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SDS-CGE of proteins in microchannels made of SU-8 films.

机译:SU-8膜制成的微通道中蛋白质的SDS-CGE。

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This work describes the SDS-CGE of proteins carried out in microchannels made of the negative photoresist EPON SU-8. Embedded electrophoretic microchannels have been fabricated with a multilayer technology based on bonding and releasing steps of stacked SU-8 films. This technology allows the monolithic integration of the electrodes in the device. A high wafer fabrication yield and mass production compatibility guarantees low costs and high reliability. A poly(methyl methacrylate) (PMMA) packaging allows an easy setup and replacement of the device for electrophoresis experiments. In addition, the wire-bonding step is avoided. The electrophoretic mobilities of four proteins have been measured in microchannels filled with polyacrylamide. Different pore sizes have been tested obtaining their Ferguson plots. Finally, a separation of two proteins (20 and 36 kDa) has been carried out confirming that this novel device is suitable for protein separation. A resolution of 2.75 is obtained. This is the first time that this SU-8 microfluidic technology has been validated for SDS-CGE of proteins. This technology offers better separation performance than glass channels, at lower costs and with an easy packaging procedure.
机译:这项工作描述了由负性光刻胶EPON SU-8制成的微通道中进行的蛋白质的SDS-CGE。嵌入式电泳微通道已经使用基于堆叠SU-8薄膜的键合和释放步骤的多层技术制造。该技术允许将电极单片集成到设备中。高晶圆制造良率和大规模生产兼容性保证了低成本和高可靠性。聚(甲基丙烯酸甲酯)(PMMA)包装使电泳实验的装置易于安装和更换。另外,避免了引线键合步骤。已经在填充有聚丙烯酰胺的微通道中测量了四种蛋白质的电泳迁移率。已经测试了不同的孔径以获得其弗格森图。最后,已经进行了两种蛋白质(20和36 kDa)的分离,证实了这种新颖的设备适用于蛋白质分离。获得2.75的分辨率。这是该SU-8微流体技术首次通过蛋白质SDS-CGE验证。与玻璃通道相比,该技术提供了更好的分离性能,且成本较低且包装过程简单。

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