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[3H]SCH 23390与人壳核D-1多巴胺受体的结合:1-苯基-1H-3-苯并氮杂䓬衍生物之间的立体化学和结构-亲和力关系作为D-1受体拓扑结构的指南

[3H]SCH 23390 binding to human putamen D-1 dopamine receptors: stereochemical and structure-affinity relationships among 1-phenyl-1H-3-benzazepine derivatives as a guide to D-1 receptor topography.

作者信息

O'Boyle K M, Waddington J L

出版信息

J Neurochem. 1987 Apr;48(4):1039-42. doi: 10.1111/j.1471-4159.1987.tb05623.x.

Abstract

A series of 1-phenyl-1H-3-benzazepine analogues were assessed for enantiomeric and structure-affinity relationships at human putamen D-1 dopamine receptors labelled with [3H]SCH 23390. Substitution at the 7-position of both 3-H and 3-methyl benzazepine molecules critically affected affinity for these receptors over a 500-fold range. The general rank order of potency of 7-substituents was Cl = Br much greater than CH3 greater than OH greater than or equal to H. 3-Methyl substituents increased the affinity of 7-H and 7-OH compounds two- to fivefold compared to desmethyl counterparts. The displacement of [3H]SCH 23390 binding showed substantial enantioselectivity; the R-enantiomer of SKF 83566 was 500-fold more potent that its S-antipode. However, the displacement of [3H]spiperone binding from D-2 sites in the same tissue showed negligible enantioselectivity. Through such structure-affinity relationships, these studies may help to define the topography of the human brain D-1 dopamine receptor and guide the design of more selective agents for functional studies.

摘要

一系列1-苯基-1H-3-苯并氮杂卓类似物在以[3H]SCH 23390标记的人壳核D-1多巴胺受体上进行了对映体和结构-亲和力关系评估。3-H和3-甲基苯并氮杂卓分子7位上的取代在500倍的范围内对这些受体的亲和力有至关重要的影响。7-取代基的一般效价顺序为Cl = Br远大于CH3大于OH大于或等于H。与去甲基类似物相比,3-甲基取代基使7-H和7-OH化合物的亲和力增加了两到五倍。[3H]SCH 23390结合的置换显示出显著的对映选择性;SKF 83566的R-对映体的效力比其S-对映体高500倍。然而,[3H]螺哌隆在同一组织中从D-2位点的置换显示出可忽略不计的对映选择性。通过这种结构-亲和力关系,这些研究可能有助于确定人脑海马D-1多巴胺受体的拓扑结构,并指导设计用于功能研究的更具选择性的药物。

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