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首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Tetrazole-functionalized cation-exchange membrane adsorbers with high binding capacity and unique separation feature for protein
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Tetrazole-functionalized cation-exchange membrane adsorbers with high binding capacity and unique separation feature for protein

机译:四唑官能化阳离子交换膜吸附器具有高结合能力和蛋白质的独特分离特征

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摘要

The modification with high-density functional groups is a widely used method to enhance the binding capacity of membrane adsorbers, where the types of the attached groups are crucial to achieve good selectivity for protein separation. In this work, a novel tetrazole-functionalized weak cation-exchange membrane with high-capacity was prepared by constructing tetrazole-containing polymer brushes on the surface of regenerated cellulose membrane via the combination of surface-initiated atom transfer radical polymerization (SI-ATRP) and “click chemistry” between cyano and azide. Densities of tetrazolyl groups on the membranes can be easily controlled by manipulating the polymerization time. The binding capacity of lysozyme increased with the polymerization time but eventually reached maximum due to the reduction of the utilization percentage of ion-exchange sites. The adsorption of newly designed membrane conforms to the feature of weak cation exchanger in terms of pH and salt effects, whereas the effect of pH exhibits a large difference from that on the carboxylic-functionalized ion-exchange membranes. Most importantly, the membranes possess higher dynamic binding capacity independent of the flow rate of mobile phase compared with the previously reported cation-exchange membranes. Featured with the unique properties, the modified membrane could simultaneously purify lysozyme and ovotransferrin from hen egg white at higher productivity. The present work provides a new alternative for membrane chromatography of biomacromolecules.
机译:具有高密度官能团的改性是广泛使用的方法,以增强膜吸附器的结合能力,其中附着基团的类型对于实现良好的蛋白质分离选择性至关重要。在这项工作中,通过通过表面引发的原子转移自由基聚合(Si-ATRP)的组合在再生纤维素膜表面上构建含四唑的聚合物刷来制备具有高容量的新型四唑官能化弱阳离子交换膜在氰基和叠氮之间的“点击化学”。通过操纵聚合时间可以容易地控制膜上的四唑基的密度。溶菌酶的结合能力随聚合时间而增加,但由于离子交换位点的使用百分比降低,最终达到最大值。新设计的膜的吸附符合pH和盐效果弱阳离子交换器的特征,而pH的作用表现出羧 - 官能化离子交换膜上的巨大差异。最重要的是,与先前报道的阳离子交换膜相比,膜与流动相的流速无关,膜具有更高的动态结合能力。改性膜具有独特的特性,可以在更高的生产率下同时纯化来自母鸡白色的溶菌酶和ofotransferrin。本作者为生物致摩洛族膜色谱法提供了一种新的替代方案。

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