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默克全球健康开放图书馆针对曼氏血吸虫进行的体外筛选鉴定出两种具有抗血吸虫活性的新物质,以供进一步研发。

Merck Open Global Health Library in vitro screening against Schistosoma mansoni identified two new substances with antischistosomal activities for further development.

作者信息

Ueberall Monique Evelyn, Berchthold Martina, Häberli Cécile, Lindemann Sven, Spangenberg Thomas, Keiser Jennifer, Grevelding Christoph G

机构信息

Institute of Parasitology, BFS, Justus Liebig University Giessen, Giessen, Germany.

Department of Medical Parasitology and Infection Biology, Swiss Tropical and Public Health Institute, Allschwil, Switzerland.

出版信息

Parasit Vectors. 2025 Feb 4;18(1):40. doi: 10.1186/s13071-024-06648-0.

Abstract

BACKGROUND

Schistosomiasis, which is caused by the parasite Schistosoma mansoni as well as other species of the trematode genus Schistosoma, leads to chronic inflammation and finally to liver fibrosis. If untreated, the disease can cause life-threatening complications. The current treatment of schistosomiasis relies on a single drug, praziquantel (PZQ). However, there is increasing concern about emerging resistance to PZQ due to its frequent use.

METHODS

To identify potential alternative drugs for repurposing, the Open Global Health Library (OGHL) was screened in vitro, using two different screening workflows at two institutions, against adult S. mansoni couples and newly transformed schistosomula. This was followed by confirmation of the effects of the lead structures against adult worms.

RESULTS

In vitro screening at one of the institutions identified two fast-acting substances affecting worm physiology (OGHL00022, OGHL00121). The effects of the two lead structures were investigated in more detail by confocal laser scanning microscopy and 5-ethynyl 2´-deoxyuridine (EdU) assays to assess morphological effects and stem cell effects. Both substances showed negative effects on stem cell proliferation in S. mansoni but no further morphological changes. The ECvalues of both compounds were determined, with values for compound OGHL00022 of 5.955 µM for pairing stability, 10.88 µM for attachment, and 18.77 µM for motility, while the values for compound OGHL00121 were 7.088 µM for pairing stability, 8.065 µM for attachment, and 6.297 µM for motility 24 h after treatment. Furthermore, S. mansoni couples were treated in vitro with these two lead structures simultaneously to check for additive effects, which were found with respect to reduced motility. The second in vitro screening, primarily against newly transformed schistosomula and secondarily against adult worms, identified four lead structures in total (OGHL00006, OGHL00022, OGHL00169, OGHL00217). In addition, one of the tested analogues of the hits OGHL00006, OGHL00169, and OGHL00217 showed effects on both stages.

CONCLUSIONS

In two independent in vitro screening approaches against two stages of S. mansoni one common interesting structure with rapid effects was identified, OGHL00022, which provides opportunities for further development.

摘要

背景

血吸虫病由曼氏血吸虫以及血吸虫属的其他吸虫物种引起,会导致慢性炎症并最终引发肝纤维化。若不治疗,该疾病会引发危及生命的并发症。目前血吸虫病的治疗依赖单一药物吡喹酮(PZQ)。然而,由于其频繁使用,对PZQ产生耐药性的问题日益受到关注。

方法

为了确定潜在的可重新利用的替代药物,在两个机构使用两种不同的筛选流程,针对成年曼氏血吸虫配对虫体和新转化的童虫,对开放全球健康库(OGHL)进行了体外筛选。随后对先导结构对成虫的作用进行了确认。

结果

在其中一个机构进行的体外筛选鉴定出两种影响虫体生理的速效物质(OGHL00022、OGHL00121)。通过共聚焦激光扫描显微镜和5-乙炔基-2'-脱氧尿苷(EdU)测定法更详细地研究了这两种先导结构的作用,以评估形态学效应和干细胞效应。两种物质均对曼氏血吸虫的干细胞增殖有负面影响,但未引起进一步的形态学变化。测定了两种化合物的半数有效浓度(EC值),化合物OGHL00022配对稳定性的EC值为5.955 μM,附着的EC值为10.88 μM,活动能力的EC值为18.77 μM,而化合物OGHL00121处理24小时后配对稳定性的EC值为7.088 μM,附着的EC值为8.065 μM,活动能力的EC值为6.297 μM。此外,用这两种先导结构同时对曼氏血吸虫配对虫体进行体外处理,以检查是否存在相加效应,结果发现对活动能力降低有相加效应。第二次体外筛选主要针对新转化的童虫,其次针对成虫,总共鉴定出四种先导结构(OGHL00006、OGHL00022、OGHL00169、OGHL00217)。此外,命中物OGHL00006、OGHL00169和OGHL00217的一种测试类似物对两个阶段均有作用。

结论

在针对曼氏血吸虫两个阶段的两种独立体外筛选方法中,鉴定出一种具有快速作用的共同有趣结构OGHL00022,这为进一步开发提供了机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/447b/11796224/9ac964c54176/13071_2024_6648_Figa_HTML.jpg

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