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血管紧张素转换酶抑制剂。2. 全氢氮杂卓-2-酮衍生物。

Angiotensin-converting enzyme inhibitors. 2. Perhydroazepin-2-one derivatives.

作者信息

Yanagisawa H, Ishihara S, Ando A, Kanazaki T, Miyamoto S, Koike H, Iijima Y, Oizumi K, Matsushita Y, Hata T

机构信息

Chemical Research Laboratories, Sankyo Co., Ltd., Tokyo, Japan.

出版信息

J Med Chem. 1988 Feb;31(2):422-8. doi: 10.1021/jm00397a027.

Abstract

alpha-[(3S)-3-[[(S)-1-(Ethoxycarbonyl)-3-phenylpropyl]amino]-2-oxo-6 or 7-phenylperhydroazepin-1-yl]acetic acids (monoester monoacids) and their dicarboxylic acids were synthesized, and their angiotensin-converting enzyme (ACE) inhibitory activities were evaluated. The dicarboxylic acids having phenyl substituents at the 6R, 6S, and 7S positions on the azepinone ring showed potent inhibition in vitro. The corresponding monoester monoacids, when administered orally, suppressed the pressor response to angiotensin I administered intravenously. The monoester monoacids having the phenyl substituent at the 6-position showed a longer duration of action than one having the substituent at the 7-position. The structure-activity relationship was studied on the basis of the conformational energy calculation.

摘要

合成了α-[(3S)-3-[[(S)-1-(乙氧羰基)-3-苯基丙基]氨基]-2-氧代-6或7-苯基全氢氮杂环庚烷-1-基]乙酸(单酯单酸)及其二羧酸,并评估了它们的血管紧张素转换酶(ACE)抑制活性。在氮杂环庚酮环的6R、6S和7S位具有苯基取代基的二羧酸在体外显示出强效抑制作用。相应的单酯单酸口服给药时,可抑制静脉注射血管紧张素I引起的升压反应。在6位具有苯基取代基的单酯单酸比在7位具有取代基的单酯单酸作用持续时间更长。基于构象能量计算研究了构效关系。

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