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双噻唑鎓盐的合成与评价及其作为潜在抗疟药物的研究。

Synthesis and evaluation of bis-thiazolium salts as potential antimalarial drugs.

机构信息

Institut des Biomolécules Max Mousseron, UMR 5247 CNRS-UM1&2, Université Montpellier 2, CC1705, Place E Bataillon, 34095 Montpellier Cedex 5, France.

出版信息

ChemMedChem. 2010 Jul 5;5(7):1102-9. doi: 10.1002/cmdc.201000097.

Abstract

An innovative therapeutic approach based on the use of dicationic derivatives was previously designed to inhibit the biosynthesis of phosphatidylcholine in Plasmodium spp. Among these, bis-thiazolium salts were shown to block proliferation of the malaria parasite at concentrations in the low nanomolar range. However, due to unsuitable molecular properties such as the presence of the two polar heads and flexibility in the linker, these compounds have low oral bioavailability. To characterize the structural requirements of the linker that lead to more rigid analogues with fewer rotatable bonds but which retain antimalarial activity, a new series of compounds incorporating an aryl moiety and eventually oxygen atoms were prepared, and their biological activity was evaluated. Structure-activity relationships suggest that the optimal linker construct is an aromatic group with two n-butyl chains branched at the para position; two new leads (compounds 39 and 40) were selected for further development.

摘要

先前设计了一种基于二价阳离子衍生物的创新治疗方法,以抑制疟原虫属中磷脂酰胆碱的生物合成。在这些衍生物中,双噻唑盐在低纳摩尔浓度下显示出可阻断疟原虫的增殖。然而,由于存在两个极性头和连接子的柔韧性等不合适的分子性质,这些化合物的口服生物利用度较低。为了表征导致具有更少可旋转键但保留抗疟活性的更刚性类似物的连接子的结构要求,制备了一系列包含芳基部分和最终氧原子的新化合物,并对其生物活性进行了评估。构效关系表明,最佳的连接子结构是带有两个支链在对位的正丁基链的芳基基团;选择了两个新的先导化合物(化合物 39 和 40)进行进一步开发。

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