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芳香基团在苯环己哌啶类似物抑制苯环己哌啶结合及多巴胺摄取中的作用。

Role of the aromatic group in the inhibition of phencyclidine binding and dopamine uptake by PCP analogs.

作者信息

Chaudieu I, Vignon J, Chicheportiche M, Kamenka J M, Trouiller G, Chicheportiche R

机构信息

CNRS LP 8402, INSERM U 249 (UMI), Ecole Nationale Supérieure de Chimie de Montpellier, France.

出版信息

Pharmacol Biochem Behav. 1989 Mar;32(3):699-705. doi: 10.1016/0091-3057(89)90020-8.

Abstract

Thirty-seven arylcyclohexylamines including phencyclidine (PCP) and derivatives, N[1-(2-thienyl)cyclohexyl]piperidine (TCP) and derivatives and N-[1-(2-benzo(b)thiophenyl)cyclohexyl]piperidine (BTCP) were assessed for their ability to inhibit [3H]PCP binding and [3H]dopamine ([3H]DA) synaptosomal uptake. Their pharmacological property (ataxia) was measured by means of the rotarod test. A very good correlation was observed between the inhibition of [3H]PCP binding and the [3H]DA uptake only for arylcyclohexylamines bearing an unmodified phenyl group. Conversely the comparison between the inhibition of [3H]PCP binding and the activity in the rotarod test shows a good correlation with arylcyclohexylamines having any aromatic group (phenyl, substituted phenyl and thienyl rings). This study outlined a new compound (BTCP) without ataxic effect, which is one of the more potent inhibitors of the [3H]DA uptake (IC50 = 8 nM) and which seems very specific since it has a low affinity for [3H]PCP receptors (IC50 = 6 microM). These data show that the aromatic group of the compounds leads to molecules that bind differently to the PCP receptor and to the DA uptake complex. They also suggest that the behavioral properties of arylcyclohexylamines revealed by the rotarod test occur essentially as a result of an interaction with the sites labeled with [3H]PCP and that TCP is more selective than PCP itself in this recognition.

摘要

对37种芳基环己胺进行了评估,包括苯环己哌啶(PCP)及其衍生物、N-[1-(2-噻吩基)环己基]哌啶(TCP)及其衍生物以及N-[1-(2-苯并[b]噻吩基)环己基]哌啶(BTCP),检测它们抑制[3H]PCP结合以及[3H]多巴胺([3H]DA)突触体摄取的能力。通过转棒试验测定它们的药理学特性(共济失调)。仅对于带有未修饰苯基的芳基环己胺,观察到[3H]PCP结合抑制与[3H]DA摄取之间有非常好的相关性。相反,[3H]PCP结合抑制与转棒试验活性之间的比较表明,对于具有任何芳香基团(苯基、取代苯基和噻吩环)的芳基环己胺有良好的相关性。本研究概述了一种无共济失调作用的新化合物(BTCP),它是[3H]DA摄取的更有效抑制剂之一(IC50 = 8 nM),并且似乎非常具有特异性,因为它对[3H]PCP受体的亲和力较低(IC50 = 6 microM)。这些数据表明,化合物的芳香基团导致分子与PCP受体和DA摄取复合物的结合方式不同。它们还表明,转棒试验揭示的芳基环己胺的行为特性基本上是与用[3H]PCP标记的位点相互作用的结果,并且在这种识别中TCP比PCP本身更具选择性。

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