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手性氯喹类似物作为抗疟药物的合成、生物评价和分子建模研究。

Synthesis, Biological Evaluation, and Molecular Modeling Studies of Chiral Chloroquine Analogues as Antimalarial Agents.

机构信息

Medicinal and Process Chemistry Division, CSIR-Central Drug Research Institute, Lucknow, India.

Parasitology Division, CSIR-Central Drug Research Institute, Lucknow, India.

出版信息

Antimicrob Agents Chemother. 2018 Nov 26;62(12). doi: 10.1128/AAC.02347-17. Print 2018 Dec.

Abstract

In a focused exploration, we designed, synthesized, and biologically evaluated chiral conjugated new chloroquine (CQ) analogues with substituted piperazines as antimalarial agents. as well as studies revealed that compound 7c showed potent activity ( 50% inhibitory concentration, 56.98 nM for strain 3D7 and 97.76 nM for strain K1; selectivity index [up to at a dose of 12.5 mg/kg of body weight], 3,510) as a new lead antimalarial agent. Other compounds (compounds 6b, 6d, 7d, 7h, 8c, 8d, 9a, and 9c) also showed moderate activity against a CQ-sensitive strain (3D7) and superior activity against a CQ-resistant strain (K1) of Furthermore, we carried out docking and three-dimensional quantitative structure-activity relationship (3D-QSAR) studies of all in-house data sets (168 molecules) of chiral CQ analogues to explain the structure-activity relationships (SAR). Our new findings specify the significance of the H-bond interaction with the side chain of heme for biological activity. In addition, the 3D-QSAR study against the 3D7 strain indicated the favorable and unfavorable sites of CQ analogues for incorporating steric, hydrophobic, and electropositive groups to improve the antimalarial activity.

摘要

在一项重点研究中,我们设计、合成并生物评价了具有取代哌嗪的手性共轭新型氯喹(CQ)类似物作为抗疟药物。研究表明,化合物 7c 表现出很强的活性(对 3D7 株的 50%抑制浓度为 56.98 nM,对 K1 株的 97.76 nM;选择性指数 [最高剂量为 12.5 mg/kg 体重] 高达 3510),是一种新的抗疟先导化合物。其他化合物(化合物 6b、6d、7d、7h、8c、8d、9a 和 9c)对 CQ 敏感株(3D7)也表现出中等活性,对 CQ 耐药株(K1)表现出更高的活性。此外,我们对所有内部数据集(168 个手性 CQ 类似物分子)进行了对接和三维定量构效关系(3D-QSAR)研究,以解释构效关系(SAR)。我们的新发现明确了与血红素侧链形成氢键相互作用对生物活性的重要性。此外,针对 3D7 株的 3D-QSAR 研究表明,CQ 类似物有利于引入空间位阻、疏水性和正电性基团,以提高抗疟活性。

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