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Label-free cell separation and sorting in microfluidic systems

机译:微流控系统中的无标记细胞分离和分选

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摘要

Cell separation and sorting are essential steps in cell biology research and in many diagnostic and therapeutic methods. Recently, there has been interest in methods which avoid the use of biochemical labels; numerous intrinsic biomarkers have been explored to identify cells including size, electrical polarizability, and hydrodynamic properties. This review highlights microfluidic techniques used for label-free discrimination and fractionation of cell populations. Microfluidic systems have been adopted to precisely handle single cells and interface with other tools for biochemical analysis. We analyzed many of these techniques, detailing their mode of separation, while concentrating on recent developments and evaluating their prospects for application. Furthermore, this was done from a perspective where inertial effects are considered important and general performance metrics were proposed which would ease comparison of reported technologies. Lastly, we assess the current state of these technologies and suggest directions which may make them more accessible.>FigureA wide range of microfluidic technologies have been developed to separate and sort cells by taking advantage of differences in their intrinsic biophysical properties
机译:细胞分离和分类是细胞生物学研究以及许多诊断和治疗方法中必不可少的步骤。最近,人们对避免使用生化标记的方法产生了兴趣。已经探索了许多内在的生物标记物来鉴定细胞,包括大小,电极化率和流体动力学特性。这篇综述重点介绍了用于无标签区分和细胞群分离的微流体技术。微流体系统已被采用来精确处理单个细胞并与其他工具进行生化分析。我们分析了许多这些技术,详细介绍了它们的分离方式,同时重点介绍了最新进展并评估了它们的应用前景。此外,这是从认为惯性效应很重要并提出了通用性能指标的角度完成的,这将简化已报告技术的比较。最后,我们评估这些技术的当前状态,并提出可能使它们更易于使用的指导。<!-fig ft0-> <!-fig @ position =“ anchor” mode = article f4-> <!- -fig mode =“ anchored” f5-> > Figure <!-fig / graphic | fig / alternatives / graphic mode =“ anchored” m1-> <!-标题a7->范围很广已经开发出微流体技术,以利用其固有生物物理特性的差异来分离和分类细胞

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