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一种经过验证的高通量方法,用于在受到来自夏威夷真菌的潜在驱虫天然产物挑战时测定大鼠肺线虫()的活力。

A validated high-throughput method for assaying rat lungworm () motility when challenged with potentially anthelmintic natural products from Hawaiian fungi.

作者信息

Rollins Randi L, Qader Mallique, Gosnell William L, Wang Cong, Cao Shugeng, Cowie Robert H

机构信息

Pacific Biosciences Research Center, University of Hawaii, Honolulu, Hawaii96822, USA.

School of Life Sciences, University of Hawaii at Manoa, Honolulu, Hawaii96822, USA.

出版信息

Parasitology. 2022 Mar 3;149(6):1-28. doi: 10.1017/S0031182022000191.

Abstract

Parasitic nematodes devastate human and animal health. The limited number of anthelmintics available is concerning, especially because of increasing drug resistance. Anthelmintics are commonly derived from natural products, e.g. fungi and plants. This investigation aimed to develop a high-throughput whole organism screening method based on a motility assay using the wMicroTracker system. Anthelmintic activity of extracts from Hawaiian fungi was screened against third-stage larvae of the parasitic nematode , categorized according to the degree of motility reduction. Of the 108 crude samples and fractionated products, 48 showed some level of activity, with 13 reducing motility to 0–25% of the maximum exhibited, including two pure compounds, emethacin B and epicoccin E, neither previously known to exhibit anthelmintic properties. The process of bioassay-guided fractionation is illustrated in detail based on analysis of one of the crude extracts, which led to isolation of lamellicolic anhydride, a compound with moderate activity. This study validates the wMicroTracker system as an economical and high-throughput option for testing large suites of natural products against , adds to the short list of diverse parasites for which it has been validated and highlights the value of and Hawaiian fungi for discovery of new anthelmintics.

摘要

寄生线虫严重危害人类和动物健康。现有驱虫药数量有限,令人担忧,尤其是考虑到耐药性不断增加的情况。驱虫药通常源自天然产物,例如真菌和植物。本研究旨在基于使用wMicroTracker系统的运动性测定开发一种高通量全生物体筛选方法。针对寄生线虫的第三期幼虫筛选了夏威夷真菌提取物的驱虫活性,并根据运动性降低程度进行分类。在108个粗样品和分级产物中,48个显示出一定程度的活性,其中13个将运动性降低至最大运动性的0-25%,包括两种纯化合物,乙氧菌素B和表棒曲霉素E,这两种化合物以前均未显示出驱虫特性。基于对一种粗提物的分析,详细说明了生物测定指导的分级分离过程,该过程导致分离出具有中等活性的化合物层状酸酐。本研究验证了wMicroTracker系统作为一种经济且高通量的方法,可用于测试大量天然产物对[寄生虫名称未给出]的作用,增加了已验证该系统的多种寄生虫的简短清单,并突出了[寄生虫名称未给出]和夏威夷真菌在发现新型驱虫药方面的价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3590/10268104/60a146234435/S0031182022000191_figAb.jpg

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