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探索甲氧基噻嗪并喹啉支架的抗疟潜力:发现新的先导候选药物。

Exploring the antimalarial potential of the methoxy-thiazinoquinone scaffold: Identification of a new lead candidate.

机构信息

The NeaNat Group, Department of Pharmacy, University of Naples "Federico II", Via D. Montesano 49, 80131 Napoli, Italy.

Dipartimento di Scienze Biomediche, Chirurgiche e Odontoiatriche, Università di Milano, Via Pascal 36, 20133 Milan, Italy.

出版信息

Bioorg Chem. 2019 Apr;85:240-252. doi: 10.1016/j.bioorg.2018.12.031. Epub 2019 Jan 3.

Abstract

A small library of antiplasmodial methoxy-thiazinoquinones, rationally designed on the model of the previously identified hit 1, has been prepared by a simple and inexpensive procedure. The synthetic derivatives have been subjected to in vitro pharmacological screening, including antiplasmodial and toxicity assays. These studies afforded a new lead candidate, compound 9, endowed with higher antiplasmodial potency compared to 1, a good selectivity index when tested against a panel of mammalian cells, no toxicity against RBCs, a synergistic antiplasmodial action in combination with dihydroartemisinin, and a promising inhibitory activity on stage V gametocyte growth. Computational studies provided useful insights into the structural requirements needed for the antiplasmodial activity of thiazinoquinone compounds and on their putative mechanism of action.

摘要

一个小型的抗疟氧基噻嗪酮库,在先前鉴定的命中化合物 1 的模型基础上进行了合理设计,已经通过一种简单而廉价的方法制备。这些合成衍生物已进行了体外药理筛选,包括抗疟和毒性测定。这些研究提供了一个新的候选先导化合物 9,与化合物 1 相比,它具有更高的抗疟活性,对一组哺乳动物细胞的选择性指数良好,对 RBC 没有毒性,与二氢青蒿素联合具有协同抗疟作用,对阶段 V 配子体生长具有有前途的抑制活性。计算研究为噻嗪酮化合物的抗疟活性及其作用机制的结构要求提供了有用的见解。

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