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同步连续流区带电泳

Synchronized, continuous-flow zone electrophoresis.

作者信息

Zalewski Dawid R, Kohlheyer Dietrich, Schlautmann Stefan, Gardeniers Han J G E

机构信息

MESA+ Institute for Nanotechnology, University of Twente, P.O. Box 217, 7500AE Enschede, The Netherlands.

出版信息

Anal Chem. 2008 Aug 15;80(16):6228-34. doi: 10.1021/ac800567n. Epub 2008 Jul 12.

Abstract

A new method for performing continuous electrophoretic separation of complex mixtures in microscale devices is proposed. Unlike in free-flow electrophoresis devices, no mechanical pumping is required--both fluid transport and separation are driven electrokinetically. This gives the method great potential for on-a-chip integration in multistep analytical systems. The method enables us to collect fractionated sample and tenfold purification is possible. The model of the operation is presented and a detailed description of the optimal conditions for performing purification is given. The chip devices with 10-microm-deep separation chamber of 1.5 mm x 4 mm in size were fabricated in glass. A standard microchip electrophoresis setup was used. Continuous separation of rhodamine B, rhodamine 6G, and fluorescein was accomplished. Purification was demonstrated on a mixture containing rhodamine B and fluorescein, and the recovery of both fractions was achieved. The results show the feasibility of the method.

摘要

提出了一种在微尺度装置中对复杂混合物进行连续电泳分离的新方法。与自由流动电泳装置不同,该方法无需机械泵送——流体传输和分离均由电动驱动。这使得该方法在多步分析系统的芯片集成方面具有巨大潜力。该方法使我们能够收集分馏后的样品,并且有可能实现十倍的纯化。给出了操作模型,并详细描述了进行纯化的最佳条件。在玻璃中制造了尺寸为1.5毫米×4毫米、分离室深度为10微米的芯片装置。使用了标准的微芯片电泳装置。实现了罗丹明B、罗丹明6G和荧光素的连续分离。对含有罗丹明B和荧光素的混合物进行了纯化演示,并实现了两个馏分的回收。结果表明了该方法的可行性。

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