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利用基于红外的秀丽隐杆线虫运动测定法,在疟疾药物事业会的新冠和全球健康优先药物库中发现具有驱虫潜力的小分子。

Discovery of small molecules with anthelmintic potential in the Medicines for Malaria Venture's COVID and Global Health Priority Boxes using an infrared-based assay for Caenorhabditis elegans motility.

作者信息

Sun Yujie Uli, Liu Lawrence J, Caffrey Conor R

机构信息

Center for Discovery and Innovation in Parasitic Diseases, Skaggs School of Pharmacy and Pharmaceutical Sciences, University of California San Diego, 9255 Pharmacy Lane, MC0657, La Jolla, CA, 92093, USA.

出版信息

BMC Res Notes. 2025 Oct 6;18(1):422. doi: 10.1186/s13104-025-07485-9.

Abstract

BACKGROUND

Parasitic nematodes are a public health problem globally, and an economic burden on animal and plant agricultural industries. With their ability to generate drug resistance, new anthelmintic compounds must be constantly sourced.

METHODS

Using the free-living nematode, Caenorhabditis elegans, in an infrared-based motility assay, we screened 400 compounds from two open-source, small-molecule collections distributed by the Medicines for Malaria Venture, namely, the COVID Box and Global Health Priority Box. The screening assay was first validated for worm number, DMSO concentration and final volume.

RESULTS

Primary and secondary (time- and concentration-dependent) screens of both boxes, identified twelve compounds as hits; nine of which are known anthelmintics. Three additional bioactives, flufenerim, flucofuron and indomethacin were identified with EC values ranging from 0.211 to 23.174 µM. Counter toxicity screens with HEK293 cells indicated varying degrees of toxicity with EC values ranging from 0.453 to > 100 µM.

CONCLUSIONS

A C. elegans motility assay was optimized and used to screen two recently-released, small molecule libraries. Flufenerim, flucofuron and/or indomethacin might serve as starting points for the development of new anthelmintics.

摘要

背景

寄生线虫是全球公共卫生问题,也是动植物农业产业的经济负担。由于它们会产生耐药性,因此必须不断寻找新的驱虫化合物。

方法

我们利用自由生活的线虫秀丽隐杆线虫,通过基于红外的运动测定法,从疟疾药物风险投资公司分发的两个开源小分子化合物库(即新冠病毒药物盒和全球卫生优先药物盒)中筛选了400种化合物。筛选试验首先针对线虫数量、二甲基亚砜浓度和最终体积进行了验证。

结果

对两个化合物库进行的一级和二级(时间和浓度依赖性)筛选,确定了12种化合物为有效命中物;其中9种是已知的驱虫剂。另外还鉴定出三种生物活性物质,即氟苯尼林、氟呋脲和吲哚美辛,其半数有效浓度(EC)值在0.211至23.174 μM之间。用人类胚胎肾细胞293(HEK293)进行的抗毒性筛选表明,存在不同程度的毒性,EC值在0.453至>100 μM之间。

结论

优化了秀丽隐杆线虫运动测定法,并用于筛选两个最近发布的小分子文库。氟苯尼林、氟呋脲和/或吲哚美辛可能作为开发新型驱虫剂的起点。

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