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首页> 外文期刊>Journal of Medicinal Chemistry >Optimization of 1,2,3,4-tetrahydroacridin-9(10 H)-ones as antimalarials utilizing structure-activity and structure-property relationships
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Optimization of 1,2,3,4-tetrahydroacridin-9(10 H)-ones as antimalarials utilizing structure-activity and structure-property relationships

机译:利用结构-活性和结构-性质关系优化1,2,3,4-四氢ac啶9-9(10 H)-酮类抗疟药

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摘要

Antimalarial activity of 1,2,3,4-tetrahydroacridin-9(10H)-ones (THAs) has been known since the 1940s and has garnered more attention with the development of the acridinedione floxacrine (1) in the 1970s and analogues thereof such as WR 243251 (2a) in the 1990s. These compounds failed just prior to clinical development because of suboptimal activity, poor solubility, and rapid induction of parasite resistance. Moreover, detailed structure-activity relationship (SAR) studies of the THA core scaffold were lacking and SPR studies were nonexistent. To improve upon initial findings, several series of 1,2,3,4-tetrahydroacridin-9(10H)-ones were synthesized and tested in a systematic fashion, examining each compound for antimalarial activity, solubility, and permeability. Furthermore, a select set of compounds was chosen for microsomal stability testing to identify physicochemical liabilities of the THA scaffold. Several potent compounds (EC_(50) < 100 nM) were identified to be active against the clinically relevant isolates W2 and TM90-C2B while possessing good physicochemical properties and little to no cross-resistance.
机译:自1940年代以来,人们就知道1,2,3,4-四氢ac啶酮9(10H)-ones(THA)的抗疟活性,并随着1970年代the啶二酮氟沙星(1)及其类似物的发展而受到更多关注。如1990年代的WR 243251(2a)。这些化合物由于次优的活性,较差的溶解性和对寄生虫抗性的快速诱导而在临床开发之前就失败了。此外,缺乏对THA核心支架的详细的构效关系(SAR)研究,并且不存在SPR研究。为了改善最初的发现,合成了一系列1,2,3,4-四氢ac啶9-9(10H)-酮,并以系统的方式对其进行了测试,检查每种化合物的抗疟活性,溶解性和通透性。此外,选择了一组化合物进行微粒体稳定性测试,以鉴定THA支架的理化反应。几种有效的化合物(EC_(50)<100 nM)被鉴定为对临床相关的分离株W2和TM90-C2B具有活性,同时具有良好的理化性质和极少甚至没有交叉耐药性。

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