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吲哚基乙二酰亚胺 GABAA/BzR 高亲和力配体的药物化学:新型抗焦虑/非镇静剂的鉴定。

Medicinal chemistry of indolylglyoxylamide GABAA/BzR high affinity ligands: identification of novel anxiolytic/non sedative agents.

机构信息

Dipartimento di Scienze Farmaceutiche, Universita di Pisa, Via Bonanno 6, 56126 Pisa, Italy.

出版信息

Curr Top Med Chem. 2012;12(4):286-311. doi: 10.2174/156802612799078847.

Abstract

The classical benzodiazepines (Bz) constitute a well-known class of therapeutics displaying hypnotic, anxiolytic and anticonvulsant effects acting upon a specific binding site (BzR) belonging to the GABAA receptor complex. Their usefulness, however, is limited by a broad range of side effects; consequently the fact that the action of GABA with the receptor complex could be allosterically modulated by a wide variety of chemical entities, made the Bz binding site, from late eighties to nowdays, the target of extensive research programmes directed to the identification of new ligands displaying varying degrees of affinity- and efficacy-selectivity for the different GABAA/BzR-subtypes. The principal aim has been to discover ideal sedative-hypnotic agents (selective 1 agonists), anxiolytic agents (selective 2/ 3 agonists), or cognitive enhancers (selective 5 inverse agonists). In this connection, an important contribution in the field of GABAA/BzR ligands was made by the research group directed by Professor Antonio Da Settimo at the University of Pisa. The purpose of this review is therefore to describe the studies, performed from early '80s, on the several classes of BzR ligands developed featuring the indol-3-ylglyoxyl scaffold. All the compounds reported have been summarized on the basis of their main chemical structural features, focusing attention on their SARs, which determined the affinity profiles or efficacy-selectivity. Moreover, the biological studies performed within each class of compounds allowed the identification of new derivatives exhibiting an anxiolytic/nonsedative profile, either in vitro (full 2 agonism and 1 partial agonism/ antagonism) and in vivo (anxiolytic/nonsedative activity in mice).

摘要

经典苯二氮䓬类(Bz)构成了一类众所周知的治疗药物,具有催眠、抗焦虑和抗惊厥作用,作用于属于 GABA A 受体复合物的特定结合位点(BzR)。然而,它们的用途受到广泛的副作用限制;因此,事实证明,GABA 与受体复合物的作用可以通过各种化学实体进行变构调节,使得 Bz 结合位点从 80 年代末至今成为广泛研究计划的目标,旨在识别具有不同亲和力和功效选择性的新配体,用于不同的 GABA A/BzR-亚型。主要目标是发现理想的镇静催眠药(选择性 1 激动剂)、抗焦虑药(选择性 2/3 激动剂)或认知增强剂(选择性 5 反向激动剂)。在这方面,比萨大学 Antonio Da Settimo 教授领导的研究小组在 GABA A/BzR 配体领域做出了重要贡献。因此,本次综述的目的是描述自 80 年代初以来,以吲哚-3-基-乙二醛骨架为特征的几类 BzR 配体的研究。根据它们的主要化学结构特征总结了所有报道的化合物,重点关注它们的 SAR,这决定了它们的亲和力谱或功效选择性。此外,在每类化合物中进行的生物学研究确定了具有抗焦虑/非镇静作用的新衍生物,无论是在体外(完全 2 激动剂和 1 部分激动剂/拮抗剂)还是在体内(在小鼠中具有抗焦虑/非镇静活性)。

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