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超越运动性:一种用于评估驱虫药的多参数适应性检测框架

Beyond Motility: A Multiparametric Fitness Assay Framework to Evaluate Anthelmintics in .

作者信息

Anesko Kyle, Midou Sarah, Ruggiero-Ruff Rebecca, He Yuxin, Lotfy Meritte, Jennett Jennell, Nair Meera G, Dillman Adler R

机构信息

Department of Nematology, University of California, Riverside, California, 92521, USA.

Division of Biomedical Sciences, School of Medicine, University of California, Riverside, CA, USA.

出版信息

bioRxiv. 2025 Jun 17:2025.06.12.659374. doi: 10.1101/2025.06.12.659374.

Abstract

We adapted a multiparametric fitness assay panel-including ATP quantification, larval growth, pigmentation, and cuticle permeability-to assess viability . To validate this system, we benchmarked two known anthelmintics with distinct modes of action: quinidine, a heme detoxification disruptor, and pyrantel pamoate, a neuromuscular antagonist. We then applied this framework to NCR247, a plant-derived heme-sequestering peptide with proposed antiparasitic activity. While the assay panel sensitively detected physiological disruption by known anthelmintics, NCR247 did not significantly impair parasite fitness across any tested parameter. These findings highlight the utility of integrated viability assays and suggest further or delivery-optimized studies may be necessary to evaluate NCR247 efficacy.

摘要

我们采用了一个多参数适应性检测面板,包括ATP定量、幼虫生长、色素沉着和表皮通透性,来评估活力。为了验证该系统,我们对两种作用方式不同的已知驱虫药进行了基准测试:奎尼丁,一种血红素解毒破坏剂,和噻嘧啶,一种神经肌肉拮抗剂。然后,我们将这个框架应用于NCR247,一种具有抗寄生虫活性的植物源血红素螯合肽。虽然检测面板灵敏地检测到了已知驱虫药引起的生理破坏,但NCR247在任何测试参数上都没有显著损害寄生虫的适应性。这些发现突出了综合活力检测的实用性,并表明可能需要进一步的制剂或给药优化研究来评估NCR247的疗效。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e35a/12262717/1cd425840d4e/nihpp-2025.06.12.659374v1-f0001.jpg

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