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5-hydroxytryptamine2A receptor inverse agonists as antipsychotics.

单胺类 反激动剂 受体 G蛋白偶联受体 药理学 兴奋剂 内源性激动剂 多巴胺受体D2 内在活性 化学 抗精神病药 多巴胺受体 部分激动剂 舍廷多尔 生物 生物化学 医学 精神分裂症(面向对象编程) 血清素 多巴胺受体D1 精神科
作者
David M. Weiner,Ethan S. Burstein,N. T. Nash,Glenn Croston,Erika A. Currier,K.E. Vanover,Simon C. Harvey,Elizabeth Donohue,Holger C. Hansen,Candace Andersson,Tracy A. Spalding,D.F. Gibson,Kirsten Krebs-Thomson,Susan B. Powell,Mark A. Geyer,Uli Hacksell,Mark R. Brann
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期刊:PubMed 卷期号:299 (1): 268-76 被引量:190
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We have used a cell-based functional assay to define the pharmacological profiles of a wide range of central nervous system active compounds as agonists, competitive antagonists, and inverse agonists at almost all known monoaminergic G-protein-coupled receptor (GPCR) subtypes. Detailed profiling of 40 antipsychotics confirmed that as expected, most of these agents are potent competitive antagonists of the dopamine D2 receptor. Surprisingly, this analysis also revealed that most are potent and fully efficacious 5-hydroxytryptamine (5-HT)2A receptor inverse agonists. No other molecular property was shared as universally by this class of compounds. Furthermore, comparisons of receptor potencies revealed that antipsychotics with the highest extrapyramidal side effects (EPS) liability are significantly more potent at D2 receptors, the EPS-sparing atypical agents had relatively higher potencies at 5-HT2A receptors, while three were significantly more potent at 5-HT2A receptors. Functional high-throughput screening of a diverse chemical library identified 530 ligands with inverse agonist activity at 5-HT2A receptors, including several series of compounds related to known antipsychotics, as well as a number of novel chemistries. An analog of one of the novel chemical series, AC-90179, was pharmacologically profiled against the remaining monoaminergic GPCRs and found to be a highly selective 5-HT2A receptor inverse agonist. The behavioral pharmacology of AC-90179 is characteristic of an atypical antipsychotic agent.

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