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数以千计的抗疟药物先导化合物化学起始点。

Thousands of chemical starting points for antimalarial lead identification.

机构信息

Tres Cantos Medicines Development Campus, GlaxoSmithKline, Severo Ochoa 2, 28760 Tres Cantos, Spain.

出版信息

Nature. 2010 May 20;465(7296):305-10. doi: 10.1038/nature09107.

Abstract

Malaria is a devastating infection caused by protozoa of the genus Plasmodium. Drug resistance is widespread, no new chemical class of antimalarials has been introduced into clinical practice since 1996 and there is a recent rise of parasite strains with reduced sensitivity to the newest drugs. We screened nearly 2 million compounds in GlaxoSmithKline's chemical library for inhibitors of P. falciparum, of which 13,533 were confirmed to inhibit parasite growth by at least 80% at 2 microM concentration. More than 8,000 also showed potent activity against the multidrug resistant strain Dd2. Most (82%) compounds originate from internal company projects and are new to the malaria community. Analyses using historic assay data suggest several novel mechanisms of antimalarial action, such as inhibition of protein kinases and host-pathogen interaction related targets. Chemical structures and associated data are hereby made public to encourage additional drug lead identification efforts and further research into this disease.

摘要

疟疾是一种由疟原虫属原生动物引起的破坏性感染。抗药性广泛存在,自 1996 年以来,没有新的化学类抗疟药物被引入临床实践,而且最近寄生虫株对最新药物的敏感性降低。我们在葛兰素史克公司的化学文库中筛选了近 200 万个化合物,寻找抑制疟原虫 falciparum 的抑制剂,其中 13533 种在 2 μM 浓度下至少能抑制 80%的寄生虫生长。超过 8000 种还对多药耐药株 Dd2 表现出很强的活性。大多数(82%)化合物来自公司内部项目,对疟疾社区来说是新的。利用历史检测数据进行的分析表明了几种新的抗疟作用机制,如抑制蛋白激酶和宿主-病原体相互作用相关靶标。我们特此公开化学结构和相关数据,以鼓励进一步的药物先导鉴定工作,并对该疾病进行进一步研究。

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