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Low electric field DNA separation and in-channel amperometric detection by microchip capillary electrophoresis

机译:低电场DNA分离和微芯片毛细管电泳进行通道内安培检测

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摘要

Miniaturisation of microchip capillary electrophoresis (MCE) is becoming an increasingly important research topic, particularly in areas related to micro total analysis systems or lab on a chip. One of the important features associated with the miniaturised MCE system is the portable power supply unit. In this work, a very low electric field MCE utilising an amperometric detection scheme was designed for use in DNA separation. The device was fabricated from a glass/ polydimethylsiloxane hybrid engraved microchannel with platinum electrodes sputtered onto a glass substrate. Measurement was based on a three-electrode arrangement, and separation was achieved using a very low electric field of 12 V/cm and sample volume of 1.5 ;C;l. The device was tested using two commercial DNA markers of different base pair sizes. The results are in agreement with conventional electrophoresis, but with improved resolution. The sensitivity consistently higher than 100 nA, and the separation time approximately 45 min, making this microchip an ideal tool for DNA analysis.
机译:微芯片毛细管电泳(MCE)的小型化正成为一个日益重要的研究主题,尤其是在与微全分析系统或芯片实验室有关的领域。与微型MCE系统相关的重要功能之一是便携式电源设备。在这项工作中,利用安培检测方案设计了一个非常低的电场MCE,用于DNA分离。该装置由玻璃/聚二甲基硅氧烷混合雕刻微通道制成,其中铂电极溅射到玻璃基板上。测量基于三电极排列,并且使用12 V / cm的极低电场和1.5 µC; l的样品体积进行分离。使用两个不同碱基对大小的商业DNA标记对设备进行了测试。结果与常规电泳一致,但分辨率提高。灵敏度始终高于100 nA,分离时间约为45分钟,使该微芯片成为DNA分析的理想工具。

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