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Recent developments in optical detection methods for microchip separations

机译:用于微芯片分离的光学检测方法的最新进展

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摘要

This paper summarizes the features and performances of optical detection systems currently applied in order to monitor separations on microchip devices. Fluorescence detection, which delivers very high sensitivity and selectivity, is still the most widely applied method of detection. Instruments utilizing laser-induced fluorescence (LIF) and lamp-based fluorescence along with recent applications of light-emitting diodes (LED) as excitation sources are also covered in this paper. Since chemiluminescence detection can be achieved using extremely simple devices which no longer require light sources and optical components for focusing and collimation, interesting approaches based on this technique are presented, too. Although UV/vis absorbance is a detection method that is commonly used in standard desktop electrophoresis and liquid chromatography instruments, it has not yet reached the same level of popularity for microchip applications. Current applications of UV/vis absorbance detection to microchip separations and innovative approaches that increase sensitivity are described. This article, which contains 85 references, focuses on developments and applications published within the last three years, points out exciting new approaches, and provides future perspectives on this field.
机译:本文总结了当前用于监视微芯片设备上的分离的光学检测系统的特性和性能。荧光检测具有很高的灵敏度和选择性,仍然是应用最广泛的检测方法。本文还介绍了利用激光诱导荧光(LIF)和基于灯的荧光以及将发光二极管(LED)作为激发源的最新应用的仪器。由于可以使用非常简单的设备实现化学发光检测,这些设备不再需要用于聚焦和准直的光源和光学组件,因此也提出了基于此技术的有趣方法。尽管UV / vis吸光度是标准台式电泳和液相色谱仪中常用的一种检测方法,但在微芯片应用中尚未达到相同的普及程度。本文介绍了紫外/可见光吸收检测在微芯片分离中的当前应用以及提高灵敏度的创新方法。本文包含85个参考文献,重点介绍了过去三年中发布的开发和应用程序,指出了令人兴奋的新方法,并提供了该领域的未来观点。

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