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A Porous Microfluidic Chip for Protein Extraction Based on Solid Phase Extraction Method

机译:基于固相萃取法的蛋白质萃取多孔微流体芯片

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Based on the principle of solid phase extraction (SPE) and the special immunoreaction, a microfluidic chip integrated with porous matrix was developed for protein extraction. Porous matrix was achieved by electrochemical etching silicon in a HF/ethanol mixture, which was coated on the wall of the rectangular channel of the microchip to provide a surface-enlarging matrix. The surface morphology of the bare porous silicon and the porous silicon modified with the protein has been characterized by SEM. Non-porous chip and porous chip were used to extract protein. Compared with non-porous matrix, the porous matrix achieved higher extracted efficiency of protein. Then two methods of surface modification were employed on porous matrix for protein extraction. The surface modification with Protein A could extract more protein with less non-special absorption. Evaluation of the structure of the solid phase matrix and the surface modification process in the microfluidic chip, the porous microfluidic chip is able to be suitable for incorporation into micro total analysis system (μTAS).
机译:基于固相萃取(SPE)和特殊免疫反应的原理,开发了与多孔基质集成的微流体芯片用于蛋白质提取。通过在HF /乙醇混合物中通过电化学蚀刻硅进行多孔基质,其涂覆在微芯片的矩形通道的壁上以提供表面扩大基质。通过SEM表征了裸色硅和用蛋白质改性多孔硅的表面形态。非多孔芯片和多孔芯片用于提取蛋白质。与无孔基质相比,多孔基质达到较高提取的蛋白质效率。然后在多孔基质上采用两种表面改性方法,用于蛋白质萃取。用蛋白质A的表面改性可以提取更多的蛋白质,具有较少的非特殊吸收。对微流体芯片的固相矩阵和表面改性过程的结构评价,多孔微流体芯片能够适用于微量分析系统(μTAS)。

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