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Microfabricated polymer chip for capillary gel electrophoresis

机译:用于毛细管电泳的超细聚合物芯片

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摘要

A polymer (PDMS: poly(dimethylsiloxane)) microchip for capillary gel electrophoresis that can separate different sizes of DNA molecules in a small experimental scale is presented. This microchip can be easily produced by a simple PDMS molding method against a microfabricated master without the use of elaborate bonding processes. This PDMS microchip could be used as a single use device unlike conventional microchips made of glass, quartz or silicon. The capillary channel on the chip was partially filled with agarose gel that can enhance separation resolution of different sizes of DNA molecules and can shorten the channel length required for the separation of the sample compared to capillary electrophoresis in free-flow or polymer solution format. We discuss the optimal conditions for the gel preparation that could be used in the microchannel. DNA molecules were successfully driven by an electric field and separated to form bands in the range of 100 bp to 1 kbp in a 2.0% agarose-filled microchannel with 8 mm of effective separation length.
机译:提出了一种用于毛细管电泳的聚合物(PDMS:聚二甲基硅氧烷)微芯片,可以在小实验规模下分离不同大小的DNA分子。这种微芯片可以通过简单的PDMS成型方法轻松地针对微加工母盘生产,而无需使用复杂的键合工艺。与由玻璃,石英或硅制成的常规微芯片不同,该PDMS微芯片可以用作一次性设备。与自由流动​​或聚合物溶液形式的毛细管电泳相比,琼脂糖凝胶部分填充了芯片上的毛细管通道,可以增强不同大小的DNA分子的分离分辨率,并可以缩短样品分离所需的通道长度。我们讨论了可用于微通道的凝胶制备的最佳条件。 DNA分子在电场作用下成功驱动并在2.0%琼脂糖填充的微通道中分离,形成100 bp至1 kbp范围内的条带,有效分离长度为8 mm。

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