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Structure–Activity Relationship Studies of Pyrrolone Antimalarial Agents

机译:吡咯烷酮抗疟药的构效关系研究

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摘要

Previously reported pyrrolones, such as , exhibited potential as antimalarial agents; however, while these compounds have potent antimalarial activity, they suffer from poor aqueous solubility and metabolic instability. Here, further structure–activity relationship studies are described that aimed to solve the developability issues associated with this series of compounds. In particular, further modifications to the lead pyrrolone, involving replacement of a phenyl ring with a piperidine and removal of a potentially metabolically labile ester by a scaffold hop, gave rise to derivatives with improved in vitro antimalarial activities against Plasmodium falciparum K1, a chloroquine-and pyrimethamine-resistant parasite strain, with some derivatives exhibiting good selectivity for parasite over mammalian (L6) cells. Three representative compounds were selected for evaluation in a rodent model of malaria infection, and the best compound showed improved ability to decrease parasitaemia and a slight increase in survival.
机译:先前报道的吡咯烷酮,例如,具有潜在的抗疟药作用。然而,尽管这些化合物具有有效的抗疟活性,但它们的水溶性差且代谢不稳定。在这里,描述了进一步的结构-活性关系研究,旨在解决与这一系列化合物有关的可开发性问题。特别是对吡咯烷酮的进一步修饰,包括用哌啶取代苯环并通过脚手架蛇麻草去除潜在的代谢不稳定酯,产生了对恶性疟原虫K1(一种氯喹-)具有增强的体外抗疟活性的衍生物。和对乙胺嘧啶具有抗性的寄生虫菌株,其中一些衍生物对寄生虫具有比哺乳动物(L6)细胞更高的选择性。在啮齿动物的疟疾感染模型中选择了三种代表性化合物进行评估,最佳化合物显示出降低寄生虫病的能力和存活率略有提高。

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