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重新利用 Hsp90 抑制剂的策略证明了它们对丝虫的强大作用。

A repurposing strategy for Hsp90 inhibitors demonstrates their potency against filarial nematodes.

机构信息

Institute of Biodiversity, Animal Health and Comparative Medicine, University of Glasgow, Glasgow, United Kingdom.

Center for World Health & Medicine, Saint Louis University, Saint Louis, Missouri, United States of America.

出版信息

PLoS Negl Trop Dis. 2014 Feb 13;8(2):e2699. doi: 10.1371/journal.pntd.0002699. eCollection 2014 Feb.

Abstract

Novel drugs are required for the elimination of infections caused by filarial worms, as most commonly used drugs largely target the microfilariae or first stage larvae of these infections. Previous studies, conducted in vitro, have shown that inhibition of Hsp90 kills adult Brugia pahangi. As numerous small molecule inhibitors of Hsp90 have been developed for use in cancer chemotherapy, we tested the activity of several novel Hsp90 inhibitors in a fluorescence polarization assay and against microfilariae and adult worms of Brugia in vitro. The results from all three assays correlated reasonably well and one particular compound, NVP-AUY922, was shown to be particularly active, inhibiting Mf output from female worms at concentrations as low as 5.0 nanomolar after 6 days exposure to drug. NVP-AUY922 was also active on adult worms after a short 24 h exposure to drug. Based on these in vitro data, NVP-AUY922 was tested in vivo in a mouse model and was shown to significantly reduce the recovery of both adult worms and microfilariae. These studies provide proof of principle that the repurposing of currently available Hsp90 inhibitors may have potential for the development of novel agents with macrofilaricidal properties.

摘要

需要新型药物来消除丝虫感染,因为大多数常用药物主要针对这些感染的微丝蚴或第一阶段幼虫。以前的体外研究表明,抑制 Hsp90 可杀死成年盘尾丝虫。由于已经开发出许多用于癌症化疗的 Hsp90 的小分子抑制剂,我们在荧光偏振测定法中和体外针对微丝蚴和成虫的 Brugia 中测试了几种新型 Hsp90 抑制剂的活性。所有三种测定方法的结果都相当吻合,一种特定的化合物 NVP-AUY922 尤其活跃,在暴露于药物 6 天后,浓度低至 5.0 纳摩尔时,即可抑制雌虫的微丝蚴输出。NVP-AUY922 在接触药物 24 小时后对成虫也有活性。基于这些体外数据,NVP-AUY922 在小鼠模型中进行了体内测试,结果表明它可显著减少成虫和微丝蚴的恢复。这些研究提供了一个原理证明,即重新利用现有的 Hsp90 抑制剂可能具有开发具有杀成虫特性的新型药物的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3cfa/3923716/7443096eae19/pntd.0002699.g001.jpg

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