微流体技术在秀丽隐杆线虫研究中的应用。

Adriana San-Miguel, Hang Lu
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引用次数: 113

摘要

微流体已经成为一套强大的工具,极大地推进了一些生物研究领域,包括使用秀丽隐杆线虫的研究。微流体的使用使许多传统方法无法进行的实验成为可能。今天,有许多例子证明了使用微流体技术进行秀丽隐杆线虫研究的主要优势,实现了精确的环境条件,并促进了蠕虫的处理。例子包括在精确的化学或气味刺激下的行为分析,在明确的结构环境下的运动研究,甚至是芯片上的长期培养。此外,微流体使耦合蠕虫处理和成像成为可能,从而促进遗传筛选、光遗传学研究和激光烧蚀实验。本文综述了微流控技术在秀丽隐杆线虫研究中的一些应用,并对秀丽隐杆线虫研究微流控设备的设计、制造和使用提供了指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Microfluidics as a tool for C. elegans research.

Microfluidics has emerged as a set of powerful tools that have greatly advanced some areas of biological research, including research using C. elegans. The use of microfluidics has enabled many experiments that are otherwise impossible with conventional methods. Today there are many examples that demonstrate the main advantages of using microfluidics for C. elegans research, achieving precise environmental conditions and facilitating worm handling. Examples range from behavioral analysis under precise chemical or odor stimulation, locomotion studies in well-defined structural surroundings, and even long-term culture on chip. Moreover, microfluidics has enabled coupling worm handling and imaging thus facilitating genetic screens, optogenetic studies, and laser ablation experiments. In this article, we review some of the applications of microfluidics for C. elegans research and provide guides for the design, fabrication, and use of microfluidic devices for C. elegans research studies.

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