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The Stress-Chip: A microfluidic platform for stress analysis in Caenorhabditis elegans

机译:应力芯片:秀丽隐杆线虫的微流控平台,用于应力分析。

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摘要

An organism’s ability to mount a physiological response to external stressors is fundamental to its interaction with the environment. Experimental exploration of these interactions benefits greatly from the ability to maintain tight control of the environment, even under conditions in which it would be normal for the subject to flee the stressor. Here we present a nematode research platform that pairs automated image acquisition and analysis with a custom microfluidic device. This platform enables tight environmental control in low-density, single-worm arenas, which preclude animal escape while still allowing a broad range of behavioral activities. The platform is easily scalable, with two 50 arena arrays per chip and an imaging capacity of 600 animals per scanning device. Validating the device using dietary, osmotic, and oxidative stress indicates that it should be of broad use as a research platform, including eventual adaptation for additional stressors, anthelmintic-drug screening, and toxicology studies.
机译:生物体对外界压力产生生理反应的能力是其与环境相互作用的基础。对这些相互作用的实验探索极大地受益于保持对环境的严格控制的能力,即使在受试者逃离应激源的正常情况下也是如此。在这里,我们介绍了一个线虫研究平台,该平台将自动图像采集和分析与定制的微流体设备结合在一起。该平台可在低密度单蠕虫场所进行严格的环境控制,从而防止动物逃逸,同时仍允许进行广泛的行为活动。该平台可轻松扩展,每个芯片有两个50个竞技场阵列,每个扫描设备的成像能力为600只动物。使用饮食,渗透压和氧化应激对设备进行验证表明,该设备应作为研究平台广泛使用,包括最终适应其他应激源,驱虫药筛选和毒理学研究。

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