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Microfluidic Devices in Advanced Caenorhabditis elegans Research

机译:先进秀丽隐杆线虫的微流控装置研究

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摘要

The study of model organisms is very important in view of their potential for application to human therapeutic uses. One such model organism is the nematode worm, Caenorhabditis elegans. As a nematode, C. elegans have similar to 65% similarity with human disease genes and, therefore, studies on C. elegans can be translated to human, as well as, C. elegans can be used in the study of different types of parasitic worms that infect other living organisms. In the past decade, many efforts have been undertaken to establish interdisciplinary research collaborations between biologists, physicists and engineers in order to develop microfluidic devices to study the biology of C. elegans. Microfluidic devices with the power to manipulate and detect bio-samples, regents or biomolecules in micro-scale environments can well fulfill the requirement to handle worms under proper laboratory conditions, thereby significantly increasing research productivity and knowledge. The recent development of different kinds of microfluidic devices with ultra-high throughput platforms has enabled researchers to carry out worm population studies. Microfluidic devices primarily comprises of chambers, channels and valves, wherein worms can be cultured, immobilized, imaged, etc. Microfluidic devices have been adapted to study various worm behaviors, including that deepen our understanding of neuromuscular connectivity and functions. This review will provide a clear account of the vital involvement of microfluidic devices in worm biology.
机译:考虑到模型生物在人类治疗中的潜在应用,研究非常重要。一种这样的模式生物是线虫,秀丽隐杆线虫。作为线虫,秀丽隐杆线虫与人类疾病基因的相似性接近65%,因此,对秀丽隐杆线虫的研究可以翻译为人,并且秀丽隐杆线虫可以用于研究不同类型的寄生虫感染其他生物的蠕虫。在过去的十年中,已经进行了许多努力来建立生物学家,物理学家和工程师之间的跨学科研究合作,以开发用于研究秀丽隐杆线虫生物学的微流体装置。具有在微尺度环境中操作和检测生物样品,试剂或生物分子的能力的微流体设备可以很好地满足在适当的实验室条件下处理蠕虫的要求,从而显着提高了研究效率和知识。具有超高通量平台的各种微流体设备的最新发展使研究人员能够进行蠕虫种群研究。微流体设备主要包括腔室,通道和阀门,蠕虫可在其中进行培养,固定,成像等。微流体设备已被适配用于研究各种蠕虫行为,包括加深我们对神经肌肉连通性和功能的理解。这篇综述将清楚地说明微流体装置在蠕虫生物学中的重要参与。

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