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咪唑并[2,1 - b]噻唑体系:一种赋予二氢吡啶类化合物选择性心脏抑制活性的骨架。

Imidazo[2,1-b]thiazole system: a scaffold endowing dihydropyridines with selective cardiodepressant activity.

作者信息

Budriesi Roberta, Ioan Pierfranco, Locatelli Alessandra, Cosconati Sandro, Leoni Alberto, Ugenti Maria P, Andreani Aldo, Di Toro Rosanna, Bedini Andrea, Spampinato Santi, Marinelli Luciana, Novellino Ettore, Chiarini Alberto

机构信息

Dipartimento di Scienze Farmaceutiche, Università degli Studi di Bologna, Via Belmeloro 6, Bologna, Italy.

出版信息

J Med Chem. 2008 Mar 27;51(6):1592-600. doi: 10.1021/jm070681+. Epub 2008 Feb 28.

Abstract

The synthesis, characterization, and functional in vitro assays in cardiac tissues and smooth muscle (vascular and nonvascular) of a number of 4-imidazo[2,1- b]thiazole-1,4-dihydropyridines are reported. The binding properties for the novel compounds have been investigated and the interaction with the binding site common to other aryl-dihydropyridines has been demonstrated. Interestingly, the novel 4-aryl-dihydropyridines are L-type calcium channel blockers with a peculiar pharmacological behavior. Indeed, the imidazo[2,1- b]thiazole system is found to confer to the dihydropyridine scaffold an inotropic and/or chronotropic cardiovascular activity with a high selectivity toward the nonvascular tissue. Finally, molecular modeling studies were undertaken for the most representative compounds with the aim of describing the binding properties of the new ligands at molecular level and to rationalize the found structure-activity relationship data. Due to the observed pharmacological behavior of our compounds, they might be promising agents for the treatment of specific cardiovascular pathologies such as cardiac hypertrophy and ischemia.

摘要

报道了多种4-咪唑并[2,1 - b]噻唑-1,4-二氢吡啶在心脏组织和平滑肌(血管和非血管)中的合成、表征及体外功能测定。研究了新型化合物的结合特性,并证明了其与其他芳基二氢吡啶共同结合位点的相互作用。有趣的是,新型4-芳基二氢吡啶是具有独特药理行为的L型钙通道阻滞剂。实际上,发现咪唑并[2,1 - b]噻唑系统赋予二氢吡啶支架正性肌力和/或变时性心血管活性,对非血管组织具有高选择性。最后,对最具代表性的化合物进行了分子建模研究,目的是在分子水平描述新配体的结合特性,并合理化所发现的构效关系数据。由于观察到我们化合物的药理行为,它们可能是治疗特定心血管疾病如心脏肥大和缺血的有前景的药物。

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