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首页> 外文期刊>Briefings in functional genomics >Microfluidic devices for embryonic and larval zebrafish studies
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Microfluidic devices for embryonic and larval zebrafish studies

机译:用于胚胎和幼虫斑马鱼研究的微流体装置

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摘要

Zebrafish or Danio rerio is an established model organism for studying the genetic, neuronal and behavioral bases of diseases and for toxicology and drug screening. The embryonic and larval stages of zebrafish have been used extensively in fundamental and applied research due to advantages offered such as body transparency, small size, low cost of cultivation and high genetic homology with humans. However, the manual experimental methods used for handling and investigating this organism are limited due to their low throughput, labor intensiveness and inaccuracy in delivering external stimuli to the zebrafish while quantifying various neuronal and behavioral responses. Microf luidic and lab-on-α-chip devices have emerged as ideal technologies to overcome these challenges. In this review paper, the current microf luidic approaches for investigation of behavior and neurobiology of zebrafish at embryonic and larval stages will be reviewed. Our focus will be to provide an overview of the microfluidic methods used to manipulate (deliver and orient), immobilize and expose or inject zebrafish embryos or larvae, followed by quantification of their responses in terms of neuron activities and movement.We will also provide our opinion in terms of the direction that the field of zebrafish microf luidics is heading toward in the area of biomedical engineering.
机译:Zebrafish或Danio Rerio是一种既定的模型生物,用于研究遗传,神经元和行为基础和毒理学和药物筛查。斑马鱼的胚胎和幼虫阶段由于身体透明度,体积小,培养和人类高遗传同源性等优点而广泛地使用了基本和应用的研究。然而,用于处理和研究该生物的手动实验方法是由于它们的低产量,劳动激力和不准确而在量化各种神经元和行为反应的同时为斑马鱼提供外部刺激而受到限制。 Microf Luidic和Lab-On-al-Chip器件已成为克服这些挑战的理想技术。在本文中,将审查胚胎和幼虫阶段斑马鱼行为和神经生物学的目前的Microf Microf方法。我们的重点是提供用于操纵(递送和定向),固定和暴露或注射斑马鱼胚胎或幼虫的微流体方法的概述,然后在神经元活动和运动方面定量他们的反应。我们还将提供我们的Zebrafish Microf Luidics领域朝向生物医学工程领域的方向方面的意见。

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