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新型γ-氨基丁酸-A受体阻滞剂:寻找更强大的氯氮平样选择性γ-氨基丁酸拮抗剂的尝试

[New GABA-A receptor blockers: attempts to find more powerful clozapine-like selective GABA antagonists].

作者信息

Squires R F, Saederup E

机构信息

Nathan S. Kline Institute for Psychiatric Research, Orangeburg, New York 10962, USA.

出版信息

Vopr Med Khim. 1997 Nov-Dec;43(6):576-83.

PMID:9503575
Abstract

Because clozapine and a number of other antipsychotic, as well as antidepressant drugs selectively block subsets of GABAA receptors, we have routinely screened 1100 compounds since 1983 for GABA antagonistic effects on 35S-TBPS binding, with a view to finding more potent clozapine-like selective GABAA receptor blockers. About 225 GABA antagonists were identified. Among compounds not previously published, four groups of tricyclic compounds (phenothiazines, phenoxazines, acridines and phenazines) contained GABAA receptor blockers, with acridines and oxidized phenothiazines in general being the most potent. Other active groups include cocaine derivatives, xanthines, indoles and phenethylamine derivatives. A large group of miscellaneous structures includes all known GABAA receptor blockers, as well as some antihistamines, antitussives, antimalarial/antiprotozoals, potential antidepressant, and a large non-therapeutic category consisting of diverse chemical structures. The amino steroid R5135 remains the most potent GABAA receptor blocker by far (EC50 = 5.7 nM, delta Bopt = 130%), and is non-aromatic. Pitrazepin, the next-most potent GABAA receptor blocker (EC50 = 360 nM), also fully reverses the inhibitory effect of 1 microM GABA on 35S-TBPS binding, but is 63-fold less potent than R5135. Appropriately positioned amidino groups, ring (aromatic) nitrogen, ether and keto groups can contribute to the potency of GABAA receptor blockade. Clozapine-like selective GABAA receptor blockers with EC50 values in the low nanomolar range remain to be identified. Such compounds may have potent antipsychotic effects.

摘要

由于氯氮平和其他一些抗精神病药物以及抗抑郁药物可选择性阻断GABAA受体亚型,自1983年以来,我们常规筛选了1100种化合物,以研究其对35S-TBPS结合的GABA拮抗作用,目的是找到更有效的氯氮平样选择性GABAA受体阻断剂。共鉴定出约225种GABA拮抗剂。在之前未发表的化合物中,四类三环化合物(吩噻嗪类、吩恶嗪类、吖啶类和吩嗪类)含有GABAA受体阻断剂,其中吖啶类和氧化吩噻嗪类通常活性最强。其他活性基团包括可卡因衍生物、黄嘌呤类、吲哚类和苯乙胺衍生物。一大类杂类结构包括所有已知的GABAA受体阻断剂,以及一些抗组胺药、镇咳药、抗疟/抗原虫药、潜在的抗抑郁药,还有一大类由不同化学结构组成的非治疗性化合物。氨基甾体R5135仍是迄今为止最有效的GABAA受体阻断剂(EC50 = 5.7 nM,δBopt = 130%),且无芳香性。次强效的GABAA受体阻断剂匹拉唑平(EC50 = 360 nM)也能完全逆转1 μM GABA对35S-TBPS结合的抑制作用,但效力比R5135低63倍。适当位置的脒基、环(芳香)氮、醚和酮基可提高GABAA受体阻断的效力。仍有待鉴定出EC50值在低纳摩尔范围内的氯氮平样选择性GABAA受体阻断剂。这类化合物可能具有强效抗精神病作用。

相似文献

1
[New GABA-A receptor blockers: attempts to find more powerful clozapine-like selective GABA antagonists].新型γ-氨基丁酸-A受体阻滞剂:寻找更强大的氯氮平样选择性γ-氨基丁酸拮抗剂的尝试
Vopr Med Khim. 1997 Nov-Dec;43(6):576-83.
2
Clozapine's antipsychotic effects do not depend on blockade of 5-HT3 receptors.氯氮平的抗精神病作用并不依赖于对5-羟色胺3受体的阻断。
Neurochem Res. 1999 May;24(5):659-67. doi: 10.1023/a:1021052409140.
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Clozapine and several other antipsychotic/antidepressant drugs preferentially block the same 'core' fraction of GABA(A) receptors.氯氮平和其他几种抗精神病/抗抑郁药物优先阻断相同的GABA(A)受体“核心”部分。
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