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Label-free fluorescence detection in capillary and microchip electrophoresis

机译:毛细管电泳和微芯片电泳中的无标记荧光检测

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Herein, we summarize the current status of native fluorescence detection in microchannel electrophoresis, with a strong focus on chip-based systems. Fluorescence detection is a powerful technique with unsurpassed sensitivity down to the single-molecule level. Accordingly fluorescence detection is attractive in combination with miniaturised separation techniques. A drawback is, however, the need to derivatize most analytes prior to analysis. This can often be circumvented by utilising excitation light in the UV spectral range in order to excite intrinsic fluorescence. As sensitive absorbance detection is challenging in chip-based systems, deep-UV fluorescence detection is currently one of the most general optical detection techniques in microchip electrophoresis, which is especially attractive for the detection of unlabelled proteins. This review gives an overview of research on native fluorescence detection in capillary (CE) and microchip electrophoresis (MCE) between 1998 and 2008. It discusses material aspects of native fluorescence detection and the instrumentation used, with particular focus on the detector design. Newer developments, featured techniques, and their prospects in the future are also included. In the last section, applications in bioanalysis, drug determination, and environmental analysis are reviewed with regard to limits of detection.
机译:在这里,我们总结了微通道电泳中天然荧光检测的当前状态,重点关注基于芯片的系统。荧光检测是一项功能强大的技术,灵敏度低至单分子水平。因此,荧光检测与小型化分离技术结合是有吸引力的。然而,缺点是需要在分析之前将大多数分析物衍生化。通常可以通过利用紫外线光谱范围内的激发光来激发固有荧光来避免这种情况。由于灵敏的吸光度检测在基于芯片的系统中具有挑战性,因此深紫外荧光检测目前是微芯片电泳中最通用的光学检测技术之一,这对未标记蛋白质的检测尤其有吸引力。这篇综述概述了1998年至2008年之间在毛细管(CE)和微芯片电泳(MCE)中进行自然荧光检测的研究。它讨论了自然荧光检测的实质方面以及所使用的仪器,尤其着重于检测器设计。还包括较新的开发,特色技术及其在未来的前景。在最后一节中,将对检测限方面的生物分析,药物测定和环境分析中的应用进行综述。

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