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对30000多种化合物进行高通量筛选,以寻找抗胃肠道线虫寄生虫的驱虫药。

High-throughput screening of more than 30,000 compounds for anthelmintics against gastrointestinal nematode parasites.

作者信息

Elfawal Mostafa A, Goetz Emily, Kim You-Mie, Chen Paulina, Savinov Sergey N, Barasa Leonard, Thompson Paul R, Aroian Raffi V

出版信息

bioRxiv. 2024 Oct 31:2024.05.16.594481. doi: 10.1101/2024.05.16.594481.

Abstract

Gastrointestinal nematodes (GINs) are amongst the most common parasites of humans, livestock, and companion animals. GIN parasites infect 1-2 billion people worldwide, significantly impacting hundreds of millions of children, pregnant women, and adult workers, thereby perpetuating poverty. Two benzimidazoles with suboptimal efficacy are currently used to treat GINs in humans as part of mass drug administrations, with many instances of lower-than-expected or poor efficacy and possible resistance. Thus, new anthelmintics are urgently needed. However, screening methods for new anthelmintics using human GINs typically have low throughput. Here, using our novel screening pipeline that starts with human hookworms, we screened 30,238 unique small molecules from a wide range of compound libraries, including ones with generic diversity, repurposed drugs, natural derivatives, known mechanisms of action, as well as multiple target-focused libraries (e.g., targeting kinases, GPCRs, and neuronal proteins). We identified 55 compounds with broad-spectrum activity against adult stages of two evolutionary divergent GINs, hookworms ( ) and whipworms ( ). Based on known databases, the targets of these 55 compounds were predicted in nematode parasites. One novel scaffold from the diversity set library, F0317-0202, showed good activity (high motility inhibition) against both GINs. To better understand this novel scaffold's structure-activity relationships (SAR), we screened 28 analogs and created SAR models highlighting chemical and functional groups required for broad-spectrum activity. These studies validate our new and efficient screening pipeline at the level of tens of thousands of compounds and provide an important set of new GIN-active compounds for developing novel and broadly-active anthelmintics.

摘要

胃肠道线虫(GINs)是人类、家畜和伴侣动物中最常见的寄生虫之一。全球有10亿至20亿人感染GIN寄生虫,对数亿儿童、孕妇和成年劳动者产生了重大影响,从而使贫困状况持续存在。目前,作为大规模药物管理的一部分,两种疗效欠佳的苯并咪唑类药物被用于治疗人类的GIN感染,存在许多疗效低于预期或疗效不佳以及可能产生耐药性的情况。因此,迫切需要新的驱虫药。然而,使用人类GIN进行新型驱虫药筛选的方法通常通量较低。在此,我们使用从人钩虫开始的新型筛选流程,从广泛的化合物库中筛选了30238种独特的小分子,这些化合物库包括具有一般多样性的库、重新利用的药物、天然衍生物、已知作用机制的库,以及多个靶向特定靶点的库(例如,靶向激酶、G蛋白偶联受体和神经元蛋白的库)。我们鉴定出55种对两种进化上不同的GIN成虫阶段具有广谱活性的化合物,即钩虫( )和鞭虫( )。基于已知数据库,预测了这55种化合物在线虫寄生虫中的靶点。来自多样性集库的一种新型骨架F0317 - 0202对两种GIN均表现出良好的活性(高运动抑制率)。为了更好地理解这种新型骨架的构效关系(SAR),我们筛选了28种类似物并创建了SAR模型,突出了广谱活性所需的化学和官能团。这些研究在数万种化合物的层面上验证了我们新的高效筛选流程,并为开发新型广谱活性驱虫药提供了一组重要的新型GIN活性化合物。

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