Nova Patents
EP0345068A2

Agonist of gamma-aminobutyric acid.

Abstract

The invention concerns a method for treating depression or senile dementia using a compound which acts selectively as an agonist of gamma aminobutyric acid (GABA) at GABA autoreceptors with the proviso that the compound is not fengabine and progabide.

EP0345068A2, drawing sheet 1
Sheet 1 of 31

Term

Term ended

Projected expiry passed 2 June 2009, 17.3 years ago.

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14 claims: 8 independent, 6 dependent

  1. 1
    A compound characterised in that it acts selectively as an agonist of gamma aminobutyric acid (GABA) at GABA autoreceptors for use as an antidepressant or in treating senile dementia with the proviso that the compound is not fengabine or progabide. 1. A process for preparing a pharmaceutical composition which comprises mixing a compound characterised in that it acts selectively as an agonist of gamma aminobutyric acid (GABA) at GABA autoreceptors and a pharmaceuticalloy acceptable carrier with the proviso that the compound is not fengabine or progabide.
  2. 2
    Use of a compound which acts selectively as an agonist of GABA at GABA autoreceptors in the preparation of a medicament for the treatment of depression or senile dementia with the proviso that the compound is not fengabine or progabide. 2. Use of a compound which acts selectively as an agonist of GABA at GABA autoreceptors in the preparation of a medicament for the treatment of depression or senile dementia with the proviso that the compound is not fengabine or progabide.
  3. 3
    A pharmaceutical composition comprising a compound characterised in that it acts selectively as an agonist of GABA at GABA autoreceptors and a pharmaceutically acceptable carrier providing that the compound is not fengabine or progabide. 3. A process or use according to Claim 1 or Claim 2 in which the selectivity for the GABA autoreceptor relative to the GABAA receptor is greater than or equal to 100.
  4. 4
    A compound, use or composition according to any one of Claims 1-3 in which the selectivity for the GABA autoreceptor relative to the GABAA receptor is greater than or equal to 100. 4. A process or use according to any one of Claims 1 to 3 wherein the GABA autoreceptor agonist is a trisubstituted amine in which one substituent is a 3- or 4- carbon alkyl group carrying a carboxylic acid or amide functional group.
  5. 7
    A compound of formula Ia as shown and defined in Claim 6 or a pharmaceutically acceptable salt thereof providing that neither Ar-A or E is unsubstituted benzyl. 7. A process or use according to Claim 6 wherein Ar and Ar¹ when present are selected from phenyl, naphthyl, pyridinyl, furanyl, thienyl, quinolinyl and benzofuranyl which groups may be optionally substituted.
  6. 11
    A compound, use or composition according any one of Claims 6 to 10 wherein A and A¹ when present are independently selected from -CHR³-where R³ is hydrogen, lower alkyl or optionally substituted aryl as defined for Ar. 11. A process for preparing a compound of formula I or a salt thereof, wherein Ar, A, E, and B are as defined in any one of Claims 5-9 and D is D¹ as defined in Claim 5 or D is CN, COhal, CH₂OH, CHO or an ester function COOR providing that (i) neither Ar-A- or E is unsubsitututed benzyl and (ii) when B is -(CH₂)₄- and D is CN then E is other than methyl, ethyl or p-chlorobenzyl which comprises one of the following processes:a) reacting a compound of formula II Ar-A-NH-E      (II) wherein Ar, E and A are as defined above with a compound of formula III: hal-B-CN      (III) wherein B is as defined above and hal represents chlorine or bromine, to give a compound of formula I wherein D is CN, orb) carrying out a reductive alkylation of a compound of formula II as defined above using a compound of formula IV OHC-B¹-CN      (IV) wherein B¹ is an alkylene chain of 2 or 3 carbon atoms optionally substituted by lower alkyl, in the presence of a reducing agent such as sodium cyanoborohydride to give a corresponding compound of formula I wherein D is CN and B represents -CH₂-B¹-;or(c) reducing a compound of formula (V) wherein R⁴ is alkyl of 1 to 5 carbon atoms or Ar¹-A²-;Ar, Ar¹, A and B are as defined above, D³ represents CN, COOR or COOH and A² represents a direct bond or alkylene of 1 carbon atom optionally substituted by lower alkyl and/or aryl to give a corresponding compound of formula I wherein D is CN, COOR or COOH and E is R⁴CH₂ wherein R⁴ is as defined above;or(d) reducing a compound of formula (VI) wherein Ar, A and E are as defined above, B¹ is as defined in connection with formula IV and D² represents CN, COOR or CHO to give a corresponding compound of formula I wherein B is -CH₂B¹- and D is CN, COOR or CHO, or(e) partially hydrolysing a compound of formula I wherein D is CN to give a corresponding compound of forumla I wherein D is CONH₂;or(f) hydrolysing a compound of formula I wherein D is CN or CONH₂ to give a corresponding compound of formula I wherein D is COOH;or(g) reacting a compound of formula I wherein D is COOR or COhal with ammonia or an amine of formula HNR¹R² to give a corresponding compound of formula I wherein D is -CONR¹R²;or(h) hydrolysing an ester of formula I wherein D is COOR to give a carboxylic acid of formula I wherein D is COOH;or(i) oxidising an aldehyde of formula I wherein D is CHO to give an acid of formula I wherein D is COOH;or(j) oxidising an alcohol of formula I wherein D is -CH₂OH to give an aldehyde or an acid of formula I wherein D is CHO or COOH;or(k) oxidising a compound of formula wherein Ar, A, E and B are as defined above and D³ is C≡CH, COCH₃ or CH=CH₂ to give a compound of formula I wherein D is COOH;or(l) hydrolysing a compound of formula wherein Ar, A and E are as defined above, T¹ and T² are each independently an ester function, a nitrile or an acyl group, and B¹ is an alkylene group of 2 or 3 carbon atoms optionally substituted by lower alkyl to give a corresponding compound of formula I wherein B is -B¹-CH₂- and D is COOH;or(m) esterifying an acid or acid halide of formula I wherein D is -COOH or COhal to give an ester of formula I wherein D is-COOR;or(n) halogenating an acid of formula I to give an acid halide of formula I wherein D is COhal;or(o) reducing an acid of formula I wherein D is COOH to give an alcohol of formula I wherein D is CH₂OH, or(p) acidifying a compound of formula I to give an acid addition salt thereof or neutralising an acid addition salt to give the free base form.
  7. 13
    A compound of formula I or a salt thereof, wherein Ar, A, E, and B are as defined in any one of Claims 6-11 and D is D¹ as defined in Claim 6 or D is CN, COhal, CH₂OH, CHO or an ester function COOR providing that (i) neither Ar-A- or E is unsubsitututed benzyl and(ii) when B is -(CH₂)₄- and D is CN then E is other than methyl, ethyl or p-chlorobenzyl
  8. 14
    A process for preparing a compound of formula I as defined in Claim 13 which comprises one of the following processes:a) reacting a compound of formula II Ar-A-NH-E      (II) wherein Ar, E and A are as defined above with a compound of formula III: hal-B-CN      (III) wherein B is as defined above and hal represents chlorine or bromine, to give a compound of formula I wherein D is CN, orb) carrying out a reductive alkylation of a compound of formula II as defined above using a compound of formula IV OHC-B¹-CN      (IV) wherein B¹ is an alkylene chain of 2 or 3 carbon atoms optionally substituted by lower alkyl, in the presence of a reducing agent such as sodium cyanoborohydride to give a corresponding compound of formula I wherein D is CN and B represents -CH₂-B¹-;or(c) reducing a compound of formula (v) wherein R⁴ is alkyl of 1 to 5 carbon atoms or Ar¹-A²-;Ar, Ar¹, A and B and are as defined above, D³ represents CN, COOR or COOH and A² represents a direct bond or alkylene of 1 carbon atom optionally substituted by lower alkyl and/or aryl to give a corresponding compound of formula I wherein D is CN, COOR or COOH and E is R⁴CH₂ wherein R⁴ is as defined above;or(d) reducing a compound of formula (VI) wherein Ar, A and E are as defined above, B¹ is as defined in connection with formula IV and D² represents CN, COOR or CHO to give a corresponding compound of formula I wherein B is -CH₂B¹- and D is CN, COOR or CHO, or(e) partially hydrolysing a compound of formula I wherein D is CN to give a corresponding compound of forumla I wherein D is CONH₂;or(f) hydrolysing a compound of formula I wherein D is CN or CONH₂ to give a corresponding compound of formula I wherein D is COOH;or(g) reacting a compound of formula I wherein D is COOR or COhal with ammonia or an amine of formula HNR¹R² to give a corresponding compound of formula I wherein D is -CONR¹R²;or(h) hydrolysing an ester of formula I wherein D is COOR to give a carboxylic acid of formula I wherein D is COOH;or(i) oxidising an aldehyde of formula I wherein D is CHO to give an acid of formula I wherein D is COOH;or(j) oxidising an alcohol of formula I wherein D is -CH₂OH to give an aldehyde or an acid of formula I wherein D is CHO or COOH;or(k) oxidising a compound of formula wherein Ar, A, E and B are as defined above and D³ is C≡CH-, COCH₃ or CH=CH₂ to give a compound of formula I wherein D is COOH;or(l) hydrolysing a compound of formula wherein Ar, A and E are as defined above, T¹ and T² are each independently an ester function, a nitrile or an acyl group, and B¹ is an alkylene group of 2 or 3 carbon atoms optionally substituted by lower alkyl to give a corresponding compound of formula I wherein B is -B¹-CH₂- and D is COOH;or(m) esterifying an acid or acid halide of formula I wherein D is -COOH or COhal to give an ester of formula I wherein D is-COOR;or(n) halogenating an acid of formula I to give an acid halide of formula I wherein D is COhal;or(o) reducing an acid of formula I wherein D is COOH to give an alcohol of formula I wherein D is CH₂OH, or(p) acidifying a compound of formula I to give an acid addition salt thereof or neutralising an acid addition salt to give the free base form.