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Variation of weak cation-exchange polymer layers grafted on hydrophobic microfiltration membrane for protein separation

机译:疏水性微滤膜上接枝的弱阳离子交换聚合物层的变化,用于蛋白质分离

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摘要

Preparation of material for protein separation can be done with controlled surface funcitionalizations on membranes. Photo-initiated surface-selective graft copolymerization was performed using entrapping method. Weak cation-exchange polymer brush structures were obtained using acrylic acid (AA) grafted on hydrophobic microfiltration membrane pore surfaces. Copolymerization of AA with "diluent" monomer acrylamide (AAm) and "cross-linker" monomer methylene bisacrylamide (MBAA) were done for variations of the grafted layer. Graft copolymer composition analysis had been performed using gravimetry. Performance characterizations had been done by measurements of membrane permeability at low and high pH and by reversible binding of a lysozyme. Result of this study shows that the membrane permeability sensitivity to changes in pH depending on type of modification, high with diluent and low with cross-linker. In addition to that, chemical cross-linking within grafted layers leads to a significant improvement because the dynamic protein binding capacity can be increased,
机译:可以通过在膜上进行受控的表面功能化来制备用于蛋白质分离的材料。使用截留法进行光引发的表面选择性接枝共聚。使用接枝在疏水性微滤膜孔表面上的丙烯酸(AA),可以获得弱的阳离子交换聚合物刷结构。为了改变接枝层,将AA与“稀释剂”单体丙烯酰胺(AAm)和“交联剂”单体亚甲基双丙烯酰胺(MBAA)共聚。已经使用重量分析法进行了接枝共聚物组成分析。通过在低pH和高pH下测量膜通透性以及溶菌酶的可逆结合来完成性能表征。这项研究的结果表明,膜的渗透性对pH值变化的敏感性取决于修饰的类型,稀释剂较高,交联剂较低。除此之外,嫁接层内的化学交联还可以显着改善,因为可以增加动态蛋白质结合能力,

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