首页> 外文期刊>Journal of Medicinal Chemistry >Design, Synthesis, Structural Studies, Biological Evaluation, and Computational Simulations of Novel Potent AT1 Angiotensin II Receptor Antagonists Based on the 4-Phenylquinoline Structure
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Design, Synthesis, Structural Studies, Biological Evaluation, and Computational Simulations of Novel Potent AT1 Angiotensin II Receptor Antagonists Based on the 4-Phenylquinoline Structure

机译:基于4-苯基喹啉结构的新型强效AT1血管紧张素II受体拮抗剂的设计,合成,结构研究,生物学评估和计算模拟

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摘要

Novel AT1 receptor antagonists bearing substituted 4-phenylquinoline moieties instead of the classical biphenyl fragment were designed and synthesized as the first step of an investigation devoted to the development of new antihypertensive agents and to the understanding of the molecular basis of their pharmacodynamic and pharmacokinetic properties. The newly synthesized compounds were tested for their potential ability to displace [~(125)I]Sar~1,Ile~8-Ang II specifically bound to AT1 receptor in rat hepatic membranes. These AT1 receptor binding studies revealed nanomolar affinity in several of the compounds under study. The most potent ligands 4b,t were found to be equipotent with losartan and possessed either a 3-tetrazolylquinoline or a 2-amino-3-quinolinecarboxylic moiety, respectively. Moreover, some selected compounds were evaluated for antagonism of Ang II-induced contraction in rabbit aortic strips, and the most potent compounds in the binding test 4b,t were slightly more potent than losartan in inhibiting Ang II-induced contraction. Finally, the most relevant structure-affinity relationship data were rationalized by means of computational studies performed on the isolated ligands as well as by computational simulations on the ligands complexed with a theoretical AT1 receptor model.
机译:设计并合成了带有取代的4-苯基喹啉部分而不是经典联苯片段的新型AT1受体拮抗剂,该研究是致力于开发新型降压药以及了解其药效和药代动力学性质的分子生物学研究的第一步。测试了新合成的化合物在大鼠肝膜中置换与AT1受体特异性结合的[〜(125)I] Sar〜1,Ile〜8-Ang II的潜在能力。这些AT1受体结合研究揭示了几种被研究化合物的纳摩尔亲和力。发现最有效的配体4b,t与氯沙坦等效,并分别具有3-四唑基喹啉或2-氨基-3-喹啉羧酸部分。此外,评估了一些选定的化合物对兔主动脉条中Ang II诱导的收缩的拮抗作用,并且在结合试验4b,t中最有效的化合物在抑制Ang II诱导的收缩方面比氯沙坦稍强。最后,通过对分离的配体进行的计算研究以及对与理论AT1受体模型复合的配体的计算模拟,使最相关的结构亲和关系数据合理化。

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