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L型钙通道阻滞剂:从地尔硫䓬到经由噻嗪并恶二唑-3-酮衍生物的1,2,4-恶二唑-5-酮类化合物。

L-Type calcium channel blockers: from diltiazem to 1,2,4-oxadiazol-5-ones via thiazinooxadiazol-3-one derivatives.

作者信息

Budriesi Roberta, Cosimelli Barbara, Ioan Pierfranco, Ugenti Maria Paola, Carosati Emanuele, Frosini Maria, Fusi Fabio, Spisani Raffaella, Saponara Simona, Cruciani Gabriele, Novellino Ettore, Spinelli Domenico, Chiarini Alberto

机构信息

Dipartimento di Scienze Farmaceutiche, Universita degli Studi di Bologna, Via Belmeloro 6, 40126 Bologna, Italy.

出版信息

J Med Chem. 2009 Apr 23;52(8):2352-62. doi: 10.1021/jm801351u.

Abstract

The research of compounds with L-type calcium channels (LTCCs) blocking activity continued with heterocyclic compounds containing the 1,2,4-oxadiazol-5-one ring. For a series of 22 new derivatives of 3-aryl-4[(Z)-(1-methyl-2-alkylsulphanyl-vinyl)][1,2,4]oxadiazol-5(4H)-ones, which represent the "frozen" open chain counterpart of the cyclic aryl-thiazinooxadiazolones previously examined, we report here the synthesis and the characterization as LTCC blockers, evaluated on isolated tissues of guinea pig. The most interesting compound, 8b, was tested also on L-type calcium current recorded in isolated rat tail artery myocytes. Overall, six compounds were more potent than diltiazem, and binding assays confirmed the direct interaction with the benzothiazepine binding site. As the cyclic aryl-thiazinooxadiazolones, p-bromine substituted compounds were generally more potent than the corresponding p-chlorine ones. A saturated or unsaturated alkyl chain or a bulky group at the sulfur atom were detrimental to the potency, while the compounds with S-methyl groups, i.e., thioether (8b), sulfoxide (16a,b), and sulfone (17b), gave the best results.

摘要

对具有L型钙通道(LTCCs)阻断活性的化合物的研究仍在继续,研究对象为含有1,2,4-恶二唑-5-酮环的杂环化合物。对于一系列22种新的3-芳基-4[(Z)-(1-甲基-2-烷基硫烷基-乙烯基)][1,2,4]恶二唑-5(4H)-酮衍生物,它们是先前研究的环状芳基噻嗪恶二唑酮的“冻结”开链类似物,我们在此报告其作为LTCC阻滞剂的合成及表征,并在豚鼠离体组织上进行了评估。最有趣的化合物8b也在分离的大鼠尾动脉肌细胞中记录的L型钙电流上进行了测试。总体而言,六种化合物比地尔硫卓更有效,结合试验证实了它们与苯并噻氮卓结合位点的直接相互作用。与环状芳基噻嗪恶二唑酮一样,对溴取代的化合物通常比相应的对氯化合物更有效。硫原子上的饱和或不饱和烷基链或庞大基团对效力有不利影响,而具有S-甲基的化合物,即硫醚(8b)、亚砜(16a,b)和砜(17b),效果最佳。

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