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Electrical force-based continuous cell lysis and sample separation techniques for development of integrated microfluidic cell analysis system: A review

机译:基于电动的连续细胞裂解和样品分离技术开发集成的微流细胞分析系统:综述

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摘要

Cell lysis and the separation of intracellular components are key steps in the analysis of intracellular components. Advances in micro-electro-mechanical system (MEMS) technologies have prompted a number of investigations into the potential applications of microfluidics to the development of cell lysis and sample separation methods. The electrical force is considered to have excellent potential for parallelizing and automating cell lysis and sample separation methods. In this review, we focus on research works related to electrical force based continuous cell lysis and sample separation techniques. We provide brief explanations of the major developed techniques and summarize their advantages and limitations with respect to their applicability as a part of integrated microfluidic cell analysis system.
机译:细胞裂解和细胞内组分的分离是细胞内组分分析中的关键步骤。微机电系统(MEMS)技术的进步促使人们对微流体在细胞裂解和样品分离方法开发中的潜在应用进行了许多研究。该电场力对于细胞裂解和样品分离方法的并行化和自动化具有极好的潜力。在这篇综述中,我们专注于与基于电力的连续细胞裂解和样品分离技术有关的研究工作。我们提供了主要开发技术的简要说明,并总结了它们作为集成微流细胞分析系统一部分的适用性方面的优点和局限性。

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