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Chemical and biological threat-agent detection using electrophoresis-based lab-on-a-chip devices

机译:使用基于电泳的芯片实验室设备检测化学和生物威胁剂

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摘要

The ability to separate complex mixtures of analytes has made capillary electrophoresis (CE) a powerful analytical tool since its modern configuration was first introduced over 25 years ago. The technique found new utility with its application to the microfluidics based lab-on-a-chip platform (i.e., microchip), which resulted in ever smaller footprints, sample volumes, and analysis times. These features, coupled with the technique's potential for portability, have prompted recent interest in the development of novel analyzers for chemical and biological threat agents. This article will comment on three main areas of microchip CE as applied to the separation and detection of threat agents: detection techniques and their corresponding limits of detection, sampling protocol and preparation time, and system portability. These three areas typify the broad utility of lab-on-a-chip for meeting critical, present-day security, in addition to illustrating areas wherein advances are necessary.
机译:自从25年前首次引入毛细管电泳(CE)以来,毛细管电泳(CE)的分离能力就使其成为一种强大的分析工具。该技术在基于微流体的芯片实验室平台(即微芯片)中的应用中发现了新的实用工具,从而使占地面积,样品量和分析时间变得越来越小。这些功能,再加上该技术具有便携性的潜力,引起了人们对新型化学和生物威胁分析仪的兴趣。本文将对微芯片CE应用于威胁因子分离和检测的三个主要领域进行评论:检测技术及其相应的检测限,采样协议和准备时间以及系统可移植性。这三个领域代表了芯片实验室在满足当今关键安全性方面的广泛用途,此外还说明了需要改进的领域。

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