WO2008063128A1 - The use of pregnane and androstane steroids for the manufacture of a pharmaceutical composition for the treatment of cns disorders - Google Patents
The use of pregnane and androstane steroids for the manufacture of a pharmaceutical composition for the treatment of cns disorders Download PDFInfo
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- WO2008063128A1 WO2008063128A1 PCT/SE2007/050876 SE2007050876W WO2008063128A1 WO 2008063128 A1 WO2008063128 A1 WO 2008063128A1 SE 2007050876 W SE2007050876 W SE 2007050876W WO 2008063128 A1 WO2008063128 A1 WO 2008063128A1
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- 0 C[C@@](*)(CC1)[C@@](C)(CCC2[C@@](C)(CC3)C(C4)C(*)(***)[C@@]3(*)IC)C1C2C4O* Chemical compound C[C@@](*)(CC1)[C@@](C)(CCC2[C@@](C)(CC3)C(C4)C(*)(***)[C@@]3(*)IC)C1C2C4O* 0.000 description 1
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- C07J1/0003—Androstane derivatives
- C07J1/0011—Androstane derivatives substituted in position 17 by a keto group
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- C07J41/0005—Normal steroids containing one or more nitrogen atoms not belonging to a hetero ring the nitrogen atom being directly linked to the cyclopenta(a)hydro phenanthrene skeleton
- C07J41/0016—Oximes
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- C07J41/0033—Normal steroids containing one or more nitrogen atoms not belonging to a hetero ring not covered by C07J41/0005
- C07J41/005—Normal steroids containing one or more nitrogen atoms not belonging to a hetero ring not covered by C07J41/0005 the 17-beta position being substituted by an uninterrupted chain of only two carbon atoms, e.g. pregnane derivatives
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- C07J5/00—Normal steroids containing carbon, hydrogen, halogen or oxygen, substituted in position 17 beta by a chain of two carbon atoms, e.g. pregnane and substituted in position 21 by only one singly bound oxygen atom, i.e. only one oxygen bound to position 21 by a single bond
- C07J5/0007—Normal steroids containing carbon, hydrogen, halogen or oxygen, substituted in position 17 beta by a chain of two carbon atoms, e.g. pregnane and substituted in position 21 by only one singly bound oxygen atom, i.e. only one oxygen bound to position 21 by a single bond not substituted in position 17 alfa
- C07J5/0015—Normal steroids containing carbon, hydrogen, halogen or oxygen, substituted in position 17 beta by a chain of two carbon atoms, e.g. pregnane and substituted in position 21 by only one singly bound oxygen atom, i.e. only one oxygen bound to position 21 by a single bond not substituted in position 17 alfa not substituted in position 16
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- C07J7/00—Normal steroids containing carbon, hydrogen, halogen or oxygen substituted in position 17 beta by a chain of two carbon atoms
- C07J7/0005—Normal steroids containing carbon, hydrogen, halogen or oxygen substituted in position 17 beta by a chain of two carbon atoms not substituted in position 21
- C07J7/001—Normal steroids containing carbon, hydrogen, halogen or oxygen substituted in position 17 beta by a chain of two carbon atoms not substituted in position 21 substituted in position 20 by a keto group
- C07J7/0015—Normal steroids containing carbon, hydrogen, halogen or oxygen substituted in position 17 beta by a chain of two carbon atoms not substituted in position 21 substituted in position 20 by a keto group not substituted in position 17 alfa
- C07J7/002—Normal steroids containing carbon, hydrogen, halogen or oxygen substituted in position 17 beta by a chain of two carbon atoms not substituted in position 21 substituted in position 20 by a keto group not substituted in position 17 alfa not substituted in position 16
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- C07J7/0005—Normal steroids containing carbon, hydrogen, halogen or oxygen substituted in position 17 beta by a chain of two carbon atoms not substituted in position 21
- C07J7/0065—Normal steroids containing carbon, hydrogen, halogen or oxygen substituted in position 17 beta by a chain of two carbon atoms not substituted in position 21 substituted in position 20 by an OH group free esterified or etherified
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- C07J7/0005—Normal steroids containing carbon, hydrogen, halogen or oxygen substituted in position 17 beta by a chain of two carbon atoms not substituted in position 21
- C07J7/0065—Normal steroids containing carbon, hydrogen, halogen or oxygen substituted in position 17 beta by a chain of two carbon atoms not substituted in position 21 substituted in position 20 by an OH group free esterified or etherified
- C07J7/007—Normal steroids containing carbon, hydrogen, halogen or oxygen substituted in position 17 beta by a chain of two carbon atoms not substituted in position 21 substituted in position 20 by an OH group free esterified or etherified not substituted in position 17 alfa
Definitions
- the present invention concerns novel steroid compounds that act on the gamma-aminobutyric acid receptor-chloride ionophore (GABA A -R) complex, and which can be used in the treatment of GABA and GABA-steroid related and/or steroid induced disorders of the central nervous system (CNS).
- GABA A -R gamma-aminobutyric acid receptor-chloride ionophore
- the metabolites of progesterone, desoxycorticosterone, testosterone, androstenedione corti- sone and Cortisol known as androstanolones and pregnanolones have been the subject of various studies, at least partially elucidating their role in the neurological signal system in mammals.
- the nomenclature differs in the field and therefore the IUPAC nomenclature will be used throughout this application.
- the steroids inducing CNS symptoms and disorders of interest in the present application all share a common feature in comprising a 3 ⁇ -hydroxy group, a 5 ⁇ or 5 ⁇ pregnane steroid body, and a ketone on position 20. Examples of such steroids are given in table 1 :
- WO 99/45931 discloses the antagonistic effect of one steroid, namely 3 ⁇ -OH-5 ⁇ -pregnan-20-one, but is silent about the steroids described in this application.
- WO 03/059357 discloses several 3bets-hydroxy steroids and their antago- nistic effect on the GABA-A receptor but is silent about the steroids described in this application.
- the present invention relates to the field of medicinal chemistry and is intended for producing compounds and compositions useful for modulation of the mammal brain excitability via the gamma-aminobutyric acid receptor-chloride ionophore (GABA A -R) complex and other neurotransmitter systems which are, directly or indirectly, correlated to the GABA A -R complex.
- GABA A -R gamma-aminobutyric acid receptor-chloride ionophore
- the steroids comprising the components 3 ⁇ -hydroxy-5 ⁇ / ⁇ -pregnan-20-one have been shown to be specific GABA-A ⁇ gamma-aminobutyric acid (A) ⁇ receptor enhancers.
- these naturally occurring stress- and sex steroids also have adverse effects and cause certain disor- ders.
- the adverse effects of the 3 ⁇ -hydroxy-pregnan-20-one-steroids are the basis for the negative CNS effects induced by these steroids.
- Examples of the adversive compounds are 3 ⁇ -hydroxy-5 ⁇ / ⁇ -pregnanolone steroids listed in table 1. Some of these steroids are very po- tent and have e.g. been shown to have an ability to induce anesthesia at a high pharmacological dose.
- 3 ⁇ -hydroxy-pregnane-steroids are endogenously produced and are metabolites of steroid hormones essential for life, their production cannot easily be interrupted. These ster- oids are produced in high amounts during several days to weeks during acute and chronic stress, the luteal phase of the menstrual cycle and during pregnancy. They are also produced within the brain. Specific blockers are therefore needed as therapy.
- the direct mechanism at the receptor site has not yet been fully elucidated, due to the structural complexity of the GABA A -R complex.
- the GABA receptor family includes several sub- unit compositions, of which some are known to be related to specific functions and disorders in the CNS.
- One aim of the present invention is thus to find new compounds that are useful in the treatment of anomaly in the excitability of GABA receptors or other neurotransmitters related to GABA receptors, in a manner which can be general or specific for some subunit compositions and functions.
- Disorders that are caused by the action of endogenously produced 3 ⁇ -hydroxy-5 ⁇ steroids or 3 ⁇ -hydroxy-5 ⁇ steroids on the GABA-A receptor are well characterized and understood.
- 3 ⁇ -hydroxy-5 ⁇ / ⁇ -steroids can directly cause inhibition of CNS functions.
- disorders and symptoms caused by the direct action of 3 ⁇ -hydroxy-5 ⁇ / ⁇ -steroids are premenstrual dysphoric disorder, premenstrual syndrome, dementia, Alzheimer's disease, sedation, tiredness, chronic fatigue syndrome, memory disturbance, learning disturbance, disturbance of motor function, fractures, clumsiness, increased appetite and food cravings, obesity, negative mood as tension, irritability, depression, decreased hearing and eye sight, worsening of Petit MaI epilepsy, burn out syndrome.
- a continuous but shorter exposure to 3 ⁇ -hydroxy-5 ⁇ / ⁇ -steroids results in a withdrawal effect when the exposure is ended.
- This phenomenon occurs i.e. during menstruation when the production of 3 ⁇ -hydroxy-5 ⁇ / ⁇ -steroids by the corpus luteum of the ovary is interrupted.
- This withdrawal phenomenon also occurs after giving birth (post partum) when the 3 ⁇ -hydroxy- 5 ⁇ / ⁇ -steroid production by the placenta is interrupted.
- the same phenomenon is also noted when a period of stress is ended.
- the adrenals have produced 3 ⁇ -hy- droxy-5 ⁇ / ⁇ -steroids. When this production is interrupted, withdrawal symptoms may occur.
- steroids are important drug candidates. Naturally occurring steroids are however subject to intense metabolism and are therefore usually not suitable for oral administration. Also in other routes of administration the metabolism is high and makes it impossible to use the compounds as medication and treatments as the active parts of the compounds are first destroyed by the metabolism.
- a second problem with steroid compounds is that they are difficult to solute in water solutions and therefore difficult to administer in vivo.
- the present inventors have synthesized new compounds that are protected against metabolism in the 3 position of the steroid. Surprisingly, these compounds also have increased water solubility, due to their modified structural features.
- the inventors do not wish to be bound to any theory, but it is assumed that the advantageous properties of the novel compounds are due to the presence of a double bond in the steroid core, and the replacement of a keto group with an oxime group at positions 20, 21 or 17 respectively in the mentioned scaffolds of pregnane, pregnene, androstane and androstene series.
- compositions within the scope of this invention include all compositions wherein the compounds of this invention are contained in an amount that is effective to achieve the intended purposes.
- the invention concerns new compounds, with protection against metabolism and with in- creased water solubility, and methods of producing such compounds with antagonistic and blocking effects of the 3 ⁇ -hydroxy-pregna(e)n-steroid induced CNS disorders.
- the present invention is based on the discovery that steroids represented by the formulae I or II have an effect as modulators of the GABA receptor signaling as agonists, antagonists or inverse agonists.
- the inventors have shown that the presence of a tertiary alcohol moiety in position 3 prolongs the half- life of a steroidal compound within the body through preventing metabolic oxidations or degradation in the body.
- the presence of a hydrogen-bond acceptor/donator group bonded to the D ring of a steroidal molecule influences the ability of the steroid to modulate the GABA receptor signaling.
- the present invention relates to novel steroids represented by the formulae I or II, and pharmaceutically acceptable derivatives, salts, prodrugs or solvates thereof:
- Ri is chosen among an ethynyl, ethenyl, ethyl, or other saturated or unsaturated alkyl groups; hydroxyl, in its free form or combined with carboxylic acid residues, sugars, alkyl groups to form esters or ether or glycosylated compounds; fluorine or other halogens; a proton;
- R 2 is chosen among an ethynyl, ethenyl, ethyl, or other saturated or unsaturated alkyl groups; hydroxyl, in its free form or combined with carboxylic acid residues, sugars, alkyl groups to form esters or ether or glycosylated compounds; fluorine or other halogens; a proton;
- R 3 is 5 ⁇ - or 5 ⁇ -H
- R 4 is a nitro, hydroxyl, free or bonded with an ester, ether, sugar
- R 5 is a proton
- the compounds are steroids represented by the above formulae I or II, and pharmaceutically acceptable derivatives, salts, prodrugs or solvates thereof, wherein
- R 6 is a methyl, an alkyl group or -CH 2 OR where R is H, a carboxylic acid residue, an alkyl group or a sugar; -CH 2 X where X is fluorine or another halogen;
- R 7 Rio is OH, CH3 or H at the seven position.
- R 9 or Rn, R12 represent two Me- groups, or Me- and H, respectively, or two -H.
- Rio is OH or CH 3 at the seven position.
- an unsaturation can be present between C4-C5 or C5-C6 or at other positions in the molecule.
- Rs, R 9 or Rn, Ri 2 represent two Me- groups, or Me- and H, respectively, or two -H, or if said unsaturation is between C4-C5, then one of Rs, R 9 or Rn, R12, respectively, is Me- or H while the other one is absent.
- the compounds of formula I and II may exist as optical isomers; consequently the invention includes all individual isomers that may be separated by common chromatographic techniques as well as other known separation methods known by those skilled in the art.
- the present invention also encompasses all functionally equivalent derivatives and prodrugs where esters and ethers have been added to the hydroxyl groups of the steroids.
- suitable derivatives include, but are not limited to, sulphates, formates, acetates, propionates, glycosilations with sugars or oligosaccarides, methylates, ethylates.
- sulphates formates
- acetates propionates
- glycosilations with sugars or oligosaccarides methylates
- ethylates One skilled in the art can recognize that other functional groups not included in this list of examples can be employed.
- Tables 2 and 3 show examples of the structure of a series of compounds according to the invention, were the 3 -hydroxy position of the pregnane, pregnene, androstane or androstene steroid structure is protected against metabolism in 3-position with an ethynyl, ethenyl or acetate structure added to the steroid molecule or the hydroxyl group replaced with a fluorine atom.
- Table 4 examples of structures of a series of compounds where the water solubility is increased relative to the 5 -saturated compound (UC2024) and where the water solubility is increased by adding an oxime group relative to a keto group or simple hydroxy group (UC2027, UC2029).
- Solvents used for eluent are of HPLC grade, water filtered through a Millipore apparatus; all solvents were filtered through a 0,45 ⁇ m Millipore filter and degassed by N 2 stream prior use.
- the present inventors have surprisingly found that the reaction of the ethynyl Grignard re- agent with 3, 20/17 diketone steroids is in the most cases selective for the position 3 and no protection/deprotection for the other ketone functionality was required. Both ⁇ and ⁇ isomers are formed, which can be separated by chromatographic methods and recrystallization.
- the starting materials for the compounds described in the present invention are the corresponding steroids with a 3-hydroxyl substituent and a keto group in positions 20 or 17. They can be converted into the respective diones by oxidation with IBX reagent. The reaction proceeds smoothly and with complete conversion. Other suitable steroids can be employed as starting material when required. The reactions are carried out in a suitable solvent such as methanol, ethanol, water, THF, diethyl ether, dichloromethane or other solvents or mixture of solvents that one skilled in the art can recognize as suitable.
- a suitable solvent such as methanol, ethanol, water, THF, diethyl ether, dichloromethane or other solvents or mixture of solvents that one skilled in the art can recognize as suitable.
- the reactants are chosen in order to avoid, when possible, use of reactants, such as heavy metals, which are toxic even in traces or are difficult to be completely removed in the workup procedure.
- Reactions involving air or moisture sensitive reagents or products are carried out under inert atmosphere, such as nitrogen or argon gas, in the presence of dry solvents. Diethyl ether and tetrahydrofuran are dried over Na in the presence of benzophenone. Syringes purged with inert gas were used for the transfer of reagents and dry solvents. Optimized reaction conditions, such as time and temperature, were determined by monitoring the formation of products and the loss of starting material using a suitable chromatographic technique such as TLC or GC/MS.
- Purifications are carried out by using chromatographic techniques such as flash silica chro- matography or preparative high performance liquid chromatography (HPLC) by using a HPLC apparatus.
- chromatographic techniques such as flash silica chro- matography or preparative high performance liquid chromatography (HPLC) by using a HPLC apparatus.
- HPLC high performance liquid chromatography
- Identification of the products is carried out by using suitable analytical techniques such as IH- NMR, 13 C-NMR, mass spectrometry, IR spectroscopy and any other assay that one skilled in the art would recognize as suitable for structural identification and purity determination of the compounds in the present invention.
- suitable analytical techniques such as IH- NMR, 13 C-NMR, mass spectrometry, IR spectroscopy and any other assay that one skilled in the art would recognize as suitable for structural identification and purity determination of the compounds in the present invention.
- the compounds according to the invention have inter alia the advantage of being both protected against metabolism, and more easily water soluble.
- the method of synthesis has the advantage of consisting of steps known as such, and is comparatively easy - once disclosed - to use.
- the white solid was purified by silica flash column chromatography (1:4 diethyl ether : di- chloromethane), Quantitative overall yield.
- the product with (Reconfiguration at 20-C is the main product (90 %), as determined by NMR measurements.
- Example 4 UC2024 - 3$-ethynyl, 3a-hydroxyl, A-4-presnen-20-one
- Example 5 UC2026 - 3 ⁇ -ethynyl, 3 ⁇ -hvdroxyl, 5oc-pregnan-20-one oxime 3 ⁇ -ethynyl, 3 ⁇ -hydroxyl, 5 ⁇ -pregnan-20-one
- 3,20-5 ⁇ -pregnandione (1.580 g, 5.0 mmol) was dissolved in 50 mL dry THF at rt under nitrogen.
- Ethynyl magnesium bromide (1.1 equiv) was added dropwise at rt under stirring and the solution was left stirring overnight at rt under nitrogen flow.
- the yellowish solution was then quenched with saturated NH 4 Cl(aq) and the aqueous phase extracted with dichloromethane (3 x 30 mL).
- the collected organic phases were evaporated under reduced pressure, the resulting yellow oil dissolved in dichloromethane, washed with brine and dried over MgSO 4 .
- 3 ⁇ -ethynyl, 3 ⁇ -hydroxyl, 5 ⁇ -pregnan-20-one (10 mmol) is dissolved in dichloro methane 5 mL and ethanol 50 mL at rt and air atmosphere, in a 250 mL round bottom flask.
- 4 equiv. of NH 2 OH chlorhydrate and 4 equiv. of sodium acetate are dissolved in 5 mL H 2 O and then added to the steroid solution.
- 20 mL of ethanol are added and the mixture put on reflux over- night. The mixture is then cooled and the solvent removed under reduced pressure.
- the white residue is then treated with 50 mL H 2 O and 50 mL dichloro methane, the aqueous phase extracted with 3 x 30 mL dichloromethane.
- the collected organic phases are then dried over MgSO 4 , filtrated and the solvent removed under reduced pressure.
- the final residue is purified by silica flash column chromatography dichloromethane : diethyl ether 4:1, typical yields 95-100 %.
- 3 ⁇ -ethynyl, 3 ⁇ -hydroxyl, ⁇ 4-pregnen-20-one (10 mmol) is dissolved in dichloromethane 5 mL and ethanol 50 mL at rt and air atmosphere, in a 250 mL round bottom flask.
- 4 equiv. of NH 2 OH chlorhydrate and 4 equiv. of sodium acetate are dissolved in 5 mL H 2 O and then added to the steroid solution. 20 mL of ethanol are added and the mixture put on reflux overnight. The mixture is then cooled and the solvent removed under reduced pressure.
- the white residue is then treated with 50 mL H 2 O and 50 mL dichloromethane, the aqueous phase ex- tracted with 3 x 30 mL dichloromethane.
- the collected organic phases are then dried over MgSO 4 , filtrated and the solvent removed under reduced pressure.
- the final residue is purified by silica flash column chromatography dichloromethane : diethyl ether 4:1, typical yields 85 %.
- Example 7 UC2030 - 3oc-fluor, 5oc-pregnan-20-one oxime 3 ⁇ -fluor, 5 ⁇ -pregnan-20-one
- 3 ⁇ -fluor, 5 ⁇ -pregnan-20-one (10 mmol) is dissolved in dichloromethane 5 mL and ethanol 50 mL at rt and air atmosphere, in a 250 mL round bottom flask.
- 4 equiv. Of NH 2 OH chlorhy- drate and 4 equiv. of sodium acetate are dissolved in 5 mL H 2 O and then added to the steroid solution. 20 mL of ethanol are added and the mixture put on reflux overnight. The mixture is then cooled and the solvent removed under reduced pressure.
- the white residue is then treated with 50 mL H 2 O and 50 mL dichloromethane, the aqueous phase extracted with 3 x 30 mL dichloromethane.
- Example 8 UC2034 - 3 ⁇ -fluor, 5oc-pregnan-20-one oxime was obtained by using the same synthetic protocol as Example 7 for UC2030 starting from the corresponding 3 ⁇ -fluor, 5 ⁇ -pregnan-20-one isomer.
- Example 9 UC2032 - 3-dimethyl, ⁇ 5-pregnen-3 ⁇ ,20(R)-diol 3-dimethyl, ⁇ 5-pregnen-3,20-dione
- progesterone 525 mg progesterone are dissolved in 10 mL dry toluene at rt.
- 3.4 mL (2 equiv.) of a 1.0 M solution of sodium t-buthylate in dry toluene is added dropwise to the progesterone solution, under stirring and N 2 atmosphere.
- the yellowish solution is let stirring in 20 min. 2 equiv. of MeI are then added dropwise to the mixture, which is stirred overnight at rt under N 2 .
- the mixture is quenched with 10 mL water and 10 mL dichloromethane, the aqueous phase extracted with 2 x 30 mL dichloromethane.
- Example 10 UC2021 - 3 ⁇ -ethynyl, 3oc-hvdroxyl, androstan-17-one 3 ⁇ -ethynyl, 3 ⁇ -hydroxyl, androstan-17-one
- Example 11 UC2025 - 3 ⁇ -ethynyl, 3oc-hvdroxyl, androstan-17-one oxime 3 ⁇ -ethynyl, 3 ⁇ -hydroxyl, androstan-17-one (10 mmol) is dissolved in dichloromethane 5 mL and ethanol 50 mL at rt and air atmosphere, in a 250 mL round bottom flask. 4 equiv. of NH 2 OH chlorhydrate and 4 equiv. of sodium acetate are dissolved in 5 mL H 2 O and then added to the steroid solution. 20 mL of ethanol are added and the mixture put on reflux overnight. The mixture is then cooled and the solvent removed under reduced pressure.
- the white residue is then treated with 50 mL H 2 O and 50 mL dichloromethane, the aqueous phase extracted with 3 x 30 mL dichloromethane.
- the collected organic phases are then dried over MgSO 4 , filtrated and the solvent removed under reduced pressure.
- the final residue is purified by silica flash column chromatography dichloromethane : diethyl ether 4:1, typical yields 95-100 % (quantitative).
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Abstract
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Priority Applications (12)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
MX2009005335A MX2009005335A (en) | 2006-11-21 | 2007-11-20 | The use of pregnane and androstane steroids for the manufacture of a pharmaceutical composition for the treatment of cns disorders. |
BR122013033954A BR122013033954B8 (en) | 2006-11-21 | 2007-11-20 | new steroids exhibiting water solubility and resistance against increased metabolism, and methods for their production |
EP07835459.4A EP2097437B1 (en) | 2006-11-21 | 2007-11-20 | The use of pregnane and androstane steroids for the manufacture of a pharmaceutical composition for the treatment of cns disorders |
JP2009537124A JP5386362B2 (en) | 2006-11-21 | 2007-11-20 | Use of pregnane and androstane steroids for the manufacture of pharmaceutical compositions for the treatment of CNS diseases |
AU2007322423A AU2007322423C1 (en) | 2006-11-21 | 2007-11-20 | The use of pregnane and androstane steroids for the manufacture of a pharmaceutical composition for the treatment of CNS disorders |
SI200731681T SI2097437T1 (en) | 2006-11-21 | 2007-11-20 | The use of pregnane and androstane steroids for the manufacture of a pharmaceutical composition for the treatment of cns disorders |
DK07835459.4T DK2097437T3 (en) | 2006-11-21 | 2007-11-20 | THE USE OF PREGNANCY AND ANDROSTANOSTEROIDS FOR THE PREPARATION OF A PHARMACEUTICAL COMPOSITION FOR THE TREATMENT OF CNS DISEASES |
CA2664126A CA2664126C (en) | 2006-11-21 | 2007-11-20 | The use of pregnane and androstane steroids for the manufacture of a pharmaceutical composition for the treatment of cns disorders |
IN2014DEN2014 IN2014DN02014A (en) | 2006-11-21 | 2007-11-20 | |
BRPI0718945A BRPI0718945B8 (en) | 2006-11-21 | 2007-11-20 | new steroids exhibiting water solubility and resistance against increased metabolism, and methods for their production |
PL07835459T PL2097437T3 (en) | 2006-11-21 | 2007-11-20 | The use of pregnane and androstane steroids for the manufacture of a pharmaceutical composition for the treatment of cns disorders |
ES07835459.4T ES2543841T3 (en) | 2006-11-21 | 2007-11-20 | The use of pregnan and androstane steroids in the manufacture of a pharmaceutical composition for the treatment of CNS disorders |
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Application Number | Priority Date | Filing Date | Title |
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US86065806P | 2006-11-21 | 2006-11-21 | |
US60/860,658 | 2006-11-21 |
Publications (1)
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WO2008063128A1 true WO2008063128A1 (en) | 2008-05-29 |
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PCT/SE2007/050876 WO2008063128A1 (en) | 2006-11-21 | 2007-11-20 | The use of pregnane and androstane steroids for the manufacture of a pharmaceutical composition for the treatment of cns disorders |
Country Status (16)
Country | Link |
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US (9) | US8580983B2 (en) |
EP (4) | EP2792681B1 (en) |
JP (5) | JP5386362B2 (en) |
AU (1) | AU2007322423C1 (en) |
BR (2) | BRPI0718945B8 (en) |
CA (2) | CA2664126C (en) |
DK (3) | DK2097437T3 (en) |
ES (3) | ES2662500T3 (en) |
HU (3) | HUE026961T2 (en) |
IN (1) | IN2014DN02014A (en) |
MX (1) | MX2009005335A (en) |
PL (3) | PL2792681T3 (en) |
PT (1) | PT2097437E (en) |
RU (1) | RU2458065C2 (en) |
SI (1) | SI2097437T1 (en) |
WO (1) | WO2008063128A1 (en) |
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DK2097437T3 (en) * | 2006-11-21 | 2015-06-29 | Umecrine Cognition Ab | THE USE OF PREGNANCY AND ANDROSTANOSTEROIDS FOR THE PREPARATION OF A PHARMACEUTICAL COMPOSITION FOR THE TREATMENT OF CNS DISEASES |
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2007
- 2007-11-20 DK DK07835459.4T patent/DK2097437T3/en active
- 2007-11-20 US US11/943,555 patent/US8580983B2/en not_active Expired - Fee Related
- 2007-11-20 DK DK13198584.8T patent/DK2711371T3/en active
- 2007-11-20 JP JP2009537124A patent/JP5386362B2/en not_active Expired - Fee Related
- 2007-11-20 AU AU2007322423A patent/AU2007322423C1/en active Active
- 2007-11-20 BR BRPI0718945A patent/BRPI0718945B8/en active IP Right Grant
- 2007-11-20 PL PL14154304T patent/PL2792681T3/en unknown
- 2007-11-20 PT PT78354594T patent/PT2097437E/en unknown
- 2007-11-20 PL PL07835459T patent/PL2097437T3/en unknown
- 2007-11-20 HU HUE07835459A patent/HUE026961T2/en unknown
- 2007-11-20 DK DK14154304.1T patent/DK2792681T3/en active
- 2007-11-20 HU HUE14154304A patent/HUE033037T2/en unknown
- 2007-11-20 RU RU2009107537/04A patent/RU2458065C2/en active
- 2007-11-20 CA CA2664126A patent/CA2664126C/en active Active
- 2007-11-20 ES ES13198584.8T patent/ES2662500T3/en active Active
- 2007-11-20 EP EP14154304.1A patent/EP2792681B1/en not_active Not-in-force
- 2007-11-20 EP EP07835459.4A patent/EP2097437B1/en active Active
- 2007-11-20 CA CA2833976A patent/CA2833976C/en active Active
- 2007-11-20 EP EP13198584.8A patent/EP2711371B1/en not_active Not-in-force
- 2007-11-20 IN IN2014DEN2014 patent/IN2014DN02014A/en unknown
- 2007-11-20 ES ES14154304.1T patent/ES2607852T3/en active Active
- 2007-11-20 EP EP13198608.5A patent/EP2711372A1/en not_active Withdrawn
- 2007-11-20 SI SI200731681T patent/SI2097437T1/en unknown
- 2007-11-20 MX MX2009005335A patent/MX2009005335A/en active IP Right Grant
- 2007-11-20 WO PCT/SE2007/050876 patent/WO2008063128A1/en active Application Filing
- 2007-11-20 PL PL13198584T patent/PL2711371T3/en unknown
- 2007-11-20 HU HUE13198584A patent/HUE036410T2/en unknown
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2012
- 2012-12-17 US US13/716,984 patent/US20130102579A1/en not_active Abandoned
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- 2013-05-07 JP JP2013097485A patent/JP2013173781A/en active Pending
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2015
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Cited By (40)
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WO2009142594A1 (en) * | 2008-05-20 | 2009-11-26 | Umecrine Ab | The use of 3beta-ethenyl, methyl, 3alpha-hydroxy-steroids for the treatment of cns disorders |
US9687496B2 (en) | 2010-01-14 | 2017-06-27 | Asarina Pharma Ab | Pharmaceutical composition comprising 3-beta-hydroxy-5-alpha-pregnan-20-one with improved storage and solubility properties |
US11534446B2 (en) | 2010-01-14 | 2022-12-27 | Asarina Pharma Ab | Pharmaceutical composition comprising 3-beta-hydroxy-5-alpha-pregnan-20-one with improved storage and solubility properties |
WO2011138460A1 (en) * | 2010-05-07 | 2011-11-10 | Institut National De La Sante Et De La Recherche Medicale (Inserm) | Progesterone receptor antagonists and uses thereof |
US11905309B2 (en) | 2013-03-13 | 2024-02-20 | Sage Therapeutics, Inc. | Neuroactive steroids and methods of use thereof |
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JP2018501290A (en) * | 2015-01-12 | 2018-01-18 | ウメクライン コグニション アーベー | 3α-ethynyl, 3β-hydroxy, 5α-pregnane-20-oxime for use in the treatment of CNS diseases |
US10351589B2 (en) | 2015-01-12 | 2019-07-16 | Umecrine Cognition Ab | 3.alpha.-ethynyl, 3.beta.-hydroxy-5.alpha.-pregnan-20-oxime for use in the treatment of CNS disorders |
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KR20170097673A (en) * | 2015-01-12 | 2017-08-28 | 유메크린 코그니션 에이비 | 3.alpha.-ethynyl, 3.beta.-hydroxy-5.alpha.-pregnan-20-oxime for use in the treatment of cns disorders |
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