WO2022139443A1 - 멜라노코르틴 수용체 작용제 화합물의 결정형 i 및 이의 제조방법 - Google Patents
멜라노코르틴 수용체 작용제 화합물의 결정형 i 및 이의 제조방법 Download PDFInfo
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- WO2022139443A1 WO2022139443A1 PCT/KR2021/019583 KR2021019583W WO2022139443A1 WO 2022139443 A1 WO2022139443 A1 WO 2022139443A1 KR 2021019583 W KR2021019583 W KR 2021019583W WO 2022139443 A1 WO2022139443 A1 WO 2022139443A1
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Images
Classifications
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- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07D—HETEROCYCLIC COMPOUNDS
- C07D403/00—Heterocyclic compounds containing two or more hetero rings, having nitrogen atoms as the only ring hetero atoms, not provided for by group C07D401/00
- C07D403/02—Heterocyclic compounds containing two or more hetero rings, having nitrogen atoms as the only ring hetero atoms, not provided for by group C07D401/00 containing two hetero rings
- C07D403/06—Heterocyclic compounds containing two or more hetero rings, having nitrogen atoms as the only ring hetero atoms, not provided for by group C07D401/00 containing two hetero rings linked by a carbon chain containing only aliphatic carbon atoms
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61K—PREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
- A61K31/00—Medicinal preparations containing organic active ingredients
- A61K31/33—Heterocyclic compounds
- A61K31/395—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins
- A61K31/535—Heterocyclic compounds having nitrogen as a ring hetero atom, e.g. guanethidine or rifamycins having six-membered rings with at least one nitrogen and one oxygen as the ring hetero atoms, e.g. 1,2-oxazines
- A61K31/5375—1,4-Oxazines, e.g. morpholine
- A61K31/5377—1,4-Oxazines, e.g. morpholine not condensed and containing further heterocyclic rings, e.g. timolol
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61P—SPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
- A61P15/00—Drugs for genital or sexual disorders; Contraceptives
- A61P15/10—Drugs for genital or sexual disorders; Contraceptives for impotence
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61P—SPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
- A61P29/00—Non-central analgesic, antipyretic or antiinflammatory agents, e.g. antirheumatic agents; Non-steroidal antiinflammatory drugs [NSAID]
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61P—SPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
- A61P3/00—Drugs for disorders of the metabolism
- A61P3/04—Anorexiants; Antiobesity agents
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61P—SPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
- A61P3/00—Drugs for disorders of the metabolism
- A61P3/08—Drugs for disorders of the metabolism for glucose homeostasis
- A61P3/10—Drugs for disorders of the metabolism for glucose homeostasis for hyperglycaemia, e.g. antidiabetics
-
- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07D—HETEROCYCLIC COMPOUNDS
- C07D207/00—Heterocyclic compounds containing five-membered rings not condensed with other rings, with one nitrogen atom as the only ring hetero atom
- C07D207/02—Heterocyclic compounds containing five-membered rings not condensed with other rings, with one nitrogen atom as the only ring hetero atom with only hydrogen or carbon atoms directly attached to the ring nitrogen atom
- C07D207/04—Heterocyclic compounds containing five-membered rings not condensed with other rings, with one nitrogen atom as the only ring hetero atom with only hydrogen or carbon atoms directly attached to the ring nitrogen atom having no double bonds between ring members or between ring members and non-ring members
- C07D207/10—Heterocyclic compounds containing five-membered rings not condensed with other rings, with one nitrogen atom as the only ring hetero atom with only hydrogen or carbon atoms directly attached to the ring nitrogen atom having no double bonds between ring members or between ring members and non-ring members with hetero atoms or with carbon atoms having three bonds to hetero atoms with at the most one bond to halogen, e.g. ester or nitrile radicals, directly attached to ring carbon atoms
- C07D207/16—Carbon atoms having three bonds to hetero atoms with at the most one bond to halogen, e.g. ester or nitrile radicals
-
- C—CHEMISTRY; METALLURGY
- C07—ORGANIC CHEMISTRY
- C07B—GENERAL METHODS OF ORGANIC CHEMISTRY; APPARATUS THEREFOR
- C07B2200/00—Indexing scheme relating to specific properties of organic compounds
- C07B2200/13—Crystalline forms, e.g. polymorphs
Definitions
- the present invention relates to crystalline Form I of a novel compound exhibiting excellent agonistic activity on melanocortin receptors, a method for preparing the same, and a pharmaceutical composition comprising the same.
- Leptin protein is a hormone secreted by body fat cells (adipocytes), and its secretion increases with an increase in body fat content and regulates the functions of various neuropeptides produced in the hypothalamus, such as appetite and body fat. It regulates various in vivo functions, including content and energy metabolism (Schwartz, et al., Nature 404, 661-671 (2000)). Signal transduction of appetite and weight control by leptin protein is made through the control of many factors downstream, the most representative of which are melanocortin, AgRP (agoutirelated peptide) and neuropeptide Y (neuropeptide). Y, NPY) hormones.
- Alpha-MSH hormone induces various physiological responses by binding to three MCR subtypes in addition to MC4R.
- Five MCR subtypes have been identified so far.
- MC1R is mainly expressed in skin cells and is involved in the regulation of melanin pigmentation (skinpigmentation)
- MC2R is mainly expressed in the adrenal gland and is mainly expressed in the glucocorticoid hormone (glucocorticoid hormone).
- ACTH adrenocorticotropic hormone
- MC3R and MC4R which are mainly expressed in the central nervous system, are involved in appetite, energy metabolism, and regulation of body fat storage efficiency, and MC5R expressed in various tissues is known to regulate exocrine function (Wikberg, et al., Pharm Res 42 (5) 393-420 (2000)).
- activation of the MC4R receptor has been proven to be a major action point in the development of anti-obesity drugs because it effectively reduces body weight by inducing a decrease in appetite and an increase in energy metabolism (Review: Wikberg, Eur. J. Pharmacol 375, 295).
- MC4R The role of MC4R in appetite and weight control was primarily demonstrated through an agouti protein abnormal expression animal model (agouti mouse) experiment.
- agouti protein abnormal expression animal model
- Agouti mice it was found that the agouti protein was expressed at a high concentration in the central nervous system due to genetic mutation and induces obesity by acting as an antagonist of MC4R in the upper and lower thalamus (Yen, TT et al., FASEB J). 8, 479-488 (1994);Lu D., et al. Nature 371, 799-802 (1994)).
- AgRP agouti-related peptide
- Appetite inhibitors acting on the central nervous system are the main types of obesity treatment developed so far, and most of them are drugs that control the action of neurotransmitters. Examples include noradrenalin agents (phentermine and mazindol) and serotonergic agents fluoxetine and sibutramine.
- noradrenalin agents phentermine and mazindol
- serotonergic agents fluoxetine and sibutramine.
- the neurotransmitter modulator it exerts a wide range of effects on various physiological actions in addition to appetite suppression through numerous subtype receptors. Therefore, in the case of the modulators, there is a major disadvantage in that the selectivity for each subtype is lacking, and various side effects are accompanied by long-term administration.
- melanocortin agonists are neuropeptides, not neurotransmitters, and in MC4R gene KO mice, all other functions other than energy metabolism are normal. It has an advantage as an action point in that it can induce only a decrease.
- the receptor is a G-protein coupled receptor (GPCR), which belongs to the most successful category of new drug action points developed so far, and it is greatly distinguished from existing action points in that it is relatively easy to secure selectivity for a subtype receptor. do.
- GPCR G-protein coupled receptor
- melanocortin receptor in particular, a novel compound of Formula 1 excellent in selective agonistic activity for melanocortin-4 receptor (MC4R) and a method for preparing the same. Yes (application number 10-2019-0141649 (application on November 7, 2019)).
- the crystal structure of a pharmaceutically active ingredient often affects the chemical stability of the drug.
- Different crystallization conditions and storage conditions can change the crystal structure of the compound, sometimes resulting in the concomitant production of different forms of the crystalline form.
- Amorphous drug products generally do not have a regular crystal structure and often have other defects such as poor product stability, smaller particle size, difficult filtration, easy agglomeration and poor flowability. Therefore, there is a need to improve various physical properties of the product. As such, it is necessary to study a crystal structure with high purity and good chemical stability for a single compound.
- Patent Document 1 International Patent Application Publication No. WO 2008/007930
- Patent Document 2 International Patent Application Publication No. WO 2010/056022
- M4R melanocortin-4 receptors
- Another object of the present invention is to provide a pharmaceutical composition comprising a stable crystalline form of the novel compound.
- the present invention provides crystalline Form I of a compound of Formula 1, a pharmaceutically acceptable salt or solvate thereof, comprising:
- R 1 is C 2 -C 5 alkyl.
- the compound of Formula 1 may have an asymmetric carbon center and an asymmetric axis or an asymmetric plane, it may exist as cis or trans isomers, R or S isomers, racemates, diastereomeric mixtures, and individual diastereomers, all of which Isomers and mixtures are included in the scope of the compound of Formula 1 above.
- the compound of Formula 1 is used to include all of the compound of Formula 1, a pharmaceutically acceptable salt thereof, an isomer thereof, and a solvate thereof.
- R 1 in Formula 1 is C 2 to C 5 alkyl. In another embodiment according to the present invention, R 1 in Formula 1 is straight-chain or branched C 2 to C 5 alkyl, for example, ethyl, n-propyl, iso-propyl, n-butyl, iso-butyl, sec- butyl or tert-butyl.
- R 1 in Formula 1 is C 2 to C 4 alkyl.
- R 1 of Formula 1 is straight-chain or branched C 2 to C 4 alkyl, for example, ethyl, n-propyl, iso-propyl, n-butyl, sec-butyl, tert- It is butyl. Specifically, R 1 may be iso-propyl.
- the pharmaceutically acceptable salt is, for example, an inorganic acid such as hydrochloric acid, sulfuric acid, nitric acid, phosphoric acid, hydrobromic acid, hydroiodic acid, tartaric acid, formic acid, citric acid, acetic acid, trichloroacetic acid, acid addition salts formed with organic carbonic acids such as trifluoroacetic acid, gluconic acid, benzoic acid, lactic acid, fumaric acid, maleic acid, etc., sulfonic acids such as methanesulfonic acid, benzenesulfonic acid, p-toluenesulfonic acid or naphthalenesulfonic acid, etc. , but is not limited thereto.
- an inorganic acid such as hydrochloric acid, sulfuric acid, nitric acid, phosphoric acid, hydrobromic acid, hydroiodic acid, tartaric acid, formic acid, citric acid, acetic acid, trichloroacetic acid
- the solvate is a hydrate; Methanol, ethanol, 2-propanol, 1,2-propanediol, 1,3-propanediol, n-butanol, 1,4-butanediol, tert-butanol, acetic acid, acetone, butyl acetate, methyl acetate, ethyl acetate, propyl solvates with organic solvents such as acetate, t-butyl acetate, isobutyl acetate, methylethylketone, 2-pentanone, tetrahydrofuran, acetonitrile, chloroform, toluene, and mixtures thereof.
- Form I is 8.240 ⁇ 0.2°, 9.363 ⁇ 0.2°, 10.2693 ⁇ 0.2°, 10.5969 ⁇ 0.2°, 12.050 ⁇ 0.2°, 12.841 ⁇ 0.2°, 13.503 in the X-ray powder diffraction pattern.
- Form I is 8.240 ⁇ 0.2°, 9.363 ⁇ 0.2°, 10.2693 ⁇ 0.2°, 10.5969 ⁇ 0.2°, 12.050 ⁇ 0.2°, 12.841 ⁇ 0.2°, 13.503 in an X-ray powder diffraction pattern.
- the crystalline Form I may have an X-ray powder diffraction (XRPD) pattern shown in FIG. 1 .
- XRPD X-ray powder diffraction
- Form I according to the present invention may have an endothermic peak at 155 to 165° C. in a differential scanning calorimetry (DSC) profile.
- the melting endotherm may be one starting at an onset temperature of 159.14°.
- the crystalline Form I may have the DSC profile shown in FIG. 2 .
- weight loss may not be observed upon heating to a temperature of 270° C. or less.
- the crystalline Form I may have the TGA profile shown in FIG. 3 .
- Form I according to the present invention has a total weight increase observed at 0-90 %RH as a result of moisture adsorption analysis (DVS) of 5%w/w or less, for example 4%w/w or less, 3%w/w or less , 2%w/w or less, 1%w/w or less, 0.5%w/w or less, or 0.2%w/w or less.
- DVS moisture adsorption analysis
- the crystalline Form I may have the DVS profile shown in FIG. 4 .
- Crystalline Form I according to the present invention showed chemical stability for 4 weeks under stability test results (HPLC), accelerated conditions (40 °C, 75% RH) and harsh conditions (80 °C), so it can be seen that it is a crystalline form stable against heat and humidity. .
- X-ray powder diffraction (XRPD) analysis shows the results performed using a PANalytical X' Pert Pro MPD system, Malvern Panalytical Ltd.
- DSC Differential scanning calorimetry
- TGA Thermogravimetric analysis
- Stability analysis represents the results performed using HPLC, Agilent Technologies, Inc.
- the crystalline Form I may have a higher purity than the crude compound of Formula 1, the amorphous compound of Formula 1, or other crystalline forms of the compound of Formula 1, and may be physically and chemically more stable.
- the crystalline form I of the compound of Formula 1 is a known melanocortin-4-receptor agonist compared to melanocortin-4 receptor enhancement ability, obesity, diabetes, inflammation, prevention or treatment of diseases such as erectile dysfunction
- the effect may be more excellent, but the effect of the present invention is not limited thereto.
- the present invention provides a method for preparing crystalline Form I, comprising the steps of preparing a mixed solution by dissolving the compound of Formula 1 in a crystallization solvent, and obtaining crystals from the mixed solution.
- the compound represented by Formula 1 is dissolved in a crystallization solvent.
- the compound of Formula 1 may be a compound of Formula 1, a salt thereof, an isomer thereof, or a solvate thereof.
- the compound of Formula 1 may be obtained by the preparation method described in the specification of Application No. 10-2019-0141649 (application on November 7, 2019).
- the crystallization solvent may be used without particular limitation as long as it is an appropriate solvent for crystallization of the compound.
- the crystallization solvent includes an organic solvent.
- the organic solvent may include a dialkyl ether solvent such as diethyl ether, dipropyl ether, dibutyl ether, diisoamyl ether, ethyl methyl ether, methyl propyl ether, methyl butyl ether, ethyl propyl ether; cyclic ether solvents such as tetrahydrofuran and tetrahydropyran; Aromatic ring containing ether solvents, such as diphenyl ether and anisole; amide solvents such as dimethylacetamide; ketone solvents such as methyl isobutyl ketone; ester solvents such as isopropyl acetate; alcohol solvents such as 1-pentyl alcohol; toluene-based solvents such as toluene; or a mixture thereof; may be included.
- a dialkyl ether solvent such as diethyl ether, dipropyl ether, dibutyl ether, diisoamy
- the organic solvent may be an ether-based solvent.
- the organic solvent may include methyl tert-butyl ether (MTBE).
- MTBE methyl tert-butyl ether
- the crystallization solvent may be used in an amount that completely dissolves the compound of Formula 1 above.
- the crystallization solvent is 0.5 to 10 mL, 0.5 to 5 mL, 0.8 to 3 mL, 1.0 to 2.5 mL, 1.5 to 2 mL, 1.6 to 1.8 mL, or 1.625 mL may be using
- the dissolution of the crude compound of Formula 1 in a solvent may be carried out without or under stirring at a temperature of 15 to 30 °C, specifically 23 to 28 °C.
- a mixed solution in which the compound of Formula 1 is dissolved at 25° C. can be obtained by using 0.975 mL of MTBE with respect to 0.6 g of the compound of Formula 1 above.
- the crystals may be obtained, for example, by cooling the solution, evaporating the solvent, supersaturating it by adding an antisolvent, or using a method such as slurry conversion.
- the method may further include at least one of stirring and filtering the mixed solution in an arbitrary order.
- the mixed solution may be cooled, stirred, and filtered to obtain crystals.
- the cooling may be performed so that the temperature of the mixed solution to which the acid is added dropwise becomes 0°C to 10°C. Specifically, the cooling may be performed so that the temperature of the mixed solution becomes 0°C to 5°C, or 3°C.
- the stirring is not limited thereto, but for example, may be performed for 1 hour to 72 hours, 10 hours to 48 hours, 15 hours to 36 hours, 20 hours to 24 hours, or 21 hours.
- the preparation method of the present invention may further comprise the step of adding a non-polar organic solvent at any stage of the preparation method of crystalline Form I.
- the method may further include adding a non-polar organic solvent to the solution at the same time as stirring.
- the yield or production stability of Form I obtained by increasing the production rate of crystallized particles by adding the non-polar organic solvent may be improved, but the present invention is not limited thereto.
- the non-polar organic solvent may be used without particular limitation as long as it is an organic solvent having non-polar properties, but, for example, hexane, heptane, cyclohexane, carbon tetrachloride, benzene, chloroform, and the like may be used.
- the crystalline Form I obtained as described above may have a higher purity than the crude compound of Formula 1, the amorphous compound of Formula 1, or any crystalline form of Formula 1, and may be physically and chemically more stable, but the effect of the present invention may be However, the present invention is not limited thereto.
- the present invention provides a composition comprising (i) Form I; and (ii) a pharmaceutically acceptable carrier.
- Form I exhibits excellent agonistic action on melanocortin receptors, particularly melanocortin-4 receptors (MC4R), and therefore, the present invention also provides a melanocortin receptor comprising the above-described Form I as an active ingredient.
- a pharmaceutical composition for enhancing the function of can be provided.
- the pharmaceutical composition may be a composition for enhancing melanocortin-4 receptor function.
- the pharmaceutical composition may exhibit an excellent effect in preventing or treating obesity, diabetes, inflammation and impotence, the prevention or treatment of obesity, the prevention or treatment of diabetes, the prevention or treatment of inflammation, or It may be a composition for preventing or treating erectile dysfunction, but the use of the present invention is not limited to these diseases.
- carrier refers to a compound that facilitates the introduction of the compound into a cell or tissue.
- the total daily dose to be administered to the host as a single dose or in separate doses is preferably in the range of 0.01 to 10 mg/kg body weight, but the specific dose level for an individual patient is It may change depending on the specific compound to be used, the patient's weight, sex, health status, diet, administration time of the drug, administration method, excretion rate, drug mixture, and the severity of the disease.
- Form I of the present invention may be administered by any route as desired.
- the amorphous compound of the present invention can be administered by injection or oral administration.
- the pharmaceutical composition of the present invention may be in various oral dosage forms such as tablets, pills, powders, capsules, granules, syrups or emulsions, or parenteral dosage forms such as injection preparations for intramuscular, intravenous or subcutaneous administration.
- oral dosage forms such as tablets, pills, powders, capsules, granules, syrups or emulsions
- parenteral dosage forms such as injection preparations for intramuscular, intravenous or subcutaneous administration.
- Formulations for injection can be prepared according to known techniques using suitable dispersing agents, wetting agents, suspending agents, or excipients.
- Excipients that can be used in the pharmaceutical preparation of the present invention include sweeteners, binders, solubilizers, solubilizers, wetting agents, emulsifiers, isotonic agents, adsorbents, disintegrants, antioxidants, preservatives, lubricants, fillers, fragrances, etc. , but not limited thereto.
- lactose lactose, dextrose, sucrose, mannitol, sorbitol, cellulose, glycine, silica, magnesium aluminum silicate, starch, gelatin, gum tragacanth, arginic acid, sodium alginate, methylcellulose, sodium carboxymethyl Cellulose, water, ethanol, polyethylene glycol, polyvinylpyrrolidone, sodium chloride, calcium chloride, orange essence, strawberry essence, vanilla flavor, etc. may be used.
- examples of the carrier used include cellulose, calcium silicate, corn starch, lactose, sucrose, dextrose, calcium phosphate, stearic acid, magnesium stearate, calcium stearate, gelatin. , talc, and the like, but are not limited thereto.
- the carrier includes water, saline, aqueous glucose solution, similar sugar solution, alcohol, glycol, ether, oil, fatty acid, fatty acid ester, glyceride, etc.
- the present invention is not limited thereto.
- crystalline Form I as described above for use in the hyperfunction of the melanocortin receptor, in particular the melanocortin-4 receptor (MC4R).
- M4R melanocortin-4 receptor
- crystalline Form I as described above for use in the treatment or prophylaxis of obesity, diabetes, inflammation or impotence.
- a method for enhancing the function of a melanocortin receptor in particular a melanocortin-4 receptor (MC4R), comprising administering to a subject the aforementioned crystalline Form I.
- M4R melanocortin-4 receptor
- a method of treating obesity, diabetes, inflammation or erectile dysfunction comprising administering to a subject the above-described crystalline Form I.
- Crystalline Form I exhibits excellent agonistic action on melanocortin receptors, particularly melanocortin-4 receptors (MC4R), and thus can be usefully used for prevention or treatment of obesity, diabetes, inflammation and impotence. .
- M4R melanocortin-4 receptors
- Form I exhibits an on-target effect on the melanocortin-4 receptor, thereby exhibiting weight loss and diet reduction effects, without affecting anxiety and depression, and hERG (human ether-a-go-go related It can be administered without any safety issues such as side effects or mutagenesis on gene) inhibition.
- crystalline Form I is superior in purity, yield, physical and chemical stability compared to the crude compound of Formula 1, the amorphous compound of Formula 1, or any other crystalline form of Formula 1.
- the crystalline Form I may have superior solubility, storage stability, and production stability compared to the compound of Formula 1, the amorphous compound of Formula 1, or any other crystalline form of Formula 1.
- Example 1 is a graph of XRPD results of Example 1.
- Example 2 is a graph of the DSC results of Example 1.
- Example 3 is a graph of TGA results of Example 1.
- Example 4 is a DVS result graph of Example 1.
- the title compound was obtained through the following steps A, B, C, D and E.
- Step A Preparation of 1-(tert-butyl) 2-methyl (2S,4S)-4-azidopyrrolidine-1,2-dicarboxylate
- Step B Preparation of 1-(tert-butyl) 2-methyl (2S,4S)-4-aminopyrrolidine-1,2-dicarboxylate
- Step C Preparation of 1-(tert-butyl) 2-methyl (2S,4S)-4-(((1s,4R)-4-methylcyclohexyl)amino)pyrrolidine-1,2-dicarboxylate
- Step D 1-(tert-butyl) 2-methyl (2S,4S)-4-(N-((1s,4R)-4-methylcyclohexyl)isobutyramido)pyrrolidine-1,2 -Preparation of dicarboxylate
- Step E Preparation of methyl (2S,4S)-4-(N-((1s,4R)-4-methylcyclohexyl)isobutyramido)pyrrolidine-2-carboxylate hydrochloride salt
- Step A Methyl (2S,4S)-1-((3S,4R)-1-(tert-butyl)-4-(4-chlorophenyl)pyrrolidine-3-carbonyl)-4-(N- Preparation of ((1s,4R)-4-methylcyclohexyl)isobutyramido)pyrrolidine-2-carboxylate
- Step B (2S,4S)-1-((3S,4R)-1-(tert-butyl)-4-(4-chlorophenyl)pyrrolidine-3-carbonyl)-4-(N-( Preparation of (1s,4R)-4-methylcyclohexyl)isobutyramido)pyrrolidine-2-carboxylic acid
- Step C N-((3S,5S)-1-((3S,4R)-1-(tert-butyl)-4-(4-chlorophenyl)pyrrolidine-3-carbonyl)-5-( Preparation of morpholine-4-carbonyl)pyrrolidin-3-yl)-N-((1s,4R)-4-methylcyclohexyl)isobutyramide
- reaction solution was concentrated under reduced pressure, 0.5 N sodium hydroxide aqueous solution was added, and extracted twice with ethyl acetate. The organic layer was washed twice with an aqueous sodium chloride solution and water, and then dried over anhydrous magnesium sulfate and filtered.
- Example 1 N -((3 S ,5 S )-1-((3 S ,4 R )-One-( tert -Butyl)-4-(4-chlorophenyl)pyrrolidine-3-carbonyl)-5-(morpholine-4-carbonyl)pyrrolidin-3-yl)- N -((One s ,4 R Preparation of crystalline Form I of )-4-methylcyclohexyl)isobutyramide
- the powder XRPD diffraction pattern was obtained by the following method using a PANalytical X'Pert Pro MPD system equipped with a monochromatized radiation source and Ni filter as a solid-state detector.
- Form I according to the present invention was confirmed to be a crystalline material, and specific values of XRPD are shown in Table 1 below.
- DSC was measured using a Mettler Toledo DSC1 system. Weigh about 2-5 mg of sample, put it in 40 ⁇ L Al crucible (flat-bottomed aluminum pan with one pin-hole lid), and make one pin hole. Thereafter, the sample is heated from 25° C. to 350° C. at a rate of 10° C./min and DSC is measured. During measurement, nitrogen gas is supplied to the inside of the instrument at a rate of 70 mL/min to prevent the inflow of oxygen and other gases. Data collection and evaluation were performed using the software STARe.
- the DSC measurement results of the obtained crystalline Form I are shown in FIG. 2 .
- TGA was measured using a Mettler Toledo TGA/DSC 1 module. Weigh about 4-8 mg of sample and put it in 100 ⁇ L Al crucible (flat-bottomed aluminum crucibles). Thereafter, the sample is heated from 30° C. to 350° C. at a rate of 10° C./min to measure TGA. During measurement, nitrogen gas is supplied to the inside of the instrument at a rate of 80 mL/min to prevent the inflow of oxygen and other gases. Data collection and evaluation were performed using the software STARe.
- crystalline Form I was confirmed to be an anhydrous material because no weight loss was observed before degradation.
- a melting endotherm was observed at an onset temperature of 159.14 °C, which was confirmed to be a thermally stable compound up to 270 °C.
- the temperature value has an error of ⁇ 5°C.
- DVS was measured using an automated gravimetric vapor sorption analyzer equipped with Cahn D200 ultra-microbalance (DVS Intrinsic apparatus, Surface Measurement System Ltd., UK).
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Abstract
Description
No. | 2θ | 상대적 세기(I/I0) |
1 | 8.240(1) | 2378.6 |
2 | 9.363(4) | 691.67 |
3 | 10.2693(9) | 8258.95 |
4 | 10.5969(3) | 17681.64 |
5 | 12.050(1) | 2171.47 |
6 | 12.841(2) | 910.02 |
7 | 13.503(1) | 2642.54 |
8 | 15.5738(5) | 5910.6 |
9 | 16.6030(4) | 17736.26 |
10 | 17.009(1) | 2765.51 |
11 | 17.305(1) | 3259.05 |
12 | 18.364(3) | 6716.52 |
13 | 18.7390(9) | 11489.96 |
14 | 19.188(2) | 4620.77 |
15 | 19.476(2) | 6069.47 |
16 | 20.001(1) | 5035.57 |
17 | 20.477(4) | 6706.17 |
18 | 20.665(3) | 5373.26 |
19 | 21.348(4) | 629.5 |
20 | 21.976(8) | 744.35 |
21 | 22.580(1) | 5442.07 |
22 | 23.896(2) | 2730.82 |
23 | 4.334(5) | 987.02 |
24 | 24.812(4) | 1542.63 |
25 | 25.243(5) | 842.63 |
26 | 25.833(2) | 1609.15 |
27 | 26.646(4) | 610.26 |
28 | 27.82(2) | 844.2 |
29 | 28.316(4) | 3762.58 |
30 | 28.609(6) | 2160.48 |
31 | 29.692(6) | 1035.46 |
32 | 30.185(2) | 2752.42 |
33 | 30.875(3) | 1162.08 |
칼럼 | YMC-Triart C18(250 mm x 4.6 mm/ 5-5μm/ 12 nm | |
주입 부피 | 10 μL | |
유속 | 1.0 mL/min | |
칼럼 온도 | 30℃ | |
검출 파장 | UV 220 nm | |
시료 농도 | 1.0 mg/mL | |
이동상 A | MeCN/MeOH/H2O/TFA(Trifluoroacetic acid) = 430/50/520/1 (%, v/v) | |
이동상 B | MeCN/MeOH/H2O/TFA(Trifluoroacetic acid) = 800/50/150/1 (%, v/v) | |
총 러닝 타임 | 70 분 | |
Gradient 시스템 | ||
시간(분) | 이동상 A (%) | 이동상 B (%) |
0 | 100 | 0 |
35 | 100 | 0 |
55 | 0 | 100 |
57 | 100 | 0 |
70 | 100 | 0 |
Time | 실시예 1 | |
가속조건(40℃/75%RH) | 가혹조건(80℃) | |
Initial | 97.8 | |
Day 3 | 97.51 | 97.46 |
Week 1 | 96.64 | 97.34 |
Week 2 | 97.73 | 96.94 |
Week 4 | 97.47 | 96.47 |
Claims (13)
- 하기 화학식 1의 화합물, 이의 약학적으로 허용 가능한 염 또는 이의 용매화물의 결정형 I로서,X선 분말 회절 패턴(XRPD)에서 하기 회절각 (2θ 값): 8.240±0.2°, 9.363±0.2°, 10.2693±0.2°, 10.5969±0.2°, 12.050±0.2°, 12.841±0.2°, 13.503±0.2°, 15.5738±0.2°, 16.6030±0.2°, 17.009±0.2°, 17.305±0.2°, 18.364±0.2°, 18.7390±0.2°, 19.188±0.2°, 19.476±0.2°, 20.001±0.2°, 20.477±0.2°, 20.665±0.2°, 21.348±0.2°, 21.976±0.2°, 22.580±0.2°, 23.896±0.2°, 4.334±0.2°, 24.812±0.2°, 25.243±0.2°, 25.833±0.2°, 26.646±0.2°, 27.82±0.2°, 28.316±0.2°, 28.609±0.2°, 29.692±0.2°, 30.185±0.2°및 30.875±0.2°중에서 선택되는 3개 이상의 특징적인 피크를 갖는 것인, 결정형 I.[화학식 1]상기 화학식 1에서,R1은 C2-C5 알킬이다.
- 청구항 1에 있어서,상기 R1은 C2 내지 C4 알킬인, 결정형 I.
- 청구항 2에 있어서,상기 화학식 1의 화합물이 N-((3S,5S)-1-((3S,4R)-1-(tert-뷰틸)-4-(4-클로로페닐)피롤리딘-3-카보닐)-5-(모르폴린-4-카보닐)피롤리딘-3-일)-N-((1s,4R)-4-메틸사이클로헥실)아이소뷰티르아마이드인, 결정형 I.
- 청구항 1에 있어서,상기 약학적으로 허용 가능한 염은 염산염, 황산염, 질산염, 인산염, 브롬화수소산염 및 요오드화수소산염으로 이루어지는 그룹으로부터 선택되는 것인, 결정형 I.
- 청구항 1 내지 청구항 4 중 어느 한 항에 기재된 결정형 I의 제조 방법으로서,결정화 용매에 상기 화학식 1의 화합물을 용해시켜 혼합 용액을 제조하는 단계, 및상기 혼합 용액으로부터 결정을 수득하는 단계를 포함하는, 결정형 I의 제조 방법.
- 청구항 5에 있어서,상기 결정화 용매는 유기 용매를 포함하는 것인, 결정형 I의 제조 방법.
- 청구항 6에 있어서,상기 유기 용매는 디에틸에테르, 디프로필에테르, 디부틸에테르, 디이소아밀에테르, 에틸메틸에테르, 메틸프로필에테르, 메틸부틸에테르, 에틸프로필에테르, 테트라히드로푸란, 테트라히드로피란, 디페닐에테르, 아니솔, 디메틸아세트아미드, 메틸이소부틸케톤, 이소프로필아세테이트, 1-펜틸알코올, 톨루엔 또는 이들의 혼합물을 포함하는 것인, 결정형 I의 제조 방법.
- 청구항 7에 있어서,상기 유기 용매는 메틸터셔리부틸에테르를 포함하는 것인, 결정형 I의 제조 방법.
- 청구항 5에 있어서,상기 결정을 수득하는 단계는,상기 혼합 용액을 냉각하는 것, 교반하는 것 및 여과하는 것 중 적어도 하나를 포함하는 것인, 결정형 I의 제조 방법.
- 청구항 9에 있어서,상기 결정을 수득하는 단계는,상기 혼합 용액을 0 내지 10℃의 온도로 냉각하는 것을 포함하는 것인, 결정형 I의 제조 방법.
- 청구항 1 내지 청구항 4 중 어느 한 항에 따른 결정형 I, 및 약학적으로 허용 가능한 담체를 포함하는 약학적 조성물.
- 청구항 1 내지 청구항 4 중 어느 한 항에 따른 결정형 I 및 약학적으로 허용 가능한 담체를 포함하는, 멜라노코르틴-4 수용체 기능 항진용 약학적 조성물.
- 청구항 12에 있어서, 상기 조성물은 비만, 당뇨, 염증 또는 발기부전의 예방 또는 치료용인 것인, 약학적 조성물.
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EP4317149A4 (en) * | 2021-05-06 | 2024-08-21 | Lg Chemical Ltd | CRYSTALLINE FORM V OF A MELANOCORTIN RECEPTOR AGONIST COMPOUND AND METHOD FOR THE PREPARATION THEREOF |
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