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Droplet-Interfaced Microchip and Capillary Electrophoretic Separations

机译:液滴界面微芯片和毛细管电泳分离

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Both capillary and chip-based electrophoresis are powerful separation methods widely used for the separation of complex analytical mixtures in the fields of genomics, proteomics, metabolomics, and cellular analysis. However their utility as basic tools in high-throughput analysis and multidimensional separations has been hampered by inefficient or biased sample injection methods. Herein, we address this problem through the development of a simple separation platform that incorporates droplet-based microfluidic module for the encapsulation of analytes prior to the analytical separation. This method allows for the precise and reproducible injection of pL to nL volume isolated plugs into an electrophoretic separation channel. The developed platform is free from inter sample contamination, allows for small sample size, high-throughput analysis, and can provide quantitative analytical information.
机译:毛细管电泳和基于芯片的电泳都是强大的分离方法,广泛用于基因组学,蛋白质组学,代谢组学和细胞分析领域中复杂的分析混合物的分离。但是,它们作为高通量分析和多维分离中的基本工具的实用性受到效率低下或有偏见的样品注入方法的阻碍。在这里,我们通过开发一个简单的分离平台来解决这个问题,该平台结合了基于液滴的微流体模块,用于在分析分离之前封装分析物。该方法可将pL精确且可重现地注入nL体积的分离的塞子中,并注入电泳分离通道中。开发的平台不存在样品间污染,允许小样品量,高通量分析,并可以提供定量分析信息。

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