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强效口服活性 5-羟色胺4(5-HT4)受体拮抗剂的合成及其构效关系:吲唑和苯并咪唑酮衍生物

Synthesis and structure-activity relationships of potent and orally active 5-HT4 receptor antagonists: indazole and benzimidazolone derivatives.

作者信息

Schaus J M, Thompson D C, Bloomquist W E, Susemichel A D, Calligaro D O, Cohen M L

机构信息

Lilly Research Laboratories, Eli Lilly and Company, Indianapolis, Indiana 46285, USA.

出版信息

J Med Chem. 1998 May 21;41(11):1943-55. doi: 10.1021/jm970857f.

Abstract

A series of indole-3-carboxamides, indazole-3-carboxamides, and benzimidazolone-3-carboxamides was synthesized and evaluated for antagonist affinity at the 5-HT4 receptor in the rat esophagus. The endo-3-tropanamine derivatives in the indazole and benzimidazolone series possessed greater 5-HT4 receptor affinity than the corresponding indole analogues. 5-HT4 receptor antagonist affinity was further increased by alkylation at N-1 of the aromatic heterocycle. In a series of 1-isopropylindazole-3-carboxamides, replacement of the bicyclic tropane ring system with the monocyclic piperidine ring system or an acyclic aminoalkylene chain led to potent 5-HT4 receptor antagonists. In particular, those systems in which the basic amine was substituted with groups capable of forming hydrogen bonds showed increased 5-HT4 receptor antagonist activity. While some of these compounds displayed high affinity for other neurotransmitter receptors (in particular, 5-HT3, alpha1, and 5-HT2A receptors), as the conformational flexibility of the amine moiety increased, the selectivity for the 5-HT4 receptor also increased. From this series of compounds, we identified LY353433 (1-(1-methylethyl)-N-[2-[4-[(tricyclo[3.3.1.1(3, 7)]dec-1-ylcarbonyl)amino]-1-piperidinyl]ethyl]-1H-indazole-3- carboxamide) as a potent and selective 5-HT4 receptor antagonist with clinically suitable pharmacodynamics.

摘要

合成了一系列吲哚 - 3 - 甲酰胺、吲唑 - 3 - 甲酰胺和苯并咪唑酮 - 3 - 甲酰胺,并评估了它们对大鼠食管中5 - HT4受体的拮抗剂亲和力。吲唑和苯并咪唑酮系列中的内 - 3 - 托烷胺衍生物比相应的吲哚类似物具有更高的5 - HT4受体亲和力。通过在芳香杂环的N - 1位进行烷基化,5 - HT4受体拮抗剂亲和力进一步提高。在一系列1 - 异丙基吲唑 - 3 - 甲酰胺中,用单环哌啶环系统或无环氨基亚烷基链取代双环托烷环系统,得到了强效的5 - HT4受体拮抗剂。特别地,那些碱性胺被能够形成氢键的基团取代的系统显示出增强的5 - HT4受体拮抗剂活性。虽然这些化合物中的一些对其他神经递质受体(特别是5 - HT3、α1和5 - HT2A受体)表现出高亲和力,但随着胺部分构象灵活性的增加,对5 - HT4受体的选择性也增加。从这一系列化合物中,我们鉴定出LY353433(1 - (1 - 甲基乙基) - N - [2 - [4 - [(三环[3.3.1.1(3,7)]癸 - 1 - 基羰基)氨基] - 1 - 哌啶基]乙基] - 1H - 吲唑 - 3 - 甲酰胺)是一种具有临床合适药效学的强效且选择性的5 - HT4受体拮抗剂。

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