A high-throughput sensory assay for parasitic and free-living nematodes.

IF 1.5 4区 生物学 Q4 CELL BIOLOGY Integrative Biology Pub Date : 2023-04-11 DOI:10.1093/intbio/zyad010
Leonardo R Nunn, Terry D Juang, David J Beebe, Nicolas J Wheeler, Mostafa Zamanian
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Abstract

Sensory pathways first elucidated in Caenorhabditis elegans are conserved across free-living and parasitic nematodes, even though each species responds to a diverse array of compounds. Most nematode sensory assays are performed by tallying observations of worm behavior on two-dimensional planes using agarose plates. These assays have been successful in the study of volatile sensation but are poorly suited for investigation of water-soluble gustation or parasitic nematodes without a free-living stage. In contrast, gustatory assays tend to be tedious, often limited to the manipulation of a single individual at a time. We have designed a nematode sensory assay using a microfluidics device that allows for the study of gustation in a 96-well, three-dimensional environment. This device is suited for free-living worms and parasitic worms that spend their lives in an aqueous environment, and we have used it to show that ivermectin inhibits the gustatory ability of vector-borne parasitic nematodes. Insight box Nematodes are powerful model organisms for understanding the sensory biology of multicellular eukaryotes, and many parasitic species cause disease in humans. Simple sensory assays performed on agarose plates have been the bedrock for establishing the neuronal, genetic, and developmental foundations for many sensory modalities in nematodes. However, these classical assays are poorly suited for translational movement of many parasitic nematodes and the sensation of water-soluble molecules (gustation). We have designed a device for high-throughput nematode sensory assays in a gel matrix. This 'gustatory microplate' is amenable to several species and reveals novel responses by free-living and parasitic nematodes to cues and drugs.

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寄生线虫和自由生活线虫的高通量感官测定。
在秀丽隐杆线虫中首次阐明的感觉通路在自由生活和寄生线虫中是保守的,尽管每个物种对不同的化合物都有反应。大多数线虫感官测定是通过使用琼脂糖板在二维平面上对蠕虫行为的观察结果进行统计来进行的。这些测定在挥发性感觉的研究中是成功的,但不适合在没有自由生活阶段的情况下研究水溶性味觉或寄生线虫。相比之下,味觉测定往往是乏味的,通常一次只能对单个个体进行操作。我们使用微流体设备设计了一种线虫感觉测定法,该装置可以在96孔的三维环境中研究味觉。该设备适用于在水环境中生活的自由生活蠕虫和寄生蠕虫,我们已经用它来证明伊维菌素抑制媒介寄生线虫的味觉能力。洞察盒线虫是理解多细胞真核生物感官生物学的强大模式生物,许多寄生物种会导致人类疾病。在琼脂糖板上进行的简单感觉测定是建立线虫许多感觉模式的神经元、遗传和发育基础的基础。然而,这些经典的测定法不太适合许多寄生线虫的平移运动和水溶性分子的感觉(味觉)。我们设计了一种在凝胶基质中进行高通量线虫感官测定的装置。这种“味觉微板”适用于几个物种,并揭示了自由生活和寄生线虫对线索和药物的新反应。
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来源期刊
Integrative Biology
Integrative Biology 生物-细胞生物学
CiteScore
4.90
自引率
0.00%
发文量
15
审稿时长
1 months
期刊介绍: Integrative Biology publishes original biological research based on innovative experimental and theoretical methodologies that answer biological questions. The journal is multi- and inter-disciplinary, calling upon expertise and technologies from the physical sciences, engineering, computation, imaging, and mathematics to address critical questions in biological systems. Research using experimental or computational quantitative technologies to characterise biological systems at the molecular, cellular, tissue and population levels is welcomed. Of particular interest are submissions contributing to quantitative understanding of how component properties at one level in the dimensional scale (nano to micro) determine system behaviour at a higher level of complexity. Studies of synthetic systems, whether used to elucidate fundamental principles of biological function or as the basis for novel applications are also of interest.
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