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新型抗疟药 5-吡啶基-4(1H)-吡啶酮的合成及构效关系。

Synthesis and Structure-Activity Relationships of the Novel Antimalarials 5-Pyridinyl-4(1 H)-Pyridones.

机构信息

Tres Cantos Medicines Development Campus, Diseases of the Developing World , GlaxoSmithKline , Calle de Severo Ochoa, 2 , 28760 Tres Cantos , Madrid , Spain.

Medicines for Malaria Venture, ICC , Route de Pré-Bois 20 , PO Box 1826, 1215 Geneva , Switzerland.

出版信息

J Med Chem. 2018 Apr 26;61(8):3422-3435. doi: 10.1021/acs.jmedchem.7b01256. Epub 2018 Apr 5.

Abstract

Malaria is still one of the most prevalent parasitic infections in the world, with half of the world's population at risk for malaria. The effectiveness of current antimalarial therapies, even that of the most recent class of antimalarial drugs (artemisinin-combination therapies, ACTs), is under continuous threat by the spread of resistant Plasmodium strains. As a consequence, there is still an urgent requirement for new antimalarial drugs. We previously reported the identification of 4(1 H)-pyridones as a novel series with potent antimalarial activities. The low solubility was identified as an issue to address. In this paper, we describe the synthesis and biological evaluation of 4(1 H)-pyridones with potent antimalarial activities in vitro and in vivo and improved pharmacokinetic profiles. Their main structural novelties are the presence of polar moieties, such as hydroxyl groups, and the replacement of the lipophilic phenyl rings with pyridines on their lipophilic side chains.

摘要

疟疾仍然是世界上最普遍的寄生虫感染之一,全球一半的人口面临疟疾风险。目前抗疟疗法的有效性,甚至是最近一类抗疟药物(青蒿素联合疗法,ACTs)的有效性,都受到抗药性疟原虫株传播的持续威胁。因此,仍然迫切需要新的抗疟药物。我们之前曾报道过将 4(1H)-吡啶酮类化合物作为一种具有很强抗疟活性的新型系列化合物。我们发现低溶解度是一个需要解决的问题。在本文中,我们描述了具有强效体外和体内抗疟活性以及改善药代动力学特征的 4(1H)-吡啶酮类化合物的合成和生物学评价。它们的主要结构新颖之处在于存在极性部分,如羟基,并且在亲脂性侧链上用吡啶取代了亲脂性的苯基环。

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