpose, any bland fixed oil may be used, including synthetic mono- or diglycerides. Fatty acids, such as oleic acid, and its glyceride derivatives, especially in their polyoxyethylated versions, are useful in the preparation of injectables, as are natural pharma- ceutical acceptable oils, such as olive oil or castor oil. These oil solutions or suspensions may also contain long-chain alcohol diluents or dispersants, such as carboxymethylcellulose or similar dispersants, that are commonly used in the preparation of pharma- ceutical acceptable dosage forms, including emulsions and suspensions. Commonly used surfactants, such as Tweens, Spans, and other emulsifiers, or bioavailability enhancers that are also commonly used in the manufacture of pharma- ceutical acceptable solid, liquid, or other dosage forms, may also be used for formulation purposes.
[0167] The pharma- ceutically acceptable composition of the present invention can be orally administered in any orally acceptable dosage form, including, but not limited to, capsules, tablets, aqueous suspensions or solutions.For tablets for oral use, commonly used carriers include lactose and cornstarch.Lubricants, such as magnesium stearate, are also typically added.For oral administration in capsule form, useful diluents include lactose and dried cornstarch.When aqueous suspensions are required for oral use, the active ingredient is combined with emulsifying and suspending agents.If necessary, certain sweeteners, flavors or colorants can also be added.
[0168] Alternatively, the pharma- ceutically acceptable compositions of the present invention can be administered in the form of suppositories for rectal administration. These can be prepared by mixing the drug with a suitable non-irritating excipient that is solid at room temperature but liquid at rectal temperature and therefore melts in the rectum to release the drug. Such materials include cocoa butter, beeswax, and polyethylene glycols.
[0169] The pharma- ceutically acceptable compositions of this invention may also be administered topically, especially when the subject of treatment includes areas or organs readily accessible by topical application, including disorders of the eye, the skin, or the lower intestinal tract. Suitable topical formulations are readily prepared for each of these areas or organs.
[0170] Topical application for the lower intestinal tract can be effected in a rectal suppository formulation (see above) or in a suitable enema formulation. Topically-transdermal patches may also be used.
[0171] For topical application, the prepared pharma- ceutically acceptable composition can be formulated in a suitable ointment containing the active ingredient suspended or dissolved in one or more carriers.Carriers for topical application of the compounds of the present invention include, but are not limited to, mineral oil, liquid petrolatum, white petrolatum, propylene glycol, polyoxyethylene, polyoxypropylene compounds, emulsifying wax and water.Alternatively, the prepared pharma-ceutically acceptable composition can be formulated in a suitable lotion or cream containing the active ingredient suspended or dissolved in one or more pharma-ceutically acceptable carriers.
[0172] Suitable carriers include, but are not limited to, mineral oil, sorbitan monostearate, polysorbate 60, cetyl esters wax, cetearyl alcohol, 2-octyldodecanol, benzyl alcohol and water.
[0173] For ophthalmic use, the pharma- ceutically acceptable composition may be formulated as a micronized suspension in isotonic, pH-adjusted, sterile saline, or, preferably, as a solution in isotonic, pH-adjusted, sterile saline, either with or without a preservative, such as benzylalkonium chloride. Alternatively, for ophthalmic use, the pharma-ceutically acceptable composition may be formulated in an ointment, such as petrolatum.
[0174] The pharma- ceutically acceptable compositions of the present invention may also be administered by nasal aerosol or inhalation. Such compositions may be prepared according to techniques well known in the art of pharmaceutical formulation, and may be prepared as a solution in saline using benzyl alcohol or other suitable preservatives, absorption enhancers to enhance bioavailability, fluorocarbons and / or other conventional solubilizing or dispersing agents. Most preferably, the pharma- ceutically acceptable compositions of the present invention are formulated for oral administration. Such formulations may be administered with or without food.
[0175] In some embodiments, the pharma- ceutically acceptable compositions of the invention are administered without food, hi other embodiments, the pharma- ceutically acceptable compositions of the invention are administered with food.
[0176] The amount of the compounds of the present invention that can be combined with the carrier materials to produce a composition in a single dosage form will vary depending upon the host treated, the particular mode of administration, etc. Preferably, the compositions provided should be formulated so that a dosage of between 0.01-100 mg / kg body weight / day of the inhibitor can be administered to a patient receiving these compositions.
[0177] It should also be understood that the specific dosage and treatment regimen for any patient will depend on a variety of factors, including, for example, the activity of the particular compound used, age, body weight, general health, sex, diet, time of administration, excretion rate, drug combination, and the judgment of the treating physician, as well as the severity of the particular disease being treated. The amount of a compound of the invention in the composition will also depend on the particular compound in the composition.
[0178] Uses of the Compounds and Pharmaceutically Acceptable Compositions
[0179] The compounds and compositions described herein are generally useful for treating inflammatory diseases, disorders or conditions.
[0180] As used herein, the terms "treatment," "treat," and "treating" refer to reversing, alleviating, delaying the onset of, or arresting the progression of, a disease or disorder described herein or one or more symptoms thereof. In some embodiments, treatment can be administered after one or more symptoms have developed. In other embodiments, treatment can be administered in the absence of symptoms. For example, treatment can be administered to susceptible individuals prior to the onset of symptoms (e.g., in light of a history of the condition and / or in light of genetic or other susceptibility factors). Treatment can also be continued after symptoms have resolved, e.g., to prevent or delay their recurrence.
[0181] In some embodiments, the present invention provides a method for treating an inflammatory disease, disorder, or condition, comprising administering to a patient in need thereof a compound or composition described herein.
[0182] Inflammatory diseases, disorders or conditions
[0183] The compounds described herein are useful in the treatment of inflammatory or obstructive airway diseases, for example resulting in a reduction in tissue damage, airway inflammation, bronchial hyperresponsiveness, remodeling or disease progression. In some embodiments, the inflammatory disease, disorder or condition is an inflammatory or obstructive airway disease, for example, asthma of any type or origin, including both intrinsic (non-allergic) asthma and extrinsic (allergic) asthma, including mild asthma, moderate asthma, severe asthma, bronchial asthma, exercise-induced asthma, occupational asthma, and asthma induced after bacterial infection. Treatment of asthma should also be understood to include treatment of subjects, for example subjects under 4 or 5 years old, who show symptoms of wheezing and are diagnosed or can be diagnosed as "wheezing infants" (an established patient category of major medical concern and currently often identified as early or early stage asthma patients).
[0184] The compounds described herein are useful for treating heteroimmune diseases.In some embodiments, the inflammatory disease, disorder or condition is a heteroimmune disease, including but not limited to graft-versus-host disease, transplantation, blood transfusion, anaphylaxis, allergy (e.g., allergy to plant pollen, latex, drugs, food, insect venom, animal hair, animal dander, mite dust or cockroach calyx), type I hypersensitivity, allergic conjunctivitis, allergic rhinitis, and atopic dermatitis.
[0185] The prophylactic effect in the treatment of asthma may be evidenced by a reduced frequency or severity of symptomatic attacks, such as a reduced frequency or severity of attacks of acute asthma or bronchoconstrictors, an improvement in lung function, or improved airway hyperresponsiveness. It may also be evidenced by a reduced need for other symptomatic therapies, such as anti-inflammatory drugs or bronchodilators, to limit or stop symptomatic attacks, or treatments intended to limit or stop symptomatic attacks, if they occur. The prophylactic effect in asthma may be seen especially in subjects prone to "morning dipping". "Morning dip" is a recognized asthma syndrome common to a significant proportion of asthmatics and characterized by asthma attacks between about 4:00 a.m. and about 6:00 a.m., i.e., a time usually substantially removed from previously administered symptomatic asthma therapy.
[0186] In some embodiments, the inflammatory disease, disorder, or condition is selected from acute lung injury (ALI), adult / acute respiratory distress syndrome (ARDS), chronic obstructive pulmonary disease (COPD), chronic obstructive airways disease (COAD) or chronic obstructive lung disease (COLD), including chronic bronchitis or dyspnea associated therewith, emphysema, and airway hyperresponsiveness due to other medications, particularly other inhaled medications. In some embodiments, the inflammatory disease, disorder, or condition is bronchitis, where the bronchitis is bronchitis of any type or origin, including, but not limited to, acute bronchitis, arachidic acid bronchitis, catarrhal bronchitis, croup bronchitis, chronic bronchitis, or tuberculous bronchitis. In some embodiments, the inflammatory disease, disorder or condition is pneumoconiosis of any type or origin (an inflammatory, generally occupational, lung disease, whether chronic or acute, frequently associated with airway obstruction and caused by repeated inhalation of dust), such as pneumoconiosis, including aluminosis, anthracosis, asbestosis, chalicosis, ptilosis, siderosis, silicosis, tobacco poisoning, and byssinosis.
[0187] In some embodiments, the inflammatory disease, disorder, or condition is an eosinophil-associated disorder, e.g., eosinophilia. In some embodiments, the eosinophil-associated disorder is an eosinophil-associated disorder of the airways (including, e.g., pathological eosinophil infiltration of lung tissue), e.g., hypereosinophilia affecting the airways and / or lungs, and eosinophil-associated disorders of the airways, e.g., caused by or associated with Loeffler's syndrome, eosinophilic pneumonia, parasitic (particularly metazoan) infestations (including tropical eosinophilia), bronchopulmonary aspergillosis, polyarteritis nodosa (including Churg-Strauss syndrome), eosinophilic granulomas, and eosinophil-associated disorders affecting the airways caused by drug reactions.
[0188] The compounds described herein are also useful in treating inflammatory or allergic skin conditions.The inflammatory or allergic skin conditions are selected from psoriasis, contact dermatitis, atopic dermatitis, alopecia areata, erythema multiforme, dermatitis herpetiformis, scleroderma, vitiligo, hypersensitivity vasculitis, urticaria, bullous pemphigoid, lupus erythematosus, systemic lupus erythematosus, pemphigus vulgaris, pemphigus foliaceus, paraneoplastic pemphigus, epidermolysis bullosa acquisita, acne vulgaris, and other inflammatory or allergic skin conditions.
[0189] In some embodiments, the inflammatory disease, disorder or condition is a disease or condition having an inflammatory component, for example, diseases and conditions of the eye, such as ocular allergies, conjunctivitis, keratoconjunctivitis sicca, uveitis and vernal conjunctivitis, diseases and conditions affecting the nose (including allergic rhinitis), inflammatory diseases involving an autoimmune response or having an autoimmune component or etiology (including autoimmune blood disorders (e.g., hemolytic anemia, aplastic anemia, true erythrocytic anemia, and idiopathic thrombocytopenia)), systemic lupus erythematosus, rheumatoid arthritis, polychondritis, scleroderma, Wegener's granulomatosis, dermatomyositis, chronic hepatitis, myasthenia gravis, Stevens-Johnson syndrome, idiopathic sprue, sprue, autoimmune inflammatory bowel disease (e.g., ulcerative colitis and Crohn's disease), irritable bowel syndrome, celiac disease, periodontitis, pulmonary hyaline membrane disease, renal disease, glomerular disease, alcoholic liver disease, multiple sclerosis, endocrine eye disorders, Graves' disease, sarcoidosis, alveolitis, chronic hypersensitivity pneumonitis, multiple sclerosis, primary biliary cirrhosis, uveitis (anterior and posterior), Sjogren's syndrome, keratoconjunctivitis sicca, uveitis, and vernal conjunctivitis. keratoconjunctivitis), interstitial pulmonary fibrosis, psoriatic arthritis, systemic juvenile idiopathic arthritis, cryopyrin-associated periodic syndrome, Muckle-Wells syndrome, nephritis, vasculitis, diverticulitis, interstitial cystitis, glomerulonephritis (with or without nephrotic syndrome, including idiopathic nephrotic syndrome or minor change nephropathy), chronic granulomatous disease, endometriosis, leptospirosis kidney disease, glaucoma, retinopathy, aging, headache, pain, complex regional pain syndrome, cardiac hypertrophy, myocardial infarction, wasting, dysphagia, obesity, fetal growth retardation, intestinal failure, hypercholesterolemia, heart disease, chronic heart failure, mesothelioma, anhidrotic ectodermal dysplasia, Behcet's disease, incontinentia pigmenti, Paget's disease, acute or chronic pancreatitis, hereditary periodic fever syndromes, asthma (allergic and non-allergic, mild, moderate, severe, bronchitis, and exercise-induced), acute lung injury, acute respiratory distress syndrome, eosinophilia, hypersensitivity reactions, anaphylaxis, nasal sinusitis, eye allergies, silica induced diseasediseases), COPD (reduction of damage, airway inflammation, bronchial hyperresponsiveness, remodeling, or disease progression), pulmonary diseases, cystic fibrosis, acid-induced lung injury, pulmonary hypertension, polyneuropathy, cataracts, muscle inflammation associated with systemic sclerosis, inclusion body myositis, myasthenia gravis, thyroiditis, Addison's disease, lichen planus, diabetes mellitus type 1 or type 2, appendicitis, atopic dermatitis, asthma, allergies, blepharitis, bronchiolitis, bronchitis, bursitis, cervicitis, cholangitis, cholecystitis, chronic transplant rejection, colitis, conjunctivitis, Crohn's disease, cystitis, dacryoadenitis, dermatitis, dermatomyositis, cerebral In particular, the following conditions are considered to be causes of inflammation: endocarditis, endometritis, enteritis, enterocolitis, epicondylitis, epididymitis, fasciitis, connective tissue inflammation, gastritis, gastroenteritis, Henoch-Schönlein purpura, hepatitis, hidradenitis suppurativa, immunoglobulin A nephropathy, interstitial lung disease, laryngitis, mastitis, meningitis, myelitis, myocarditis, myositis, nephritis, oophoritis, orchitis, osteitis, otitis, pancreatitis, parotitis, pericarditis, peritonitis, pharyngitis, pleurisy, phlebitis, interstitial pneumonia, pneumonia, polymyositis, proctitis, prostatitis, pyelonephritis, rhinitis, salpingitis, sinusitis, stomatitis, synovitis, tendonitis, tonsillitis, ulcerative colitis, uveitis, vaginitis, vasculitis, or vulvitis.
[0190] In some embodiments, the inflammatory disease, disorder or condition is acute or chronic graft rejection in kidney, liver, heart, lung transplants, or graft-versus-host disease in bone marrow transplants.
[0191] In some embodiments, the inflammatory disease, disorder or condition is an inflammatory disease, disorder or condition of the skin, hi some embodiments, the inflammatory disease, disorder or condition of the skin is selected from contact dermatitis, atopic dermatitis, alopecia areata, erythema multiforme, dermatitis herpetiformis, scleroderma, vitiligo, hypersensitivity vasculitis, urticaria, bullous pemphigoid, pemphigus vulgaris, pemphigus foliaceus, paraneoplastic pemphigus, epidermolysis bullosa acquisita, and other inflammatory or allergic conditions of the skin.
[0192] In some embodiments, the inflammatory disease, disorder or condition is selected from acute and chronic gout, chronic gouty arthritis, psoriasis, psoriatic arthritis, rheumatoid arthritis, juvenile rheumatoid arthritis, systemic jubenile idiopathic arthritis (SJIA), Cryopyrin Associated Periodic Syndrome (CAPS), Muckle-Wells syndrome, and osteoarthritis.
[0193] In some embodiments, the inflammatory disease, disorder or condition is a T17-mediated disease. In some embodiments, the T17-mediated disease is selected from systemic lupus erythematosus, multiple sclerosis, and inflammatory bowel disease (including Crohn's disease or ulcerative colitis).
[0194] In some embodiments, the inflammatory disease, disorder or condition is selected from Sjogren's syndrome, allergic disorders, osteoarthritis, eye conditions such as eye allergies, conjunctivitis, keratoconjunctivitis sicca, and vernal conjunctivitis, and diseases affecting the nose, such as allergic rhinitis.
[0195] In some embodiments, the inflammatory disease, disorder or condition is associated with transplantation. In some embodiments, the inflammatory disease, disorder or condition is associated with organ transplantation, organ transplant rejection, and / or graft-versus-host disease.
[0196] In some embodiments, the inflammatory disease, disorder or condition is an autoimmune disorder. In some embodiments, the autoimmune disorder is type 1 diabetes, systemic lupus erythematosus, multiple sclerosis, psoriasis, Behcet's disease, POEMS syndrome, Crohn's disease, ulcerative colitis, ankylosing spondylitis, axial spondyloarthritis, primary biliary cirrhosis, autoimmune hepatitis, or inflammatory bowel disease.
[0197] In some embodiments, the inflammatory disease, disorder or condition is an inflammatory disorder, hi some embodiments, the inflammatory disorder is rheumatoid arthritis, asthma, chronic obstructive pulmonary disease, psoriasis, hepatomegaly, Crohn's disease, ulcerative colitis, ankylosing spondylitis, axial spondyloarthritis, primary biliary cirrhosis, polymyalgia rheumatica, giant cell arteritis, or inflammatory bowel disease.
[0198] In some embodiments, the present invention provides a method for treating an inflammatory disease, disorder, or condition of the pancreas, hi some embodiments, the inflammatory disease, disorder, or condition of the pancreas is selected from type 1 diabetes, type 2 diabetes, acute pancreatitis, and chronic pancreatitis.
[0199] In some embodiments, the present invention provides a method for treating an inflammatory disease, disorder, or condition of the kidney, hi some embodiments, the inflammatory disease, disorder, or condition of the kidney is selected from glomerulosclerosis, glomerulonephritis, nephritis, acute kidney injury, Berger's disease, Goodpasture's syndrome, Wegener's granulomatosis, and acute or chronic rejection of a kidney transplant.
[0200] In some embodiments, the present invention provides a method for treating an inflammatory disease, disorder, or condition in the liver, hi some embodiments, the inflammatory disease, disorder, or condition is selected from nonalcoholic steatohepatitis (NASH), nonalcoholic fatty liver disease (NAFLD), cholestatic liver disease, sclerosing cholangitis, and acute or chronic rejection of a liver transplant.
[0201] Further provided herein is a compound of formula (I), formula (Ib) or formula (Ib') as defined above for the use as defined above, wherein said inflammatory disease, disorder or condition is selected from non-alcoholic steatohepatitis (NASH), non-alcoholic fatty liver disease (NAFLD), cholestatic liver disease, sclerosing cholangitis, and acute or chronic rejection of liver transplants in the liver.
[0202] Nonalcoholic fatty liver disease (NAFLD) actually encompasses a range of diseases, from nonalcoholic fatty liver (NAFL) to nonalcoholic steatohepatitis (NASH). Diagnosis of these diseases nowadays means a liver biopsy, which is invasive. In addition, appropriate treatment must be undertaken.
[0203] NAFLD is characterized primarily by macrovesicular steatosis, and the presence of visible steatosis in more than 5% of hepatocytes is generally accepted as a practical definition of fatty liver. The NAFLD activity score (NAS) is commonly used to define and quantify disease activity from the assessment of the severity of ongoing liver damage observed in liver biopsies. Thus, NAS is one of the clinical endpoints for assessing the activity of NASH (Sanyal AJ.Et al.,Hepatology,2011;54:344). Scoring is based on the assessment of the severity of steatosis (0-3), inflammation (0-3), and hepatocellular ballooning (0-2).
[0204] As will be apparent from Example 2 herein below, 8-chloro-N-(4-(trifluoromethoxy)phenyl)quinolin-2-amine and its metabolites of the formula below were tested in the STAM model of non-alcoholic steatohepatitis, a well-established model for evaluating the activity of compounds in the treatment of NASH. [ka] Both of the above compounds showed a trend towards a decrease in NAS compared to the vehicle population predictive of their use in the treatment of cholestatic liver disease, sclerosing cholangitis and NAFLD, including NAFL and NASH.
[0205] Moreover, as shown further in Example 2, sections 4.3 and 4.4 below, 8-chloro-N-(4-(trifluoromethoxy)phenyl)quinolin-2-amine reduces alpha-SMA and reduces F4 / 80-positive areas in the liver.
[0206] In some embodiments, the present invention provides a method for treating an inflammatory disease, disorder, or condition in the lungs or heart, hi some embodiments, the inflammatory disease, disorder, or condition in the lungs is selected from chronic obstructive pulmonary disease (COPD), asthma, pulmonary fibrosis, pulmonary hypertension, sarcoidosis, myocarditis, pericarditis, and acute or chronic rejection of a lung or heart transplant.
[0207] There is further provided herein a compound of formula (I), formula (Ib) or formula (Ib') as defined above for the use as defined above, wherein said inflammatory disease, disorder or condition is selected from chronic obstructive pulmonary disease (COPD), asthma, pulmonary fibrosis, pulmonary hypertension, sarcoidosis, myocarditis, pericarditis, and acute or chronic rejection of lung or heart transplants.
[0208] As can be seen from Example 3 below, 8-chloro-N-(4-(trifluoromethoxy)phenyl)quinolin-2-amine, when tested in the Sugen hypoxia model, showed a trend to reduce mean pulmonary artery pressure at 70 mg / kg.
[0209] As evidenced by Example 4 below, 8-chloro-N-(4-(trifluoromethoxy)phenyl)quinolin-2-amine significantly reduces pulmonary pressure in female rats with monocrotaline-induced pulmonary hypertension in the rat monocrotaline model of pulmonary hypertension.
[0210] All the above results are predictive of their use in the treatment of pulmonary fibrosis, pulmonary hypertension, sarcoidosis, myocarditis and pericarditis.
[0211] In some embodiments, the present invention provides a method for treating an inflammatory disease, disorder or condition of the skin, hi some embodiments, the inflammatory disease, disorder or condition of the skin is selected from contact dermatitis, atopic dermatitis, psoriasis, alopecia areata, erythema multiforme, dermatitis herpetiformis, scleroderma, vitiligo, hypersensitivity vasculitis, urticaria, bullous pemphigoid, pemphigus vulgaris, pemphigus foliaceus, paraneoplastic pemphigus, epidermolysis bullosa acquisita, acne, keloid scars, and other inflammatory or allergic conditions of the skin.
[0212] In some embodiments, the present invention provides a method for treating an inflammatory disease, disorder, or condition of the blood vessels / blood, hi some embodiments, the inflammatory disease, disorder, or condition of the blood vessels / blood is selected from Behcet's disease, vasculitis, sepsis, tumor angiogenesis, atherosclerosis, proliferative vascular disease, and restenosis.
[0213] In some embodiments, the present invention provides a method for treating an ophthalmic inflammatory disease, disorder, or condition, hi some embodiments, the ophthalmic inflammatory disease, disorder, or condition is selected from conjunctivitis, scleritis, episcleritis, panuveitis, choroiditis, chorioretinitis, neuroretinitis, uveitis, orbital inflammatory disease, and optic neuritis.
[0214] In some embodiments, the present invention provides a method for treating an inflammatory disease, disorder, or condition in the central or peripheral nervous system, hi some embodiments, the inflammatory disease, disorder, or condition in the central or peripheral nervous system is selected from non-viral and viral encephalitis and meningitis, depression, neuropathic pain including chronic pain, traumatic brain injury including stroke, Alzheimer's disease, Parkinson's disease, myelitis, Charcot-Marie-Tooth type 1 (including CMT1A and CMT1B), multiple sclerosis, amyotrophic lateral sclerosis (ALS), Creutzfeldt-Jakob disease, demyelinating polyneuropathy, and peripheral neuropathy.
[0215] In some embodiments, the present invention provides a method for treating an autoimmune disease, disorder, or condition, hi some embodiments, the autoimmune disease, disorder, or condition is selected from lupus, including lupus of the skin and kidney, Guillain-Barre syndrome, myasthenia gravis, Hashimoto's thyroiditis, idiopathic purpura, aplastic anemia, Rebes' disease, and myocarditis.
[0216] In some embodiments, the present invention provides a method for treating an inflammatory disease, disorder or condition of the intestine, hi some embodiments, the inflammatory disease, disorder or condition of the intestine is selected from intestinal failure, ulcerative colitis, and Crohn's disease.
[0217] In some embodiments, the present invention provides a method for treating an inflammatory disease, disorder or condition in the reproductive system, hi some embodiments, the inflammatory disease, disorder or condition in the reproductive system is selected from endometriosis, uterine fibroids, prostatic dysplasia or growths, and cervical dysplasia.
[0218] In some embodiments, the present invention provides a method for treating an inflammatory disease, disorder or condition of bone and / or joints, hi some embodiments, the inflammatory disease, disorder or condition of bone and / or joints is selected from juvenile idiopathic arthritis, psoriatic arthritis, periodontitis, and arthritis and / or demineralization of the hands, feet, ankles, knees, hips, shoulders, elbows, or spine.
[0219] Combination therapy
[0220] Depending on the particular condition, or disease, to be treated, additional therapeutic agents that are normally administered to treat that condition may be administered in combination with the compounds and compositions described herein. As used herein, additional therapeutic agents that are normally administered to treat a particular disease or condition are known as "appropriate for the disease, or condition, being treated."
[0221] In some embodiments, the present invention provides a method for treating an inflammatory disease, disorder, or condition, comprising administering to a patient in need thereof a compound or composition described herein in combination with another therapeutic agent.
[0222] These additional agents can be administered separately from the combined therapy provided as part of a multiple dose regimen. Alternatively, these agents can be part of a single dosage form and mixed together with the compound of the present invention in a single composition. When administered as part of a multiple dose regimen, the two active agents can be given simultaneously, sequentially, or within a period of each other, usually within 5 hours of each other.
[0223] As used herein, the terms "combination," "combined," and related terms refer to the simultaneous or sequential administration of agents according to the invention. For example, the combination of the invention may be administered simultaneously or sequentially with another therapeutic agent in separate unit dosage forms, or together in a single unit dosage form.
[0224] The amount of additional therapeutic agent present in the compositions of the invention will not exceed the amount that would normally be administered in a composition comprising that therapeutic agent as the only active agent. Preferably, the amount of additional therapeutic agent in the presently disclosed compositions will range from about 50% to about 100% of the amount that would normally be present in a composition comprising that agent as the only therapeutically active agent.
[0225] The combination may result in an additive or synergistic effect, where lower doses of one or both of the compounds may be used to obtain similar efficacy, or where the same doses may result in significantly improved efficacy.
[0226] In some embodiments, the present invention provides compositions comprising a compound described herein and one or more additional therapeutic agents. The therapeutic agents can be administered together with the compounds described herein, or can be administered before or after the administration of the compounds described herein. Suitable therapeutic agents are described in more detail below. In some embodiments, the compounds described herein can be administered up to 5 minutes, 10 minutes, 15 minutes, 30 minutes, 1 hour, 2 hours, 3 hours, 4 hours, 5 hours, 6 hours, 7 hours, 8 hours, 9 hours, 10 hours, 11 hours, 12 hours, 13 hours, 14 hours, 15 hours, 16 hours, 17 hours, or 18 hours before the therapeutic agent. In some embodiments, the compounds described herein may be administered up to 5 minutes, 10 minutes, 15 minutes, 30 minutes, 1 hour, 2 hours, 3 hours, 4 hours, 5 hours, 6 hours, 7 hours, 8 hours, 9 hours, 10 hours, 11 hours, 12 hours, 13 hours, 14 hours, 15 hours, 16 hours, 17 hours, or 18 hours after the therapeutic agent.
[0227] In some embodiments, the present invention provides methods of treating an inflammatory disease, disorder, or condition by administering to a patient in need thereof a compound described herein and one or more additional therapeutic agents. Such additional therapeutic agents may be small molecules or recombinant biological agents, and may include, for example, acetaminophen, non-steroidal anti-inflammatory drugs (NSAIDS), and the like. drugs such as aspirin, ibuprofen, naproxen, etodolac (Lodine™) and celecoxib, colchicine (Colcrys™), corticosteroids such as prednisone, prednisolone, methylprednisolone, hydrocortisone etc., probenecid, allopurinol, febuxostat (Uloric™), sulfasalazine (Azulfidine™), antimalarials such as hydroxychloroquine (Plaquenil™) and chloroquine (Aralen™), methotrexate (Rheumatrex™), gold salts such as aurothioglucose (Solganal™), aurothiomalate (Myochrysine™) and auranofin (Ridaura™), D-penicillamine (Depen™ or Cuprimine™), azathioprine (Imuran™), cyclophosphamide (Cytoxan™), chlorambucil (Leukeran™), cyclosporine (Sandimmune™, Neoral™), tacrolimus, sirolimus, mycophenolate, leflunomide (Arava™), and "anti-TNF" agents such as etanercept (Enbrel™), infliximab (Remicade™), golimumab (Simponi™), certolizumab pegol (Cimzia™) and adalimumab (Humira™), "anti-IL-1" agents such as anakinra (Kineret™) and rilonacept (Arcalyst™), anti-T cell antibodies such as thymoglobulin, IV immunoglobulin (IVIg: IV Immunoglobulins, canakinumab (Ilaris™), anti-Jak inhibitors such as tofacitinib, antibodies,for example, rituximab (Rituxan™), "anti-T-cell" agents such as abatacept (Orencia™), "anti-IL-6" agents such as tocilizumab (Actemra™), diclofenac, cortisone, hyaluronic acid (Synvisc™ or Hyalgan™), monoclonal antibodies such as tanezumab, anticoagulants such as heparin (Calcinparine™ or Liquaemin™) and warfarin (Coumadin™), antidiarrheals such as diphenoxylate (Lomotil™) and loperamide. amide (Imodium™), bile acid binders such as cholestyramine, alosetron (Lotronex™), lubiprostone (Amitiza™), laxatives such as milk of magnesia, polyethylene glycols (MiraLax™), Dulcolax™, Correctol™ and Senokot™, anticholinergics or antispasmodics such as dicyclomine (Bentyl™), Singulair™, beta2 agonists such as albuterol (Ventolin™), HFA, Proventil® HFA), levalbuterol (Xopenex®), metaproterenol (Alupent®), pirbuterol acetate (Maxair®), terbutaline sulfate (Brethaire®), salmeterol xinafoate (Serevent®) and formoterol (Foradil®), anticholinergics agents such as ipratropium bromide (Atrovent™) and tiotropium (Spiriva™), inhaled corticosteroids such as beclomethasone dipropionate (Beclovent™, Qvar™ and Vanceril™), triamcinolone acetonide (Azmacort™), mometasone (Asthmanex™), budesonide (Pulmocort™) and flunisolide (Aerobid™), Afviar™, Symbicort™, Dulera™, sodium cromoglycate (Intal™), methylxanthines,for example theophylline (Theo-Dur™, Theolair™, Slo-bid™, Uniphyl™, Theo-24™), and aminophylline, IgE antibodies such as omalizumab (Xolair™), nucleoside reverse transcriptase inhibitors such as zidovudine (Retrovir™), abacavir (Ziagen™), abacavir / lamivudine (Epzicom™), abacavir / lamivudine / zidovudine (Trizivir™), didanosine (Videx™), emtricitabine (Emtriva™), lamivudine (Epivir™), lamivudine / zidovudine (Combivir™), stavudine (Zerit™) and zalcitabine (Hivid™), non-nucleoside reverse transcriptase inhibitors such as delavirdine (Rescriptor™), efavirenz (Sustiva™), nevirapine (Viramune™) and etravirine (I ntelence™), nucleotide reverse transcriptase inhibitors such as tenofovir (Viread™), protease inhibitors such as amprenavir (Agenerase™), atazanavir (Reyataz™), darunavir (Prezista™), fosamprenavir (Lexiva™), indinavir (Crixivan™), lopinavir and ritonavir (Kaletra™), nelfinavir (Viracept™), ritonavir (No rvir™), saquinavir (Fortovase™ or Invirase™) and tipranavir (Aptivus™), entry inhibitors such as enfuvirtide (Fuzeon™) and maraviroc (Selzentry™), integrase inhibitors such as raltegravir (Isentress™), doxorubicin (Hydrodaunorubicin™), vincristine (Oncovin™), dexamethasone (Decadron™) in combination with bortezomib (Velcade™) and lenalidomide (Revlimid™), anti-IL36 agents such as BI655130,Dihydroorotate dehydrogenase inhibitors, e.g. IMU-838, anti-OX40 agents, e.g. KHK-4083, microbiome agents, e.g. RBX2660, SER-287, narrow-range kinase inhibitors, e.g. TOP-1288, anti-CD40 agents, e.g. BI-655064 and FFP-104, guanylate cyclase agonists, e.g. dolucatide, sphingosine kinase inhibitors, e.g. opaganib, anti-IL-12 / IL-23 agents, e.g. AK-101, ubiquitin protein ligases enzyme inhibitors, e.g. BBT-401, sphingosine receptor modulators, e.g. BMS-986166, P38MAPK / PDE4 inhibitors, e.g. CBS-3595, CCR9 antagonists, e.g. CCX-507, FimH antagonists, e.g. EB-8018, HIF-PH inhibitors, e.g. FG-6874, HIF-1α stabilizers, e.g. GB-004, MAP3K8 protein inhibitors, e.g. GS-4875, LAG-3 antibodies, e.g. GSK-2831781, RIP2 kinase inhibitors such as GSK-2983559, farnesoid X receptor agonists such as MET-409, CCK2 antagonists such as PNB-001, IL-23 receptor antagonists such as PTG-200, purinergic P2X7 receptor antagonists such as SGM-1019, PDE4 inhibitors such as Apremilast, ICAM-1 inhibitors such as Alicaforsen sodium, anti-IL23 agents such as Guselkumab, Brazikumab and Mirquizumab, anti-IL-15 agents such as A MG-714, TYK-2 inhibitors such as BMS-986165, NK cell activators such as CNDO-201, RIP-1 kinase inhibitors such as GSK-2982772, anti-NKGD2 agents such as JNJ-4500, CXCL-10 antibodies such as JT-02, IL-22 receptor agonists such as RG-7880, GATA-3 antagonists such as SB-012, and colony-stimulating factor-1 receptor inhibitors such as edicotinib, or any one or more combinations thereof.
[0228] In another embodiment, the present invention provides a method of treating gout comprising administering to a patient in need thereof a compound as described herein and one or more additional therapeutic agents selected from nonsteroidal anti-inflammatory drugs (NSAIDS), such as aspirin, ibuprofen, naproxen, etodolac (Lodine™), and celecoxib, colchicine (Colcrys™), corticosteroids, such as prednisone, prednisolone, methylprednisolone, hydrocortisone, and the like, probenecid, allopurinol, and febuxostat (Uloric™).
[0229] In another embodiment, the present invention provides a method of treating rheumatoid arthritis by administering to a patient in need thereof a compound as described herein and nonsteroidal anti-inflammatory drugs (NSAIDS) such as aspirin, ibuprofen, naproxen, etodolac (Lodine™), and celecoxib, corticosteroids such as prednisone, prednisolone, methylprednisolone, hydrocortisone, and the like, sulfasalazine (Azulfidine™), antimalarials such as hydroxychloroquine (Plaquenil™) and chloroquine (Aralen™), methotrexate (Rheumatrex™), gold salts such as aurothioglucose (Solganal™), aurothiomalate (Myochrysine™), and auranofin (Ridaura™), D-penicillamine (Depen™ or Cuprimine™), azathioprine (Azathioprine™), or a combination of these drugs. (Imuran™), cyclophosphamide (Cytoxan™), chlorambucil (Leukeran™), cyclosporine (Sandimmune™), leflunomide (Arava™), and “anti-TNF” agents such as etanercept (Enbrel™), infliximab (Remicade™), golimumab (Simponi™), certolizumab pegol (Cimzia™), and amphetamines. and one or more additional therapeutic agents selected from darimumab (Humira™), "anti-IL-1" agents, such as anakinra (Kineret™) and rilonacept (Arcalyst™), antibodies, such as rituximab (Rituxan™), "anti-T-cell" agents, such as abatacept (Orencia™), and "anti-IL-6" agents, such as tocilizumab (Actemra™).
[0230] In some embodiments, the present invention provides a method of treating osteoarthritis comprising administering to a patient in need thereof a compound described herein and one or more additional therapeutic agents selected from acetaminophen, nonsteroidal anti-inflammatory drugs (NSAIDS) such as aspirin, ibuprofen, naproxen, etodolac (Lodine™), and celecoxib, diclofenac, cortisone, hyaluronic acid (Synvisc™ or Hyalgan™), and monoclonal antibodies, such as tanezumab.
[0231] In some embodiments, the present invention provides a method of treating lupus comprising administering to a patient in need thereof a compound described herein and one or more additional therapeutic agents selected from acetaminophen, nonsteroidal anti-inflammatory drugs (NSAIDS) such as aspirin, ibuprofen, naproxen, etodolac (Lodine™), and celecoxib, corticosteroids such as prednisone, prednisolone, methylprednisolone, hydrocortisone, and the like, antimalarials such as hydroxychloroquine (Plaquenil™) and chloroquine (Aralen™), cyclophosphamide (Cytoxan™), methotrexate (Rheumatrex™), azathioprine (Imuran™), and anticoagulants such as heparin (Calcinparine™ or Liquaemin™) and warfarin (Coumadin™).
[0232] In some embodiments, the present invention provides a method of treating Crohn's disease, ulcerative colitis or inflammatory bowel disease comprising administering to a patient in need thereof a compound described herein and one or more additional therapeutic agents selected from mesalamine (Asacol™), sulfasalazine (Azulfidine™), antidiarrheal agents such as diphenoxylate (Lomotil™) and loperamide (Imodium™), bile acid binders such as cholestyramine, alosetron (Lotronex™), lubiprostone (Amitiza™), laxatives such as milk of magnesia, polyethylene glycol (MiraLax™), Dulcolax™, Correctol™ and Senokot™, and anticholinergics or antispasmodics such as dicyclomine (Bentyl™), anti-TNF therapy, steroids, and antibiotics such as Flagyl or ciprofloxacin.
[0233] In some embodiments, the present invention provides a method of treating asthma by administering to a patient in need thereof a compound described herein and a combination of Singulair™, beta 2 agonists such as albuterol (Ventolin™ HFA, Proventil™ HFA), levalbuterol (Xopenex™), metaproterenol (Alupent™), pirbuterol acetate (Maxair™), terbutaline sulfate (Brethaire™), salmeterol xinafoate (Serevent™), and formoterol (Foradil™), anticholinergics such as ipratropium bromide (Atrovent™) and tiotropium (Spiriva™), inhaled corticosteroids such as prednisone, prednisolone, beclomethasone dipropionate (Beclovent™, Qvar™, and Vanceril™), triamcinolone acetonide, and the like. and one or more additional therapeutic agents selected from fluconazole (Azmacort™), mometasone (Asthmanex™), budesonide (Pulmocort™), flunisolide (Aerobid™), Afviar™, Symbicort™, and Dulera™, sodium cromoglycate (Intal™), methylxanthines such as theophylline (Theo-Dur™, Theolair™, Slo-bid™, Uniphyl™, Theo-24™), and aminophylline, and IgE antibodies such as omalizumab (Xolair™).
[0234] In some embodiments, the present invention provides a method of treating COPD, comprising administering to a patient in need thereof a compound described herein and a combination of a β2 agonist, such as albuterol (Ventolin™ HFA, Proventil™ HFA), levalbuterol (Xopenex™), metaproterenol (Alupent™), pirbuterol acetate (Maxair™), terbutaline sulfate (Brethaire™), salmeterol xinafoate (Serevent™) and formoterol (Foradil™), an anticholinergic, such as ipratropium bromide (Atrovent™) and tiotropium (Spiriva™), a methylxanthine, such as theophylline (Theo-Dur™, Theolair™, Slo-bid™, Uniphyl™), or a combination of a benzodiazepine (Bordeaux™), ... and one or more additional therapeutic agents selected from aminophylline, inhaled corticosteroids such as prednisone, prednisolone, beclomethasone dipropionate (Beclovent™, Qvar™, and Vanceril™), triamcinolone acetonide (Azmacort™), mometasone (Asthmanex™), budesonide (Pulmocort™), flunisolide (Aerobid™), Afviar™, Symbicort™, and Dulera™.
[0235] In some embodiments, the present invention provides a method of treating HIV, comprising administering to a patient in need thereof a compound described herein and a nucleoside reverse transcriptase inhibitor, such as zidovudine (Retrovir™), abacavir (Ziagen™), abacavir / lamivudine (Epzicom™), abacavir / lamivudine / zidovudine (Trizivir™), didanosine (Videx™), emtricitabine (Emtrivaline™), or combinations thereof. (trademark), lamivudine (Epivir™), lamivudine / zidovudine (Combivir™), stavudine (Zerit™) and zalcitabine (Hivid™), non-nucleoside reverse transcriptase inhibitors such as delavirdine (Rescriptor™), efavirenz (Sustiva™), nevirapine (Viramune™) and etravirine (Intelence™), nucleoside and one or more additional therapeutic agents selected from a leutidine reverse transcriptase inhibitor, such as tenofovir (Viread™), a protease inhibitor, such as amprenavir (Agenerase™), atazanavir (Reyataz™), darunavir (Prezista™), fosamprenavir (Lexiva™), indinavir (Crixivan™), lopinavir and ritonavir (Kaletra™), nelfinavir (Viracept™), ritonavir (Norvir™), saquinavir (Fortovase™ or Invirase™), and tipranavir (Aptivus™), an entry inhibitor, such as enfuvirtide (Fuzeon™) and maraviroc (Selzentry™), an integrase inhibitor, such as raltegravir (Isentress™), and combinations thereof.
[0236] In some embodiments, the present invention provides a method of treating organ transplant rejection or graft-versus-host disease, comprising administering to a patient in need thereof a compound described herein and one or more additional therapeutic agents selected from steroids, cyclosporine, FK506, rapamycin, hedgehog signaling inhibitors, BTK inhibitors, JAK / pan-JAK inhibitors, TYK2 inhibitors, PI3K inhibitors, and SYK inhibitors.
[0237] The compounds and compositions according to the method of the present invention may be administered using any amount and any route of administration effective for treating or reducing the severity of an inflammatory disease, disorder or condition. The exact amount required will vary from subject to subject, depending on the species, age and general condition of the subject, the severity of the disease or condition, the particular agent, its mode of administration, and the like. The compounds described herein are preferably formulated in dosage unit form for ease of administration and uniformity of dosage. The expression "dosage unit form" as used herein refers to a physically discrete unit of agent appropriate for the patient to be treated. However, it will be understood that the total daily usage of the compounds and compositions of the present invention will be determined by the attending physician within the scope of sound medical judgment. The specific effective dosage level for any particular patient or organism will depend on a variety of factors, including the disorder to be treated and the severity of the disorder; the activity of the particular compound to be used; the particular composition used; the age, weight, general health, sex, and diet of the patient; the time of administration, route of administration, and excretion rate of the particular compound used; the duration of treatment; drugs used in combination with or concomitantly with the particular compound used; and similar factors well known in the medical art. As used herein, the term "patient" means an animal, preferably a mammal, and most preferably a human.
[0238] The pharma- ceutically acceptable compositions of the invention can be administered to humans and other animals orally, rectally, parenterally, intracisternally, intravaginally, intraperitoneally, topically (such as powders, ointments or drops), bucally, as oral or nasal sprays, etc., depending on the severity of the infection being treated. In certain embodiments, the compounds of the invention can be administered orally or parenterally, one or more times daily, at a dosage level of about 0.01 mg / kg to about 50 mg / kg, preferably about 1 mg / kg to about 25 mg / kg of the subject's body weight per day, to obtain the desired therapeutic effect.
[0239] Liquid dosage forms for oral administration include, but are not limited to, pharma- ceutically acceptable emulsions, microemulsions, solutions, suspensions, syrups and elixirs.In addition to the active compound, liquid dosage forms may contain inert diluents commonly used in the art, such as water or other solvents, solubilizers and emulsifiers, such as ethyl alcohol, isopropyl alcohol, ethyl carbonate, ethyl acetate, benzyl alcohol, benzyl benzoate, propylene glycol, 1,3-butylene glycol, dimethylformamide, oils (especially cottonseed, peanut, corn, germ, olive, castor oil, and sesame oil), glycerol, tetrafurfuryl alcohol, polyethylene glycol, fatty acid esters of sorbitan, and the like, and mixtures thereof.In addition to inert diluents, the oral compositions may also contain auxiliary agents, such as wetting agents, emulsifiers and suspending agents, sweeteners, flavorings and aromatics.
[0240] Injectable preparations, for example, sterile injectable aqueous or oleaginous suspensions, can be formulated according to known techniques using suitable dispersing or wetting agents and suspending agents. Sterile, injectable preparations can also be sterile, injectable solutions, suspensions or emulsions in non-toxic parenterally acceptable diluents or solvents, for example as a solution in 1,3-butanediol. Among the acceptable vehicles and solvents that can be used are water, Ringer's solution, United States Pharmacopoeia (USP) and isotonic sodium chloride solution. In addition, sterile, fixed oils are conventionally used as a solvent or suspending medium. For this purpose, any bland, fixed oil can be used, including synthetic mono- or diglycerides. In addition, fatty acids, such as oleic acid, are used for the preparation of injectables.
[0241] The injectable formulations can be sterilized, for example, by filtration through a bacterial-retaining filter, or by incorporating sterilizing agents in the form of sterile solid compositions which can be dissolved or dispersed in sterile water, or other sterile injectable medium prior to use.
[0242] In order to prolong the effect of the compounds of the present invention, it is often desirable to slow the absorption of the compound from subcutaneous or intramuscular injection. This can be accomplished by using a liquid suspension of crystalline or amorphous material with low water solubility. Moreover, the rate of absorption of the compound depends on its rate of dissolution, which in turn may depend on crystal size and crystalline form. Alternatively, delayed absorption of a parenterally administered compound form can be accomplished by dissolving or suspending the compound in an oil vehicle. Injectable depot forms are made by forming microencapsule matrices of the compound in biodegradable polymers, such as polylactide-polyglycolide. Depending on the ratio of compound to polymer and the nature of the particular polymer used, the rate of compound release can be controlled. Examples of other biodegradable polymers include poly(orthoesters) and poly(anhydrides). Depot injectable formulations can also be prepared by entrapping the compound in liposomes or microemulsions that are compatible with body tissues.
[0243] Compositions for rectal or vaginal administration are preferably suppositories which can be prepared by mixing the compounds described herein with a suitable non-irritating excipient or carrier, such as cocoa butter, polyethylene glycol or a suppository wax, which is solid at ambient temperature but liquid at body temperature and therefore melts in the rectum or vaginal cavity to release the active substance.
[0244] Solid dosage forms for oral administration include capsules, tablets, pills, powders and granules. In such solid dosage forms, the active compound is mixed with at least one inert, pharma- ceutically acceptable excipient or carrier, such as sodium citrate or dicalcium phosphate, and / or a) fillers or extenders, such as starch, lactose, sucrose, glucose, mannitol, and silicic acid, b) binders, such as carboxymethylcellulose, alginates, gelatin, polyvinylpyrrolidinone, sucrose, and acacia, c) hygroscopic agents, such as glycerol, d) disintegrants, such as agar-agar, calcium carbonate, potato or tapioca starch, alginic acid, certain silicates, and sodium carbonate, e) solution retarding agents, such as glycerol, f) disintegrants, such as glycerol, g) ... agents such as paraffin, f) absorption enhancers such as quaternary ammonium compounds, g) wetting agents such as cetyl alcohol and glycerol monostearate, h) absorbents such as kaolin and bentonite clay, and i) lubricants such as talc, calcium stearate, magnesium stearate, solid polyethylene glycols, sodium lauryl sulfate, and mixtures thereof. In the case of capsules, tablets, and pills, the dosage forms may also contain buffering agents.
[0245] Similar types of solid compositions can also be used as fillers in soft and hard filled gelatin capsules using excipients such as lactose or milk sugar, and high molecular weight polyethylene glycols. The solid dosage forms of tablets, dragees, capsules, pills, and granules can be prepared with coatings and shells, such as enteric coatings and other coatings well known in the pharmaceutical formulation art. They can optionally contain opacifying agents, and can be of a composition that they release one or more active ingredients only, preferably in a certain part of the intestinal tract, optionally in a delayed manner. Examples of embedding compositions that can be used include polymeric substances and waxes. Similar types of solid compositions can also be used as fillers in soft and hard filled gelatin capsules using excipients such as lactose or milk sugar, and high molecular weight polyethylene glycols.
[0246] The active compound can also be in microencapsulated form with one or more excipients as described above.The solid dosage forms of tablets, dragees, capsules, pills and granules can be prepared with coatings and shells, such as enteric coatings, release control coatings and other coatings well known in the pharmaceutical formulation field.In such solid dosage forms, the active compound can be mixed with at least one inert diluent, such as sucrose, lactose or starch.
[0247] Such dosage forms may also contain additional substances other than inert diluents, as is common practice, such as tableting lubricants and other tableting aids, such as magnesium stearate and microcrystalline cellulose. In the case of capsules, tablets and pills, the dosage forms may also contain buffering agents. They may optionally contain opacifying agents, and may be of a composition that they release one or more active ingredients only, preferably in a certain part of the intestinal tract, optionally in a delayed manner. Examples of embedding compositions that can be used include polymeric substances and waxes.
[0248] Dosage forms for topical or transdermal administration of a compound of this invention include ointments, pastes, creams, lotions, gels, powders, solutions, sprays, inhalants or patches.
[0249] The active ingredient is mixed under sterile conditions with a pharma- ceutical acceptable carrier and, if necessary, with necessary preservatives or buffers. Ophthalmic formulations, ear drops, and eye drops are also considered to be within the scope of the present invention. In addition, the present invention contemplates the use of transdermal patches, which have the added advantage of providing controlled delivery of the compound to the body. Such dosage forms can be made by dissolving or dispensing the compound in a suitable medium. Absorption enhancers can also be used to increase the flux of the compound across the skin. The rate can be controlled either by providing a rate-controlling membrane or by dispersing the compound in a polymer matrix or gel.
[0250] The compounds of the present invention are also useful as combination therapeutic compounds for use in combination with other active substances, particularly in the treatment of obstructive or inflammatory airway diseases, such as anti-inflammatory, bronchodilatory or antihistamine active substances, such as those described herein above, for example as enhancers of the therapeutic activity of such drugs or as a means of reducing the required dosage or potential side effects of such drugs.The compounds of the present invention may be mixed with the other active substances in a fixed pharmaceutical composition, or may be administered separately before, simultaneously with or after the other active substances.Thus, the present invention encompasses the combination of the compounds of the present invention and anti-inflammatory, bronchodilatory, antihistamine or antitussive active substances described herein above, where the compounds of the present invention and the active substances are in the same or different pharmaceutical compositions.
[0251] Suitable anti-inflammatory drugs include steroids, in particular glucocorticosteroids, such as budesonide, beclomethasone dipropionate, fluticasone propionate, ciclesonide furoate or mometasone furoate; non-steroidal glucocorticoid receptor agonists; LTB4 antagonists, such as LY293111, CGS025019C, CP-195543, SC-53228, BIIL 284, ONO 4057, SB 209247; LTD4 antagonists, such as montelukast and zafirlukast; PDE4 inhibitors, such as cilomilast (Ariflo™ GlaxoSmithKline), roflumilast (Byk Gulden), V-11294A (Napp), BAY19-8004 (Bayer), SCH-5 351591 (Schering-Plough), Arofylline (Almirall Prodesfarma), PD189659 / PD168787 (ParkeDavis), AWD-12-281 (Asta Medica), CDC-801 (Celgene), SeICID™ CC-10004 (Celgene), VM554 / UM565 (Vernalis), T-440 (Tanabe), KW-4490 (Kyowa Hakko Kogyo); A2a agonists; A2b antagonists; and beta-2 adrenergic receptor agonists such as albuterol (salbutamol), metaproterenol, terbutaline, salmeterol, fenoterol, procaterol, especially formoterol, and pharma- ceutically acceptable salts thereof. Suitable bronchodilators include anticholinergic or antimuscarinic compounds, particularly ipratropium bromide, oxitropium bromide, tiotropium salts and CHF 422 (Chiesi), and glycopyrrolate.
[0252] Suitable antihistamine substances include cetirizine hydrochloride, acetaminophen, clemastine fumarate, promethazine, loratidine, desloratidine, diphenhydramine and fexofenadine hydrochloride, activastine, astemizole, azelastine, ebastine, epinastine, mizolastine and terfenadine.
[0253] Other useful combinations of the compounds of the invention with anti-inflammatory agents include antagonists of chemokine receptors, such as CCR-1, CCR-2, CCR-3, CCR-4, CCR-5, CCR-6, CCR-7, CCR-8, CCR-9 and CCR10, CXCR1, CXCR2, CXCR3, CXCR4, CXCR5, particularly CCR-5 antagonists, such as Schering-Plough antagonists. and combinations with SC-351125, SCH-55700 and SCH-D, and Takeda antagonists such as N-[[4-[[[6,7-dihydro-2-(4-methylphenyl)-5H-benzo-cyclohepten-8-yl]carbonyl]amino]phenyl]-methyl]tetrahydro-N,N-dimethyl-2H-pyran-4-ammonium chloride (TAK-770).
[0254] The structures of the active compounds identified by code numbers, generic names or trade names can be taken from the actual edition of the standard compendium "The Merck Index" or from databases such as Patents International (eg IMS World Publications).
[0255] The compounds of the present invention may be administered alone or in combination with one or more other therapeutic compounds, where possible combination therapy takes the form of a fixed combination, or the administration of the compounds of the present invention and one or more other therapeutic compounds is staggered or given independently of each other, or a fixed combination given in combination with one or more other therapeutic compounds.
[0256] These additional agents may be administered separately from the compound-containing composition of the present invention as part of a multiple dose regimen. Alternatively, the agents may be part of a single dosage form and mixed together with the compound of the present invention in a single composition. When administered as part of a multiple dose regimen, the two active agents may be given simultaneously, sequentially, or within a period of each other, usually within 5 hours of each other.
[0257] As used herein, the terms "combination," "combined," and related terms refer to simultaneous or sequential administration of therapeutic agents according to the invention. For example, the combinations of the invention may be administered simultaneously or sequentially with another therapeutic agent in separate unit dosage forms, or together in a single unit dosage form. Thus, the invention provides a single unit dosage form comprising a compound of the invention, an additional therapeutic agent, and a pharma- ceutically acceptable carrier, adjuvant, or vehicle.
[0258] The amounts of both the compounds described herein and additional therapeutic agents (in those compositions containing additional therapeutic agents as described above) that may be combined with the carrier materials to produce a single dosage form will vary depending upon the host treated and the particular mode of administration. Preferably, the compositions of the present invention should be formulated so that a dosage of 0.01 to 100 mg / kg body weight / day of the compound of the present invention can be administered.
[0259] In those compositions that include an additional therapeutic agent, the additional therapeutic agent and the compound of the present invention may act synergistically. Therefore, the amount of the additional therapeutic agent in such compositions will be less than that required in a monotherapy utilizing only that therapeutic agent. In such compositions, a dosage of the additional therapeutic agent of 0.01 to 1,000 μg / kg body weight / day may be administered.
[0260] The amount of additional therapeutic agent present in the compositions of the invention will not exceed the amount that would normally be administered in a composition comprising that therapeutic agent as the only active agent. Preferably, the amount of additional therapeutic agent in the presently disclosed compositions will range from about 50% to about 100% of the amount that would normally be present in a composition comprising that agent as the only therapeutically active agent.
[0261] The compounds of the present invention, or pharmaceutical compositions thereof, can also be incorporated into compositions for coating implantable medical devices, prostheses, artificial valves, vascular grafts, stents and catheters. Vascular stents, for example, have been used to overcome restenosis (re-narrowing of the vessel wall after injury). However, patients using stents or other implantable devices are at risk of blood clot formation or platelet activation. These undesirable effects can be prevented or reduced by pre-coating the device with a pharma- ceutical acceptable composition that includes a kinase inhibitor. An implantable device coated with the compounds of the present invention is another embodiment of the present invention.
[0262] In addition to the above-mentioned methods of prevention and / or treatment, the present invention also provides corresponding uses for preventing and / or treating the diseases, disorders, or conditions described herein. In some embodiments, the present invention provides methods of use of the compounds described herein, or pharma- ceutically acceptable salts thereof, for preventing and / or treating the inflammatory diseases, disorders, or conditions described herein. In some embodiments, the methods of use provided by the present invention for preventing and / or treating inflammatory diseases, disorders, or conditions are intended for patients in whom the presence and / or expression levels of miR-124 are measured and / or monitored by the methods described herein.
[0263] The present specification further provides a compound of formula (I), formula (Ia), formula (Ib), formula (Ib'), formula (Ic), formula (Id), formula (IV), formula (IVa), formula (IVb), formula (IVb'), formula (IVc) or formula (IVd), or a pharma- ceutically acceptable salt thereof, as herein defined, for treating or preventing an inflammatory disease, disorder or condition in a patient in need thereof. wherein the inflammatory disease, disorder or condition is selected from: (a) an inflammatory disease, disorder or condition of the pancreas selected from type 1 diabetes, type 2 diabetes, acute pancreatitis and chronic pancreatitis; (b) an inflammatory disease, disorder or condition of the kidney selected from glomerulosclerosis, glomerulonephritis, nephritis, acute kidney injury, Berger's disease, Goodpasture's syndrome, Wegener's granulomatosis, and acute or chronic rejection of a kidney transplant; (c) an inflammatory disease, disorder or condition of the liver selected from nonalcoholic steatohepatitis (NASH), nonalcoholic fatty liver disease (NAFLD), cholestatic liver disease, sclerosing cholangitis, and acute or chronic rejection of a liver transplant; (d) an inflammatory disease, disorder or condition of the lung or heart selected from chronic obstructive pulmonary disease (COPD), asthma, pulmonary fibrosis, pulmonary hypertension, sarcoidosis, myocarditis, pericarditis, and acute or chronic rejection of a lung or heart transplant; (e) an inflammatory disease, disorder or condition of the skin selected from contact dermatitis, atopic dermatitis, psoriasis, alopecia areata, erythema multiforme, dermatitis herpetiformis, scleroderma, vitiligo, hypersensitivity vasculitis, urticaria, bullous pemphigoid, pemphigus vulgaris, pemphigus foliaceus, paraneoplastic pemphigus, epidermolysis bullosa acquisita, acne, keloid scars, and other inflammatory or allergic conditions of the skin; (f) an inflammatory disease, disorder or condition in the blood vessels / blood selected from Behcet's disease, vasculitis, sepsis, tumor angiogenesis, atherosclerosis, proliferative vascular disease, and restenosis; (g) an ocular inflammatory disease, disorder or condition selected from conjunctivitis, scleritis, episcleritis, panuveitis, choroiditis, chorioretinitis, neuroretinitis, uveitis, orbital inflammatory disease, and optic neuritis; (h) an inflammatory disease, disorder or condition of the central or peripheral nervous system selected from non-viral and viral encephalitis and meningitis, depression, neuropathic pain including chronic pain, traumatic brain injury including stroke, Alzheimer's disease, Parkinson's disease, myelitis, Charcot-Marie-Tooth type 1 disease (including CMT1A and CMT1B), multiple sclerosis, amyotrophic lateral sclerosis (ALS), Creutzfeldt-Jakob disease, demyelinating polyneuropathy, and peripheral neuropathy; (i) an autoimmune disease, disorder or condition selected from lupus, including lupus of the skin and kidney, Guillain-Barre syndrome, myasthenia gravis, Hashimoto's thyroiditis, idiopathic purpura, aplastic anemia, Graves' disease, and myocarditis; (j) an inflammatory disease, disorder or condition in the intestine selected from intestinal failure, ulcerative colitis, and Crohn's disease; (k) an inflammatory disease, disorder or condition in the reproductive system selected from endometriosis, uterine fibroids, prostatic dysplasia or growths, and cervical dysplasia; and (l) An inflammatory disease, disorder or condition of the bones and / or joints selected from juvenile idiopathic arthritis, psoriatic arthritis, periodontitis, and arthritis and / or demineralization of the hands, feet, ankles, knees, hips, shoulders, elbows or spine.
[0264] Further provided herein is a compound of formula (I), formula (Ia), formula (Ib), formula (Ib'), formula (Ic), formula (Id), formula (IV), formula (IVa), formula (IVb), formula (IVb'), formula (IVc) or formula (IVd) or a pharma- ceutically acceptable salt thereof as defined above for use as an anti-inflammatory agent intended for a patient, where the presence and / or expression levels of miR-124 are monitored in blood and / or tissue samples from the patient prior to and / or during the course of use of the anti-inflammatory agent.
[0265] Animal preclinical models can be used to assess the anti-inflammatory activity of 8-chloro-N-(4-(trifluoromethoxy)phenyl)quinolin-2-amine and any of its metabolites or one of its pharma- ceutical acceptable salts.
[0266] Example 1
[0267] For example, in a mouse IMQ-induced psoriasis model, psoriasis can be induced by daily administration of IMQ, for example for 0-9 days, and treatment can be administered daily, for example from day 0 to day 9. Anti-inflammatory activity can be assessed, for example, by measuring the psoriasis score.
[0268] For example, in an MPTP-induced mouse model of Parkinson's disease, mice may receive four intraperitoneal (IP) injections of 20 mg / ml MPTP at 2 hour intervals, for example on day 0. Treatments may be administered daily, for example from day 0 to day 7. Anti-inflammatory activity may be assessed by TH immunoreactivity analysis, for example at the level of the substantia nigra pars compacta (SNpc).
[0269] For example, in the MOG-induced mouse model of Experimental Autoimmune Encephalomyelitis (EAE), EAE can be induced, for example, by injecting an MOG / CFA inoculum into the paralumbar region on study day 0, where all animals can receive supplemental immune stimulation, for example, with Pertussis Toxin (PT) via intraperitoneal injection on study days 0 and 2 to increase blood-brain barrier (BBB) permeability. Treatment can be administered daily, for example, from day 0, 3 or 10, and anti-inflammatory activity can be measured by clinical scores or / and by histological evaluation of the spinal cord via H&E staining to assess cellular infiltration and demyelination, and / or by central nervous system / pain parameter evaluation. For example, in the NOD spontaneous model of diabetes in mice, treatment can be administered daily, and anti-inflammatory activity can be assessed, for example, by blood glucose levels and / or oral glucose tolerance test.
[0270] In the examples below, compound A is 8-chloro-N-(4-(trifluoromethoxy)phenyl)quinolin-2-amine, or ABX464, and compound B is its metabolite of the formula: [ka]
[0271] Example 2: In vivo efficacy study of compounds in the STAM model of non-alcoholic steatohepatitis (NASH study)
[0272] A. Materials and Methods
[0273] 1. Test Substances To prepare the dosing solutions, Compounds A and B were weighed and suspended in vehicles consisting of 20% Vehicle-A1 and 80% Vehicle-A2. Vehicle-A1 consisted of 0.5% (w / v) carboxymethylcellulose (CMC), 400-800 centipoise in water for injection + 2.5% (w / v) Tween 80. Vehicle-A2 consisted of 0.5% (w / v) carboxymethylcellulose (CMC), 400-800 centipoise in water for injection. Telmisartan (Micardis™) was purchased from Boehringer Ingelheim GmbH (Germany) and dissolved in purified water.
[0274] 2. Introduction of NASH NASH was induced in 48 male mice by a single subcutaneous injection of 200 μg of streptozotocin (STZ, Sigma-Aldrich, USA) solution on the second day of life, and then fed a high-fat diet (HFD, 57 kcal% fat, Cat# HFD32, CLEA Japan, Inc., Japan) after 4 weeks of age.
[0275] 3. Drug Administration Route Compounds A and B, and telmisartan were administered orally in a volume of 10 mL / kg.
[0276] 4. Treatment Dose Compound A was administered at three dose levels, 10, 20 and 40 mg / kg, once daily from 6 to 9 weeks of age. Compound B was administered at a dose of 40 mg / kg, once daily from 6 to 9 weeks of age. Telmisartan was administered at a dose of 10 mg / kg, once daily from 6 to 9 weeks of age.
[0277] 5.Animals C57BL / 6 mice (female, 14 days pregnant) were obtained from Japan SLC, Inc. (Japan). All animals used in the study were bred and cared for in accordance with the Animal Use Guidelines of the Japanese Pharmacological Society.
[0278] The animals were maintained in an SPF facility under controlled conditions of temperature (23 ± 3°C), humidity (50 ± 20%), lighting (12-h artificial light-dark cycle; lights on from 8:00 to 20:00) and air exchange. Hyperbaric pressure was maintained in the laboratory to prevent contamination of the facility.
[0279] The animals were housed in TPX cages (CLEA Japan) with a maximum of four mice per cage. Sterile Palmas-μ (Material Research Center, Japan) was used for bedding and was changed once a week.
[0280] Sterile solid HFD was provided ad libitum and placed on a metal lid on top of the cage. Pure water was provided ad libitum from a water bottle equipped with a rubber stopper and a sipper tube. The water bottle was changed once a week, cleaned and sterilized in an autoclave, and reused.
[0281] Mice were identified by ear punch, and each cage was labeled with a specific identification code.
[0282] 6. Plasma Biochemistry Measurements For plasma biochemistry, nonfasting blood was collected into polypropylene tubes containing anticoagulant (Novo-Heparin, Mochida Pharmaceutical Co., Ltd., Japan) and centrifuged at 1,000 × g for 15 min at 4°C. Supernatants were collected and stored at −80°C until use. Plasma ALT was measured by a FUJI DRI-CHEM 7000 (FUJIFILM Corporation, Japan) FUJIDRI-CHEM 7000 (FUJIFILM Corporation, Japan).
[0283] 7. Measurement of Liver Triglyceride Content Total lipid extracts of liver were obtained by the method of Folch (Folch J. et al., J. Biol. Chem. 1957;226:497). Liver samples were homogenized in chloroform-methanol (2:1, v / v) and incubated overnight at room temperature. After washing with chloroform-methanol-water (8:4:3, v / v / v), the extracts were evaporated to dryness and dissolved in isopropanol. Liver triglyceride content was measured by Triglyceride E-Test (Fujifilm Wako Pure Chemicals, Japan).
[0284] 8.Histological analysis For HE staining, sections were cut from paraffin blocks of liver tissue prefixed with Bouin's solution and stained with Lillie-Mayer's Hematoxylin (Muto Chemical Co., Ltd., Japan) and eosin solution (Fujifilm Wako Pure Chemical Co., Ltd.). NAFLD activity score (NAS) was calculated according to the criteria of Kleiner (Kleiner DE. Et al., Hepatology, 2005;41:1313). To visualize collagen deposition, Bouin's fixed liver sections were stained using picro-Sirius red solution (Waldeck, Germany). For quantitative analysis of the fibrotic area, bright-field images of sections stained with Sirius red were captured around the central vein at 200x magnification using a digital camera (DFC295; Leica, Germany), and the positive areas of five fields / section were measured using ImageJ software (National Institute of Health, USA).
[0285] 9. Sample Collection For plasma samples, nonfasting blood was collected into polypropylene tubes containing anticoagulant (Novo-Heparin) and centrifuged at 1,000 × g for 15 min at 4° C. 20 μL of supernatant was collected and stored at −80° C for biochemistry. The remaining plasma was collected and stored at −80° C for shipping.
[0286] For frozen liver samples, the left lateral lobe was collected and cut into six sections. Two parts of the left lateral lobe, the left and right medial lobes and the caudate lobe, were snap frozen in liquid nitrogen and stored at -80°C for shipment. The other two parts of the left lateral lobe were fixed in Bouin's solution and then embedded in paraffin. Paraffin blocks were stored at room temperature for histology. The remaining part of the left lateral lobe was embedded in OCT compound and snap frozen in liquid nitrogen. Samples were stored at -80°C. The right lobe was snap frozen in liquid nitrogen and stored at -80°C for liver biochemistry.
[0287] 10. Statistical Testing Statistical analysis was performed using the Bonferroni Multiple Comparison Test in GraphPad Prism 6 (GraphPad Software Inc., USA). P values of less than 0.05 (<0.05) were considered statistically significant. Trends or tendencies were indicated when a one-tailed t-test returned a P value <0.1. Results were expressed as mean ± SD.
[0288] B. Experimental Design and Procedures
[0289] 1. Study group Group 1: Vehicle Eight NASH mice aged 6–9 weeks were orally administered vehicles [20% vehicle-A1 and 80% vehicle-A2] at a volume of 10 mL / kg once daily.
[0290] Group 2: Compound A (low) Eight NASH mice aged 6-9 weeks were orally administered vehicle supplemented with Compound A at 10 mg / kg once daily.
[0291] Group 3: Compound A (middle) Eight NASH mice aged 6-9 weeks were orally administered vehicle supplemented with Compound A at 20 mg / kg once daily.
[0292] Group 4: Compound A (high) Eight NASH mice aged 6-9 weeks were orally administered vehicle supplemented with Compound A at a dose of 40 mg / kg once daily.
[0293] Group 5: Compound B Eight NASH mice aged 6-9 weeks were orally administered vehicle supplemented with Compound B at a dose of 40 mg / kg once daily.
[0294] Group 6: Telmisartan Eight NASH mice aged 6–9 weeks were orally administered pure water supplemented with telmisartan at a dose of 10 mg / kg once daily.
[0295] Table 4 below summarizes the treatment schedule.
[0296] [Table 4]
[0297] 2. Animal Monitoring and Sacrifice Survival, clinical signs and behavior were monitored daily. Body weight was recorded before treatment. Mice were observed for approximately 60 minutes after each dose for significant clinical signs of toxicity, moribundity and death. The animals were sacrificed at 9 weeks of age by exsanguination via direct cardiac puncture under isoflurane anesthesia (Pfizer Inc.).
[0298] C. Results
[0299] 1. Weight change and general condition The mean body weight of the telmisartan group was significantly lower than that of the vehicle group from days 9 to 21. There were no significant changes in mean body weight between the vehicle group and other treatment groups on any day during the treatment period.
[0300] No animals died in any group during the treatment period. No animals showed any deterioration in their general condition in this study.
[0301] 2. Body weight and liver weight on the day of sacrifice
[0302] 2.1. Body weight on the day of sacrifice (Table 5) The telmisartan group showed a significant decrease in mean body weight on the day of sacrifice compared to the vehicle group. There were no significant differences in mean body weight on the day of sacrifice between the vehicle group and the other treatment groups.
[0303] 2.2. Liver weight and liver-to-body weight ratio (Table 5) The telmisartan group showed a significant decrease in average liver weight compared to the vehicle group. The compound A (low) group showed a significant increase in average liver weight compared to the vehicle group. The average liver weights in the compound A (high) group and the compound B group tended to increase compared to the vehicle group. There was no significant difference in average liver weight between the vehicle group and the compound A (middle) group.
[0304] The mean liver-to-body weight ratio in the telmisartan group tended to decrease compared to the vehicle group. The mean liver-to-body weight ratio in the compound A (low), compound A (middle), compound A (high) and compound B groups tended to increase compared to the vehicle group.
[0305] [Table 5]
[0306] 3. Biochemistry
[0307] 3.1. Plasma ALT (Figure 3.1 and Table 6) Compound A (high) group showed a significant increase in plasma ALT level compared with vehicle group.Compared with vehicle group, the plasma ALT level in Compound A (low) group, Compound A (middle) group and Compound B group tended to increase.There was no significant difference in plasma ALT level between vehicle group and telmisartan group.
[0308] 3.2. Liver triglycerides (Figure 3.2 and Table 2) The liver triglyceride content in the telmisartan group tends to decrease compared to the vehicle group.The liver triglyceride content in the compound B group tends to increase compared to the vehicle group.There was no significant difference in liver triglyceride between the vehicle group and other treatment groups.
[0309] [Table 6]
[0310] 4.Histological analysis
[0311] 4.1. HE staining and NAFLD activity score (Table 7 and Figures 1, 2, 3 and 4) Representative photomicrographs of HE stained liver sections were analyzed: Figure 1 represents the NAFLD activity score, Figure 2 represents the steatosis score, Figure 3 represents the inflammation score, and Figure 4 represents the ballooning score.
[0312] The liver sections of the vehicle group showed microvesicular and macrovesicular fat deposits, hepatocyte ballooning, and inflammatory cell infiltration.The telmisartan group showed a significant decrease in NAS compared with the vehicle group.The NAS in the compound A (low) group, compound A (middle) group and compound A (high) group tended to decrease compared with the vehicle group.
[0313] [Table 7]
[0314] 4.2. Sirius Red Staining and Fibrosis Area (Table 8 and Figure 5) Representative photomicrographs of Sirius Red stained liver sections were analyzed. Figure 5 depicts the fibrotic areas.
[0315] Liver sections from the vehicle group showed increased collagen deposition in the pericentral regions of the hepatic lobule. The fibrotic area (Sirius red positive area) in the Compound A (middle) group tended to decrease compared to the vehicle group. The fibrotic area in the Compound B group tended to increase compared to the vehicle group.
[0316] There were no significant differences in the areas of fibrosis between the vehicle group and other treatment groups.
[0317] [Table 8]
[0318] 4.3. Alpha-SMA immunostaining and α-SMA positive areas Alpha-SMA immunostaining of liver sections from the vehicle group showed accumulation of α-SMA positive cells mainly in zone 3. The alpha-SMA positive areas in the Compound A (high) group and the telmisartan group tended to decrease compared to the vehicle group (Table 9 below).
[0319] 4.4.F4 / 80 immunostaining F4 / 80 immunostaining of liver sections from the vehicle group showed predominantly an accumulation of F4 / 80 positive cells
[0320] The Compound A (high) group showed a significant decrease in the F4 / 80-positive area compared to the vehicle group. The F4 / 80-positive area in the Compound A (medium) group and Compound B group tended to decrease compared to the vehicle group (Table 9).
[0321] [Table 9]
[0322] conclusion
[0323] Telmisartan Treatment with telmisartan showed a significant decrease in NAS compared with the vehicle group, indicating that the drug worked successfully as a positive control in this study. Treatment with telmisartan showed a tendency to decrease in liver triglyceride content compared with the vehicle group.
[0324] Compound A Treatment with Compound A at low doses showed a trend towards a decrease in NAS compared to the vehicle group. Treatment with Compound A at low doses showed a trend towards an increase in plasma ALT levels compared to the vehicle group.
[0325] Treatment with Compound A at medium doses showed a trend towards a decrease in NAS and fibrosis area compared to the vehicle group. Treatment with Compound A at medium doses showed a trend towards an increase in plasma ALT levels compared to the vehicle group. Treatment with Compound A at high doses showed a significant increase in plasma ALT levels compared to the vehicle group. Treatment with Compound A at high doses showed a trend towards a decrease in NAS compared to the vehicle group.
[0326] Compound B Treatment with Compound B showed a trend towards a decrease in NAS compared to the vehicle group. Treatment with Compound B showed a trend towards an increase in plasma ALT levels, liver triglyceride content and fibrosis area compared to the vehicle group.
[0327] In this study, Compound A and Compound B showed a trend towards a decrease in NAS compared to the vehicle group. In addition, Compound A showed a trend towards a decrease in pathological deposition of collagen in the liver as shown by Sirius red staining. In summary, Compound A showed potential anti-NAS and anti-fibrosis effects, and Compound B showed potential anti-NAS effects in this NASH model.
[0328] Example 3: In vivo efficacy study of compounds in the rat Sugen hypoxic model of pulmonary arterial hypertension (PAH)
[0329] Experimental procedure
[0330] research design
[0331] Induction of PAH Animals are randomized between treatment groups based on their body weight and the results of transthoracic echocardiography by the investigator (on day 21). Animals within the same treatment group are housed in pairs.
[0332] Animals from groups 2-5 (see Table 10) receive a single subcutaneous injection of sugen (20 mg / kg in 2 mL / kg volume) solution (10 mg / mL) on day 0 and are returned to their cages. Animals from group 1 receive a single subcutaneous injection of DMSO at 2 mL / kg (vehicle for sugen) on day 0 and are returned to their individual cages.
[0333] Groups 2-5 were placed in cages with controlled atmosphere adjusted to receive an FiO2 equivalent to 0.10 (10%) using a mixture of nitrogen and ambient air controlled by a ventilated cage system. They were kept in these hypoxic conditions for 21 days. While in hypoxic conditions, the cages were cleaned and changed once a week, exposing the animals to ambient oxygen levels below 10°C. They were exposed to ambient oxygen levels from day 22 to day 56. Group 1 animals were placed in cages exposed to ambient oxygen (normoxia) levels for 56 days. The animals were observed daily for changes in behavior and general health.
[0334] treatment Treatment with Compound A, sildenafil or vehicle is administered on day 22 (Groups 2-5) as scheduled and described in Table 10 below. Groups 2-4 are dosed once daily. Reference Group 5 is dosed with sildenafil twice daily. Food and water are provided ad libitum. Daily observations of animal behavior and general health are made. Weights are measured weekly.
[0335] Echocardiogram Echocardiographic monitoring of disease progression is performed on all animals on days 0, 21, and the day of surgery (day 56).
[0336] Blood collection Venous blood (0.5 ml, EDTA anticoagulated) was collected from all animals (including normoxic controls) on day 0, immediately following the first dose on days 22 and 56. EDTA anticoagulated whole blood was centrifuged to generate plasma, which was decanted into clean tubes labeled with at least the animal number, group ID, and time point, and stored frozen at -80°C until transfer to the sponsor.
[0337] [Table 10] *To have groups of n=10, 12 animals are initiated to compensate for mortality, which is approximately 10-20% in this model.
[0338] Surgical Instrumentation and Measurement of Hemodynamic and Functional Parameters in Efficacy Study Animals 1. On the selected day of surgery, rats are anesthetized with a mixture of 2-2.5% isoflurane USP (Abbot Laboratories, Montreal, Canada) in oxygen and placed on a heating pad to maintain body temperature. 2. Rats are tracheotomized and immediately ventilated with a positive pressure rodent respirator set at approximately 10 ml / kg body weight with a frequency of 65-70 strokes / min. 3. Lead II ECG contact electrodes are placed on the rat for continuous ECG monitoring during the surgical procedure. 4. A cannula connected to a pressure transducer is inserted into the left femoral artery to measure arterial blood pressure. 5. A cannula connected to a pressure transducer is inserted through the right jugular vein into the right atrium to measure right atrial pressure. 6. The heart is exposed through a sternotomy and a 20GA 1.16 in Insyte is introduced into the right ventricle and quickly connected to a saline-filled PE-50 catheter connected to a transducer. 7. Following a few seconds of right ventricular pressure recording, the InSight is advanced further into the pulmonary artery to allow for an additional 60 seconds of PAP recording. 8. Hemodynamic parameters are recorded continuously for the duration of the procedure or until the PAP signal is lost. 9. Following hemodynamic monitoring, the thoracic cavity is further opened to expose the lungs. The muscles above the trachea are dissected to remove the lungs and heart. The harvested tissues are rinsed with PBS to remove excess blood and weighed. 10. For lung histology and casting, the process is as follows: 1) Eight rats per group are set aside to evaluate left lung histology and therefore are treated as described in item 12 of this section 8.2. 2) Two rats per group serve to allow quantitative characterization of the three-dimensional vascular structure of the left lung and therefore are treated as described in section 8.3 below for casting of the left lung. 11. For histology, the left lobe is inflated using a 10 mL syringe filled with fixative (10% NBF) attached to a blunt-tip needle (23 g) for blunt-tip needle histology. The needle tip is inserted into the trachea and held in place with a knotted suture while another syringe is tied to the pulmonary artery. The lungs are gently inflated with physiological pressure (20-25 mmHg) (fixative is not allowed to ooze from the lung surface) until all lobes are fully, uniformly, and consistently expanded. This provides optimal vascular and airway expansion without causing excessive tissue destruction. The needle is then removed and sutured around the trachea and immersed in 10% NBF with a tissue to fixative ratio of 1:20. The tissues are kept in formalin for 24-48 hours. They are then cut into three sections (upper, middle, and lower). Sections were sent to the Institute for Research in Immunology and Cancer (IRIC) in Montreal, Quebec, Canada, embedded, sliced, and stained with hematoxylin and eosin (H&E) or von Willebrand Factor (VWF) for endothelial cell staining. 12. As part of the Fulton index, the heart is dissected and the right ventricle is separated from the left ventricle by the septum and then weighed separately.
[0339] Pulmonary Artery Casting Procedure 1. Following the recording of hemodynamic parameters, 2 of the 10 rats undergo the process of harvesting the lungs and the heart and of pulmonary artery casting of the left lung. 2. A polyethylene (PE190) tube cut to a length of 40 cm, connected at one end to an 18-G needle and heat-blunted at the other end, is used as a catheter to the right ventricle (RV). The catheter is advanced to the level of the main pulmonary artery (MPA), where it is fixed. For right lung casting, the catheter is advanced into the pulmonary artery (PA) of the right lung, where it is fixed in place to avoid perfusion of the left lung. 3. Blood is flushed out of the PA by pumping 2 ml of diluted sodium heparin (5 units / ml) (APP Pharmaceuticals, Inc., Schaumburg, IL, USA) using a continuous syringe pump set at 2 ml / min. A small incision is made in the left atrial appendage of the left ventricle to allow the solution to flow out of the pulmonary arterial circulation. 4. The lungs are held in an upright position to ensure uniform filling, especially in the lower lung segments. 5. A silicone polymer casting compound, MV-yellow Microfil, with a viscosity of 25 centipoise (cP; 0.01 grams per centimeter second), was mixed with a medium-viscosity (MV) diluent in a volume ratio of 5:4 (diluent:compound) and added to 5% (volume ratio) curing agent. This freshly mixed silicone polymer casting material was then pumped through the catheter at 2 ml / min until the polymer reached the RV. Once the polymer had entered the pulmonary circulation, the flow rate was reduced to 0.05 ml / min. 6. When the polymer appears uniform on the surface of the lung, the pump is stopped. The PA lavaging the left lung is ligated before being excised from the cardiopulmonary block. 7. The left lung with the PA ligated is then transferred to a small container and stored at 4°C for 24 hours to allow complete polymerization of the silicone polymer. For right lung casting, the right PA is ligated. 8. Once polymerized, 10% formalin is added to the container to immerse the left lung (or right lung lobe) in formalin and store at 4°C for an additional 48 hours. 9. The left lung (or right lung lobe) is then sent to the Faculty of Engineering at the University of Sherbrooke (Quebec, Canada) for micro-CT imaging using a Skyscan from Bruker (Manning Park, MA, USA). The images are then sent to Fluidda Inc. for analysis.
[0340] result:
[0341] [Table 11]
[0342] [Table 12]
[0343] In conclusion, treatment of rats with Compound A in the Sugen hypoxia model shows a trend towards reducing mean pulmonary artery pressure at 70 mg / kg.
[0344] Example 4: In vivo efficacy study of compounds in the rat monocrotaline model of pulmonary arterial hypertension
[0345] Experimental System
[0346] Acquisition System A networked personal computer running Microsoft Windows XP Professional 2007 was used for data acquisition. The acquisition software was AxoScope 10.2 using the AxonInstrument interface Digidata. AxoScope 10.2 has been fully validated in the connected context in which it is used.
[0347] Analysis System The analysis software was Clampfit 10.2.0.14 from Axon Instruments, installed on a networked personal computer running Microsoft Windows XP Professional 2016. Clampfit 10.2.0.14 from Axon Instruments has been fully validated in the connected context in which it is used. The analysis software for the graphs was Microsoft Office Excel 2016, installed on a networked personal computer running Microsoft Windows 10 Family.
[0348] Editing experimental data 1. The experimental trace to be analyzed is opened in clamp fit. 2. Right atrial pressure is recorded for 1 minute. 3. PAP, recorded continuously for at least 1 min or until the signal is lost, is used to extract mean, diastolic and systolic pulmonary artery pressures. 4. Continuously recorded systemic arterial pressure (SAP) is used to extract mean, diastolic and systolic arterial pressure. 5. Hemodynamic parameters At the end of the recording, the right and left ventricles including the septum and lung lobes are excised and wet weights are measured. 6. Each parameter is summarized by group and presented in a bar graph with appropriate statistical analysis.
[0349] [Table 13]
[0350] Testing Procedure:
[0351] Preparation of monocrotaline solution The appropriate amount of monocrotaline is weighed out and the correct amount of 1 / 3 of 1.0 N HCl is added and mixed to ensure solubilization of the monocrotaline. The solution is then neutralized with the correct volume of 1 / 3 of 1.0 N NaOH. The pH of the solution is checked with pH indicator paper / strips or an electronic pH meter and adjusted to neutral if necessary; the final volume is made up with water for injection to obtain a 20 mg / mL solution. The monocrotaline solution is injected subcutaneously into each rat at 3 mL / kg body weight (the dose is 60 mg / kg) over the shoulder into the loose skin above the neck.
[0352] Preparation of Compound A solution Compound A was administered as a suspension in vehicle. To achieve the required concentration, Compound A was ground to a fine powder using a mortar and pestle and then mixed with 20% (final volume) of Vehicle A1 until a suspension was achieved. Then, 80% of Vehicle A2 was added to the suspension under magnetic stirring.
[0353] Vehicle A1: 0.5% (w / v) carboxymethylcellulose (CMC), 400-800 centipoise in water for injection + 2.5% (w / v) Tween 80
[0354] Vehicle A2: 0.5% (w / v) carboxymethylcellulose (CMC), 400-800 centipoise in water for injection
[0355] Vehicle for administration: 20% vehicle A1 with 80% vehicle A2
[0356] Control and Compound A dosing formulations were stirred for at least 15 minutes prior to dosing and maintained under continuous magnetic stirring throughout the dosing procedure.
[0357] [Table 14]
[0358] Preparation of Sildenafil The appropriate amount of sildenafil is weighed out and the appropriate amount of distilled water is added to obtain a suspension at 5 mg / mL. The suspension is mixed with a stir bar for 30-60 minutes until a uniform suspension is obtained. Care is taken to maintain a uniform suspension (continuous stirring) while the dose is drawn into the gavage syringe. One gavage syringe is filled at a time and administered before filling the next syringe. The solution is stored refrigerated at 2-8°C and protected from light. The expiration date is 7 days after preparation.
[0359] [Table 15]
[0360] Experimental procedure
[0361] research design
[0362] Induction of PAH Animals are randomized between treatment groups based on their body weight and the results of transthoracic echocardiography (on day 7) by the investigator. Animals within the same treatment group are housed in pairs.
[0363] Animals from groups 2-5 (see Table 13) receive a single subcutaneous injection of monocrotaline (60 mg / kg) solution on day 0 and are returned to their cages. Animals in group 1 receive a single subcutaneous injection of MCT on day 0 and are returned to their individual cages.
[0364] treatment Treatment with Compound A, sildenafil or vehicle is administered on day 7 (Groups 2-5) as scheduled and described in Table 13 below. Groups 2-4 are dosed once daily. Reference Group 5 is dosed with sildenafil twice daily. Food and water are provided ad libitum. Daily observations of animal behavior and general health are made. Weights are measured weekly.
[0365] Echocardiogram Echocardiographic monitoring of disease progression is performed on all animals on days 0, 7, and the day of surgery (day 28).
[0366] Blood collection Venous blood (0.5 ml, EDTA anticoagulated) was collected from all animals (including normoxic controls) on day 0, immediately after the first dose on day 7. On the day of the final surgery, i.e. day 28, after hemodynamic measurements, cardiac puncture was performed in rats to collect 3 ml of blood. EDTA anticoagulated whole blood was centrifuged to generate plasma, which was decanted into clean tubes labeled with at least the animal number, group ID and time point, and stored frozen at -80°C until transfer to the sponsor.
[0367] [Table 16] *To have groups of n=10, 12 animals are initiated to compensate for mortality, which is approximately 10-20% in this model.
[0368] Surgical Instrumentation and Measurement of Hemodynamic and Functional Parameters in Efficacy Study Animals 1. On the selected day of surgery, rats are anesthetized with a mixture of 2-2.5% isoflurane USP (Abbot Laboratories, Montreal, Canada) in oxygen and placed on a heating pad to maintain body temperature. 2. Rats are tracheotomized and immediately ventilated with a positive pressure rodent respirator set at approximately 10 ml / kg body weight with a frequency of 65-70 strokes / min. 3. Lead II ECG contact electrodes are placed on the rat for continuous ECG monitoring during the surgical procedure. 4. A cannula connected to a pressure transducer is inserted into the left femoral artery to measure arterial blood pressure. 5. A cannula connected to a pressure transducer is inserted through the right jugular vein into the right atrium to measure right atrial pressure. 6. The heart is exposed through a sternotomy and a 20GA 1.16 in Insyte is introduced into the right ventricle and quickly connected to a saline-filled PE-50 catheter connected to a transducer. 7. Following a few seconds of right ventricular pressure recording, the InSight is advanced further into the pulmonary artery to allow for an additional 60 seconds of PAP recording. 8. Hemodynamic parameters are recorded continuously for the duration of the procedure or until the PAP signal is lost. 9. Following hemodynamic monitoring, the thoracic cavity is further opened to expose the lungs. The muscles above the trachea are dissected to remove the lungs and heart. The harvested tissues are rinsed with PBS to remove excess blood and weighed. 10. The thoracic cavity is further opened to expose the lungs. The muscles above the trachea are dissected and the lungs and heart are removed. The harvested tissues are rinsed with PBS to remove excess blood and weighed. 11. For lung histology and casting, the process is as follows: 1) Eight rats per group are set aside to evaluate left lung histology and therefore are treated as described in item 12 of this section 8.2. 2) Two rats per group serve to allow quantitative characterization of the three-dimensional vascular structure of the left lung and therefore are treated as described in section 8.3 below for casting of the left lung. 12. For histology, the left lobe is inflated using a 10 mL syringe filled with fixative (10% NBF) attached to a blunt-tip needle (23 g) for blunt-tip needle histology. The needle tip is inserted into the trachea and held in place with a knotted suture while another syringe is tied to the pulmonary artery. The lungs are gently inflated with physiological pressure (20-25 mmHg) (fixative is not allowed to ooze from the lung surface) until all lobes are fully, uniformly, and consistently expanded. This provides optimal vascular and airway expansion without causing excessive tissue destruction. The needle is then removed and sutured around the trachea and immersed in 10% NBF with a tissue to fixative ratio of 1:20. The tissues are kept in formalin for 24-48 hours. They are then cut into three sections (upper, middle, and lower). Sections were sent to the Institute for Research in Immunology and Cancer (IRIC) in Montreal, Quebec, Canada, embedded, sliced, and stained with hematoxylin and eosin (H&E) or von Willebrand Factor (VWF) for endothelial cell staining. 13. As part of Fulton's index, the heart is dissected and the right ventricle is separated from the left ventricle by the septum and then weighed separately.
[0369] Pulmonary Artery Casting Procedure 1. Following the recording of hemodynamic parameters, 2 of the 10 rats undergo the process of harvesting the lungs and the heart and of pulmonary artery casting of the left lung. 2. A polyethylene (PE190) tube cut to a length of 40 cm, connected at one end to an 18-G needle and heat-blunted at the other end, is used as a catheter to the right ventricle (RV). The catheter is advanced to the level of the main pulmonary artery (MPA), where it is fixed. For right lung casting, the catheter is advanced into the pulmonary artery (PA) of the right lung, where it is fixed in place to avoid perfusion of the left lung. 3. Blood is flushed out of the PA by pumping 2 ml of diluted sodium heparin (5 units / ml) (APP Pharmaceuticals, Inc., Schaumburg, IL, USA) using a continuous syringe pump set at 2 ml / min. A small incision is made in the left atrial appendage of the left ventricle to allow the solution to flow out of the pulmonary arterial circulation. 4. The lungs are held in an upright position to ensure uniform filling, especially in the lower lung segments. 5. A silicone polymer casting compound, MV-yellow Microfil, with a viscosity of 25 centipoise (cP; 0.01 grams per centimeter second), was mixed with a medium-viscosity (MV) diluent in a volume ratio of 5:4 (diluent:compound) and added to 5% (volume ratio) curing agent. This freshly mixed silicone polymer casting material was then pumped through the catheter at 2 ml / min until the polymer reached the RV. Once the polymer had entered the pulmonary circulation, the flow rate was reduced to 0.05 ml / min. 6. When the polymer appears uniform on the surface of the lung, the pump is stopped. The PA lavaging the left lung is ligated before being excised from the cardiopulmonary block. 7. The left lung with the PA ligated is then transferred to a small container and stored at 4°C for 24 hours to allow complete polymerization of the silicone polymer. For right lung casting, the right PA is ligated. 8. Once polymerized, 10% formalin is added to the container to immerse the left lung (or right lung lobe) in formalin and store at 4°C for an additional 48 hours. 9. The left lung (or right lung lobe) is then sent to the Faculty of Engineering at the University of Sherbrooke (Quebec, Canada) for micro-CT imaging using a Skyscan from Bruker (Manning Park, MA, USA). The images are then sent to Fluidda Inc. for analysis.
[0370] result:
[0371] [Table 17]
[0372] conclusion In the present study, treatment with Compound A significantly reduced pulmonary pressure in female rats in which pulmonary hypertension was induced by monocrotaline but had no effect in male rats.
[0373] Further exemplary embodiments:
[0374] 1. A method for treating an inflammatory disease, disorder, or condition in a patient in need thereof, wherein the inflammatory disease, disorder, or condition is selected from: a. an inflammatory disease, disorder or condition selected from type 1 diabetes, type 2 diabetes, acute pancreatitis and chronic pancreatitis; b. an inflammatory disease, disorder or condition of the kidney selected from glomerulosclerosis, glomerulonephritis, nephritis, acute kidney injury, Berger's disease, Goodpasture's syndrome, Wegener's granulomatosis, and acute or chronic rejection of a kidney transplant; c. an inflammatory disease, disorder or condition of the liver selected from nonalcoholic steatohepatitis (NASH), nonalcoholic fatty liver disease (NAFLD), cholestatic liver disease, sclerosing cholangitis, and acute or chronic rejection of a liver transplant; d. an inflammatory disease, disorder or condition of the lung or heart selected from chronic obstructive pulmonary disease (COPD), asthma, pulmonary fibrosis, pulmonary hypertension, sarcoidosis, myocarditis, pericarditis, and acute or chronic rejection of a lung or heart transplant; e. an inflammatory disease, disorder or condition of the skin selected from contact dermatitis, atopic dermatitis, psoriasis, alopecia areata, erythema multiforme, dermatitis herpetiformis, scleroderma, vitiligo, hypersensitivity vasculitis, urticaria, bullous pemphigoid, pemphigus vulgaris, pemphigus foliaceus, paraneoplastic pemphigus, epidermolysis bullosa acquisita, acne, keloid scars, and other inflammatory or allergic conditions of the skin; f. An inflammatory disease, disorder or condition in the blood vessels / blood selected from Behcet's disease, vasculitis, sepsis, tumor angiogenesis, atherosclerosis, proliferative vascular disease, and restenosis; g. an ocular inflammatory disease, disorder or condition selected from conjunctivitis, scleritis, episcleritis, panuveitis, choroiditis, chorioretinitis, neuroretinitis, uveitis, orbital inflammatory disease, and optic neuritis; h. an inflammatory disease, disorder or condition of the central or peripheral nervous system selected from non-viral and viral encephalitis and meningitis, depression, neuropathic pain including chronic pain, traumatic brain injury including stroke, Alzheimer's disease, Parkinson's disease, myelitis, Charcot-Marie-Tooth type 1 (including CMT1A and CMT1B), multiple sclerosis, amyotrophic lateral sclerosis (ALS), Creutzfeldt-Jakob disease, demyelinating polyneuropathy, and peripheral neuropathy; i. an autoimmune disease, disorder or condition selected from lupus, including lupus of the skin and kidney, Guillain-Barre syndrome, myasthenia gravis, Hashimoto's thyroiditis, idiopathic purpura, aplastic anemia, Graves' disease, and myocarditis; j. an inflammatory disease, disorder or condition in the intestine selected from intestinal failure, ulcerative colitis and Crohn's disease; k. an inflammatory disease, disorder or condition in the reproductive system selected from endometriosis, uterine fibroids, prostate dysplasia or growths, and cervical dysplasia; and l. Inflammatory diseases, disorders or conditions in the bones and / or joints selected from juvenile idiopathic arthritis, psoriatic arthritis, periodontitis, and arthritis and / or demineralization of the hands, feet, ankles, knees, hips, shoulders, elbows or spine; The method comprises the step of administering to the patient a compound of formula (I) or a pharma- ceutically acceptable salt thereof: [ka] Where: Z is C or N; V is C or N; [ka] means an aromatic ring, where V is C or N, and if V is N, then V is in the ortho, meta or para position relative to Z; Each R is independently a hydrogen atom, a halogen atom, -CN, hydroxyl, (C1-C3)fluoroalkyl, (C1-C3)fluoroalkoxy, (C3-C6)cycloalkyl, -NO2, -NR1R2, (C1-C4)alkoxy, phenoxy, -NR1-SO2-NR1R2, -NR1-SO2-R1, -NR1-C(=O)-R1, -NR1-C(=O)-NR1R2, -SO2-NR1R2, -SO3H, -O-SO2-OR3, -OP(=O)-(OR3)(OR4), -O-CH2-COOR3, (C1-C3)alkyl, where the alkyl is optionally a hydroxyl group, a group of formula (IIa) [ka] Or a group of the following formula (IIIa) [ka] may be mono- or disubstituted by Q is N or O, with the proviso that when Q is O, then R″ is absent; Each of R1 and R2 is independently a hydrogen atom or a (C1-C3) alkyl; Each of R3 and R4 is independently a hydrogen atom, Li+, Na+, K+, N+(Ra)4, or benzyl; n is 1, 2 or 3; n' is 1, 2 or 3; Each R' is independently a hydrogen atom, a (C1-C3) alkyl, a hydroxyl, a halogen atom, -NO2, -NR1R2, morpholinyl, morpholino, N-methylpiperazinyl, a (C1-C3) fluoroalkyl, a (C1-C4) alkoxy, -OP(=O)-(OR3)(OR4), -CN, a group of formula (IIa) [ka] Or a group of the following formula (IIIa) [ka] and A is a covalent bond, an oxygen atom or NH; B is a covalent bond or NH; m is 1, 2, 3, 4 or 5; p is 1, 2 or 3; Each of Ra and Rb is independently a hydrogen atom, a (C1-C5) alkyl or a (C3-C6) cycloalkyl; or Ra and Rb together with the nitrogen atom to which they are attached may form a saturated 5- or 6-membered heterocycle, which may be optionally substituted by one or more Ra, with the proviso that when R' is a (IIa) or (IIIa) group, n' may be 2 or 3 only if the other R' group is different from said (IIa) or (IIIa) group; and R″ is a hydrogen atom, a (C1-C4) alkyl or a group of formula (IIa) as defined above.
[0375] 2. The method according to embodiment 1, wherein said compound is a compound of formula (Ia) below or a pharma- ceutically acceptable salt thereof. [ka]
[0376] 3. The method according to embodiment 1, wherein said compound is a compound of formula (Ib) below or a pharma- ceutically acceptable salt thereof: [ka]
[0377] 4. The method according to embodiment 1, wherein said compound is a compound of formula (Ic) below or a pharma- ceutically acceptable salt thereof: [ka]
[0378] 5. The method according to embodiment 1, wherein said compound is a compound of formula (Ib') below or a pharma- ceutically acceptable salt thereof. [ka]
[0379] 6. The method according to embodiment 1, wherein said compound is a compound of formula (Id) below or a pharma- ceutically acceptable salt thereof: [ka]
[0380] 7. A compound of formula (IV) or a pharma- ceutically acceptable salt thereof [ka] wherein each of the variables V, Z, R, R', n, and n' are as described in embodiment 1, with the proviso that the compound is not a compound of the formula: [ka]
[0381] 8. The compound is of the following formula or a pharma- ceutically acceptable salt thereof: 8. The compound according to embodiment 7. [ka]
[0382] 9. The compound according to embodiment 7, wherein the compound is of formula (IVb) below or a pharma- ceutically acceptable salt thereof. [ka]
[0383] 10. The compound according to embodiment 7, wherein the compound is of formula (IVc) below or a pharma- ceutically acceptable salt thereof: [ka]
[0384] 11. The compound according to embodiment 7, wherein said compound is a compound of formula (IVb') below or a pharma- ceutically acceptable salt thereof: [ka]
[0385] 12. The compound according to embodiment 7, wherein the compound is of formula (IVd) or a pharma- ceutically acceptable salt thereof: [ka]
[0386] 13. A pharmaceutical composition comprising a compound according to any one of embodiments 7 to 12, or a pharma- ceutically acceptable salt thereof, and a pharma- ceutically acceptable carrier, adjuvant or vehicle.
[0387] 14. A method for treating an inflammatory disease, disorder or condition, comprising administering to a patient in need thereof a compound according to any one of embodiments 7 to 12, or a pharma- ceutically acceptable salt thereof, or a pharmaceutical composition according to embodiment 12.
[0388] 15. The method according to any one of embodiments 1-6 and 14, wherein said inflammatory disease, disorder or condition is selected from type 1 diabetes, type 2 diabetes, acute pancreatitis and chronic pancreatitis in the pancreas.
[0389] 16. The method according to any one of embodiments 1 to 6 and 14, wherein the inflammatory disease, disorder or condition is selected from glomerulosclerosis, glomerulonephritis, nephritis, acute kidney injury, Berger's disease, Goodpasture's syndrome, Wegener's granulomatosis, and acute or chronic rejection of a kidney transplant.
[0390] 17. The method according to any one of embodiments 1 to 6 and 14, wherein the inflammatory disease, disorder or condition is selected from non-alcoholic steatohepatitis (NASH), non-alcoholic fatty liver disease (NAFLD), cholestatic liver disease, sclerosing cholangitis, and acute or chronic rejection of liver transplants in the liver.
[0391] 18. The method according to any one of embodiments 1 to 6 and 14, wherein the inflammatory disease, disorder or condition is selected from chronic obstructive pulmonary disease (COPD), asthma, pulmonary fibrosis, pulmonary hypertension, sarcoidosis, myocarditis, pericarditis, and acute or chronic rejection of a lung or heart transplant in the lung or heart.
[0392] 19. The method of any one of embodiments 1-6 and 14, wherein the inflammatory disease, disorder or condition is selected from contact dermatitis, atopic dermatitis, psoriasis, alopecia areata, erythema multiforme, dermatitis herpetiformis, scleroderma, vitiligo, hypersensitivity vasculitis, urticaria, bullous pemphigoid, pemphigus vulgaris, pemphigus foliaceus, paraneoplastic pemphigus, epidermolysis bullosa acquisita, acne, keloid scars, and other inflammatory or allergic conditions of the skin.
[0393] 20. The method according to any one of embodiments 1 to 6 and 14, wherein the inflammatory disease, disorder or condition is selected from Behcet's disease, vasculitis, sepsis, tumor angiogenesis, atherosclerosis, proliferative vascular diseases, and restenosis in blood vessels / blood.
[0394] 21. The method of any one of embodiments 1 to 6 and 14, wherein the inflammatory disease, disorder or condition is selected from conjunctivitis, scleritis, episcleritis, panuveitis, choroiditis, chorioretinitis, neuroretinitis, uveitis, orbital inflammatory disease, and optic neuritis in the eye.
[0395] 22. The method of any one of embodiments 1-6 and 14, wherein the inflammatory disease, disorder or condition is selected from non-viral and viral encephalitis and meningitis, depression, neuropathic pain including chronic pain, traumatic brain injury including stroke, Alzheimer's disease, Parkinson's disease, myelitis, Charcot-Marie-Tooth type 1 (including CMT1A and CMT1B), multiple sclerosis, amyotrophic lateral sclerosis (ALS), Creutzfeldt-Jakob disease, demyelinating polyneuropathy, and peripheral neuropathy in the central or peripheral nervous system.
[0396] 23. The method of any one of embodiments 1-6 and 14, wherein said inflammatory disease, disorder or condition is selected from lupus, including lupus of the skin and kidney, Guillain-Barre syndrome, myasthenia gravis, Hashimoto's thyroiditis, idiopathic purpura, aplastic anemia, Graves' disease, and myocarditis.
[0397] 24. The method according to any one of embodiments 1 to 6 and 14, wherein said inflammatory disease, disorder or condition is in the intestine and is selected from intestinal failure, ulcerative colitis and Crohn's disease.
[0398] 25. The method of any one of embodiments 1-6 and 14, wherein said inflammatory disease, disorder or condition is selected from endometriosis, uterine fibroids, prostate dysplasia or growths, and cervical dysplasia in the reproductive system.
[0399] 26. The method of any one of embodiments 1-6 and 14, wherein the inflammatory disease, disorder or condition is selected from juvenile idiopathic arthritis, psoriatic arthritis, periodontitis, and arthritis and / or demineralization of the bones and / or joints of the hands, feet, ankles, knees, hips, shoulders, elbows or spine.
[0400] 27. The method according to any one of embodiments 1 to 6 and 14 to 26, further comprising measuring the level of a compound of formula (I) or a pharma- ceutically acceptable salt thereof in a sample of the patient's blood, plasma, tissue, saliva and / or serum.
[0401] 28. The method according to any one of embodiments 1 to 6 and 14 to 27, further comprising measuring the level of a compound of formula (IV) or a pharma- ceutically acceptable salt thereof in a sample of the patient's blood, plasma, tissue, saliva and / or serum.
[0402] 29. The method according to any one of embodiments 1 to 6 and 14 to 28, further comprising measuring the level of a compound of formula (I) and formula (IV) or a pharma- ceutically acceptable salt thereof in a sample of the patient's blood, plasma, tissue, saliva and / or serum.
[0403] 30. The method according to any one of embodiments 1 to 6 and 14 to 29, further comprising measuring the presence and / or expression level of miR-124 in blood and / or tissue samples from said patient before and during said treatment.
[0404] 31. The method according to any one of embodiments 1 to 6 and 14 to 30, further comprising selecting the patient by determining the presence and / or expression level of miR-124 in blood and / or tissue samples from said patient.
[0405] 32. The method of any one of embodiments 1 to 6 and 14 to 31, further comprising monitoring the severity of the disease, disorder or condition and / or monitoring the effectiveness of treatment using an algorithm linking miR-124 levels with levels of cytokines or other biomarkers or levels of a compound of formula (I) or formula (IV) or a pharma- ceutically acceptable salt thereof.
[0406] 33. The method of any one of embodiments 1 to 6 and 14 to 31, further comprising selecting patients for treatment using an algorithm linking miR-124 levels with levels of cytokines or other biomarkers or levels of a compound of formula (I) or formula (IV) or a pharma- ceutically acceptable salt thereof.
[0407] 34. An algorithm linking iR-124 levels with levels of selected cytokines or other biomarkers or levels of a compound of Formula (I) or Formula (IV) or a pharma- ceutical acceptable salt thereof to monitor the severity of a disease, disorder or condition and / or to monitor the effectiveness of treatment.
Claims
1. An agent for use in treating and / or preventing an inflammatory disease, disorder or condition, comprising a compound of formula (Ib') or a pharma- ceutical acceptable salt thereof: 【Chemistry 8】 Where: Each R is independently a halogen atom, a (C 1 -C 3 )fluoroalkoxy group, a -NR 1 R 2 group, a (C 1 -C 4 )alkoxy group, a -OP(═O)(OR 3 )(OR 4 ) group, a (C 1 -C 3 )alkyl group, a NO 2 group, or a group of formula (IIa) below: 【Chemistry 3】 Or a group of the following formula (IIIa) 【Chemistry 4】 represents a group selected from R 1 and R 2 Each of the groups independently represents a hydrogen atom or (C 1 ~C 3 ) alkyl, R 3 and R 4 each independently represents a hydrogen atom, Li + , Na + , K + , N + (Ra) 4 or benzyl, n is 1 or 2; Each R' is independently a hydrogen atom, (C 1 ~C 3 ) Alkyl, hydroxyl, halogen atom, -NO 2 , -NR 1 R 2 , morpholinyl, morpholino, N-methylpiperazinyl, (C 1 ~C 3 ) fluoroalkyl, (C 1 ~C 4 )Alkoxy, -OP(=O)-(OR 3 )(OR 4 ), -CN, -NH-SO 2 -N(CH 3 ) 2 a group of formula (IIa) 【Chemistry 5】 Or a group of the following formula (IIIa) 【Chemistry 6】 and A is a covalent bond, an oxygen atom or NH; B is a covalent bond or NH; m is 2, 3 or 4; p is 1, 2 or 3; Each of Ra and Rb independently represents a hydrogen atom, (C 1 ~C 5 ) alkyl or (C 3 ~C 6 ) cycloalkyl, or Ra and Rb together with the nitrogen atom to which they are attached form a saturated 5- or 6-membered heterocycle, which may optionally contain additional heteroatoms selected from N, O, S, which may optionally be substituted by one or more Ra, and R” is a hydrogen atom, (C 1 ~C 4 ) alkyl or a group of formula (IIa) as defined above, The inflammatory disease, disorder or condition is selected from: (c) an inflammatory disease, disorder or condition in the liver selected from nonalcoholic steatohepatitis (NASH), nonalcoholic fatty liver disease (NAFLD), cholestatic liver disease, and sclerosing cholangitis; (d) a pulmonary inflammatory disease, disorder or condition selected from chronic obstructive pulmonary disease (COPD), pulmonary fibrosis, pulmonary hypertension, and sarcoidosis; The agent.
2. In the compound of the formula (Ib') or a pharma- ceutical acceptable salt thereof, R is independently a halogen atom or (C 1 ~C 3 ) fluoroalkoxy group, -NR 1 R 2 Group, (C 1 ~C 4 ) alkoxy group, -OP(=O)(OR 3 )(OR 4 ) group, (C 1 ~C 3 ) alkyl group, NO 2 group, -A-(CH 2 ) m -B-NRaRb group (Formula IIa) and -(O-CH 2 -CH 2 ) p represents a group selected from the -O-Ra group (formula IIIa), n is 1 or 2; R' is a hydrogen atom, a halogen atom, or -NR 1 R 2 Group, -OP(=O)(OR 3 )(OR 4 ) group, -NH-SO 2 -N(CH 3 ) 2 Groups and -A-(CH 2 ) m -B-NRaRb radicals (IIa), R'' is a hydrogen atom, (C 1 ~C 4 ) alkyl group or -A-(CH 2 ) m -B-NRaRb group (formula IIa), R 1 and R 2 are independently a hydrogen atom or (C 1 ~C 3 ) alkyl group, R 3 and R 4 are independently hydrogen atoms, Li + , Na + , K + , N + (Ra) 4 or benzyl, A is a covalent bond, an oxygen atom or NH; B is a covalent bond, m is 2, 3 or 4; p is 1, 2 or 3; Ra and Rb are independently a hydrogen atom or (C 1 ~C 5 ) an alkyl group, wherein Ra and Rb may further be taken together with the nitrogen atom to which they are attached to form a saturated 5- or 6-membered heterocycle, which may optionally contain additional heteroatoms selected from N, O and S, and which may optionally be substituted by one or more Ra; The agent according to claim 1.
3. R is independently F, Cl, -NH 2 , -N(CH 3 ) 2 , -OCH 3 , -O-(CH 2 ) 3 -CH 3 , -OCF 3 , -CH 3 , -O-(CH 2 ) 2 -OH, -O-(CH 2 ) 2 -O-(CH 2 ) 2 -OCH 3 , -NO 2 group, -OP(=O)(OH)(OH) group, -O-(CH 2 ) 2 -morpholino group or -O-(CH 2 ) 2 -piperidino group, n is 1 or 2; R' is a hydrogen atom, Cl, -CH 2 -CH 2 -CH 3 , -O-(CH 2 ) 2 -morpholino group, -O-(CH 2 ) 2 -piperidino group, -O(CH 2 ) 3 -piperidino group, -N-(CH 2 ) 3 -Morpholino group, -NH-SO 2 -N(CH 3 ) 2 group, NH 2、 or -OP(=O)(OH)(OH) group, R'' is a hydrogen atom, -CH 3 , -(CH 2 ) 3 -piperidino group, -(CH 2 ) 2 -morpholino group, -(CH 2 ) 4 -morpholino group or -(CH 2 ) 2 -pyrrolidino group, The agent according to claim 1 or 2.
4. The agent according to any one of claims 1 to 3, wherein the compound of formula (Ib') is selected from the following compounds or pharma- ceutically acceptable salts thereof: 【Chemistry 9】 【change】 【change】 【change】 【change】 【change】 【change】 【change】
5. The agent according to any one of claims 1 to 4, wherein the compound of formula (Ib') is 8-chloro-N-(4-(trifluoromethoxy)phenyl)quinolin-2-amine.
6. 2. An agent for use in treating and / or preventing an inflammatory disease, disorder or condition as defined in claim 1, comprising a compound of formula (IVb') or a pharma- ceutical acceptable salt thereof: 【Chemistry 12】 where R, R', and n are as defined in claim 1. The agent.
7. The compound of formula (IVb') is the following compound or a pharma- ceutically acceptable salt thereof: 【Chemistry 13】 The agent according to claim 6.
8. The inflammatory disease, disorder or condition is selected from nonalcoholic steatohepatitis (NASH), nonalcoholic fatty liver disease (NAFLD), cholestatic liver disease, and sclerosing cholangitis in the liver. The agent according to any one of claims 1 to 7.
9. The inflammatory disease, disorder or condition is selected from chronic obstructive pulmonary disease (COPD), pulmonary fibrosis, pulmonary hypertension, and sarcoidosis in the lungs. The agent according to any one of claims 1 to 7.
10. The agent according to any one of claims 1 to 7, The agent, wherein the level of a compound of formula (Ib') as defined in any one of claims 1 to 5 or a compound of formula (IVb') as defined in any one of claims 6 or 7 or a pharma- ceutically acceptable salt thereof in a sample of the patient's blood, plasma, tissue, saliva and / or serum is measured during said use.
11. The agent according to any one of claims 1 to 7, The agent, wherein the presence and / or expression levels of miR-124 in the patient's blood and / or tissue samples are determined before and / or during said use.
12. The agent according to any one of claims 1 to 7, The agent, wherein an algorithm linking miR-124 levels with levels of cytokines or other biomarkers or levels of a compound of formula (Ib') as defined in any one of claims 1 to 5 or a compound of formula (IVb') as defined in any one of claims 6 or 7 or a pharma- ceutically acceptable salt thereof is used to monitor the severity of a disease, disorder or condition and / or to monitor the effectiveness of said use.
Citation Information
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