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Combined Dielectrophoresis and Impedance Systems for Bacteria Analysis in Microfluidic On-Chip Platforms

机译:介电电泳和阻抗系统相结合用于微流控芯片平台上的细菌分析

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摘要

Bacteria concentration and detection is time-consuming in regular microbiology procedures aimed to facilitate the detection and analysis of these cells at very low concentrations. Traditional methods are effective but often require several days to complete. This scenario results in low bioanalytical and diagnostic methodologies with associated increased costs and complexity. In recent years, the exploitation of the intrinsic electrical properties of cells has emerged as an appealing alternative approach for concentrating and detecting bacteria. The combination of dielectrophoresis (DEP) and impedance analysis (IA) in microfluidic on-chip platforms could be key to develop rapid, accurate, portable, simple-to-use and cost-effective microfluidic devices with a promising impact in medicine, public health, agricultural, food control and environmental areas. The present document reviews recent DEP and IA combined approaches and the latest relevant improvements focusing on bacteria concentration and detection, including selectivity, sensitivity, detection time, and conductivity variation enhancements. Furthermore, this review analyses future trends and challenges which need to be addressed in order to successfully commercialize these platforms resulting in an adequate social return of public-funded investments.
机译:在常规的微生物学程序中,细菌的浓缩和检测很费时,目的是促进以非常低的浓度检测和分析这些细胞。传统方法很有效,但通常需要几天才能完成。这种情况导致了较低的生物分析和诊断方法,并随之增加了成本和复杂性。近年来,对细胞内在电学性质的开发已成为一种吸引人的浓缩和检测细菌的替代方法。微流体芯片平台上的介电电泳(DEP)和阻抗分析(IA)的结合可能是开发快速,准确,便携式,易于使用且具有成本效益的微流体设备的关键,对医疗,公共卫生领域产生了可喜的影响,农业,食品控制和环境领域。本文回顾了最近的DEP和IA组合方法以及针对细菌浓度和检测的最新相关改进,包括选择性,灵敏度,检测时间和电导率变化增强。此外,本文还分析了未来的趋势和挑战,以便成功实现这些平台的商业化,从而获得公共投资的适当社会回报。

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