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Microchip Dialysis of Proteins Using in Situ Photopatterned Nanoporous Polymer Membranes

机译:使用原位光图案化的纳米多孔聚合物膜对Microchip进行蛋白质透析

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Chip-level integration of microdialysis membranes is described using a novel method for in situ photopatterning of porous polymer features. Rapid and inexpensive fabrication of nanoporous microdialysis membranes in microchips is achieved using a phase separation polymerization technique with a shaped UV laser beam. By controlling the phase separation process, the molecular weight cutoffs of the membranes can be engineered for different applications. Counterflow dialysis is used to demonstrate extraction of low molecular weight analytes from a sample stream, using two different molecular weight cutoff (MWCO) membranes; the first one with MWCO below 5700 for desalting protein samples, and the second one with a higher MWCO for size-based fractionation of proteins. Modeling based on a simple control volume analysis on the microdialysis system is consistent with measured concentration profiles, indicating both that membrane properties are uniform, well-defined, and reproducible and that diffusion of subcutoff analytes through the membrane is rapid.
机译:使用用于多孔聚合物特征的原位光图案化的新方法描述了微透析膜的芯片级集成。使用具有定型UV激光束的相分离聚合技术,可以实现微芯片中纳米多孔微透析膜的快速,廉价制造。通过控制相分离过程,可以针对不同应用设计膜的分子量截留值。逆流透析用于演示使用两种不同的截留分子量(MWCO)膜从样品流中提取低分子量分析物的方法。第一个MWCO低于5700的用于脱盐蛋白质样品,第二个MWCO较高的用于基于大小的蛋白质分馏。在微透析系统上基于简单控制量分析的建模与测得的浓度曲线一致,这表明膜的特性是均匀的,定义明确的和可重现的,并且次截止分析物通过膜的扩散很快。

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