[EN] SUBSTITUTED INDOLES AS CENTRAL NERVOUS SYSTEM AGENTS
申请人:WARNER-LAMBERT COMPANY
公开号:WO1992012977A1
公开(公告)日:1992-08-06
(EN) Substituted indoles and derivatives of formula (I), wherein R is (a) or (b) wherein R4 is aryl or some 5- or 6- membered heterocycle, which are useful as central nervous system agents and are particularly useful as dopaminergic, antipsychotic, and antihypertensive agents as well as for treating hyperprolactinaemia-related conditions and central nervous system disorders.(FR) L'invention décrit des indoles substitués et leurs dérivés, de formule (I), dans laquelle R représente (a) ou (b), où R4 désigne aryle ou un hétérocycle à 5 ou 6 membres, utilisés en tant qu'agents du système nerveux central et particulièrement efficaces en tant qu'agents dopaminergiques, antipsychotiques et antihypertensifs, ainsi qu'en tant qu'agents de traitement d'états provoqués par une hyperprolactinémie et de maladies du système nerveux central.
Substituted indoles as central nervous system agents
申请人:Warner-Lambert Company
公开号:US05124332A1
公开(公告)日:1992-06-23
Substituted indoles and derivatives thereof are described, as well as methods for the preparation and pharmaceutical composition of the same, which are useful as central nervous system agents and are particularly useful as dopaminergic, antipsychotic, and antihypertensive agents as well as for treating hyperprolactinaemia-related conditions and central nervous system disorders.
3-[[(4-Aryl-1-piperazinyl)alkyl]cyclohexyl]-1<i>H</i>-indoles as Dopamine D2 Partial Agonists and Autoreceptor Agonists
作者:David J. Wustrow、William J. Smith、Ann E. Corbin、M. Duff Davis、Lynn M. Georgic、Thomas A. Pugsley、Steven Z. Whetzel、Thomas G. Heffner、Lawrence D. Wise
DOI:10.1021/jm960597m
日期:1997.1.1
effects of changes in the arylpiperazine and indole portions of the molecule. From these studies trans-2-[[4-(1H-3-indolyl)cyclohexyl]ethyl]-4- (2-pyridinyl)piperazine (30a) was selected for further evaluation. It was characterized as a partial agonist of DA D2 receptors in vitro and caused decreases in dopamine synthesis and release as well as dopamine neuronal firing. Compound 30a was shown to be