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首页> 外文期刊>Journal of Colloid and Interface Science >An improved process for separation of proteins using modified chitosan-silica cross-linked charged ultrafilter membranes under coupled driving forces: Isoelectric separation of proteins
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An improved process for separation of proteins using modified chitosan-silica cross-linked charged ultrafilter membranes under coupled driving forces: Isoelectric separation of proteins

机译:在耦合驱动力下使用改性的壳聚糖-二氧化硅交联带电超滤膜分离蛋白质的改进方法:蛋白质的等电分离

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摘要

Functionalized chitosan namely as N-methylene phosphonic chitosan (PC) and quaternized chitosan (QC) silica composite charged ultrafilter membranes were prepared by acid catalyzed sol-gel method in the aqueous media and gelated in methanol for tailoring their pore structure. These membranes were employed for developing a simple membrane process for pH sensitive protein fractionation under coupled driving forces (pressure and electric gradient). Protein transmission (selectivity) and membrane throughput across both membranes were studied using binary mixture of protein under different gradients at pH points: 2.0, 4.8, 10.7, and 13.0. It was concluded that separation from the binary mixture of BSA-LYS, separation LYS at pH 4.8 (pl of BSA) using negatively charged PC-Si membrane or separation BSA at pH 10.7 (pl of LYS) using positively charged QC-Si membrane, was possible with high selectivity. Also in all cases, due to coupling of driving forces, filtrate flux and selectivity were enhanced by several folds. Furthermore, applied electric gradient progressively increased the separation factor values, which was close to 10 for PC-Si and 15 for QC-Si membranes. Relatively high separation value of individual protein from binary mixture and filtrate velocity suggests the practical usefulness of this novel process and biopolymer membranes. (C) 2007 Elsevier Inc. All rights reserved.
机译:通过酸催化溶胶-凝胶法在水性介质中制备功能化的壳聚糖,即N-亚甲基膦酸壳聚糖(PC)和季铵化壳聚糖(QC)二氧化硅复合带电超滤膜,并在甲醇中凝胶化以调节其孔结构。这些膜用于在耦合驱动力(压力和电梯度)下开发用于pH敏感蛋白分级分离的简单膜工艺。使用蛋白质的二元混合物在pH值分别为2.0、4.8、10.7和13.0的不同梯度下,研究了两种膜的蛋白质传输(选择性)和膜通量。结论是,从BSA-LYS的二元混合物中分离,使用带负电的PC-Si膜在pH 4.8下分离LYS(BSA的pl),或使用带正电的QC-Si膜在pH 10.7下分离BSA(LYS的pl),高选择性是可能的。同样在所有情况下,由于驱动力的耦合,滤液通量和选择性提高了几倍。此外,施加的电梯度逐渐增加了分离因子值,对于PC-Si,分离因子值接近10,而对于QC-Si膜,分离因子值接近15。从二元混合物和滤液速度中分离出的单个蛋白质的分离值相对较高,表明该新方法和生物聚合物膜的实际实用性。 (C)2007 Elsevier Inc.保留所有权利。

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