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Preparation of Bionanoreactor Based on Core-Shell Structured Polyion Complex Micelles Entrapping Trypsin in the Core Cross-Linked with Glutaraldehyde

机译:基于谷壳醛交联的核壳中包裹胰蛋白酶的核壳结构聚离子复合物胶束的生物反应器的制备

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Recently,the polyion complex(PIC)micelle has been suggested as a promising carrier system for peptide and proteins.However,its utilities are limited by its sensitivity to the environment such as dilution and ionic strength of the solution.In this study,to overcome these obstructions,PIC micelles prepared from an anionic block copolymer,poly(ethylene glycol)-poly(alpha,beta-aspartic acid),and a cationic protein,trypsin,were cross-linked with glutaraldehyde through the Schiff base formation.On the basis of a light scattering technique,the results revealed an efficient resistance of the cross-linked PIC micelle to a high salt concentration,which was a key parameter controlling the structure of the PIC micelles.Moreover,the stability of trypsin after cross-linking was remarkably improved.Evidently,as a bionanoreactor and/or bionanoreservoir,the PIC micelles entrapping protein molecules in the cross-linked core reveal an improved stability,allowing their wide application in the fields of biotechnology and pharmaceutical sciences.
机译:近年来,聚离子络合物(PIC)胶束被认为是肽和蛋白质的有前途的载体系统。但是,其实用性受到其对环境的敏感性(例如溶液的稀释度和离子强度)的限制。这些障碍物是由阴离子嵌段共聚物,聚(乙二醇)-聚(α,β-天冬氨酸)和阳离子蛋白胰蛋白酶制备的PIC胶束通过Schiff碱形成与戊二醛交联的。光散射技术的结果表明,交联的PIC胶束对高盐浓度具有有效的抵抗力,这是控制PIC胶束结构的关键参数。此外,交联后胰蛋白酶的稳定性显着显然,作为生物纳米反应器和/或生物纳米储存器,将PIC胶束包裹在交联核心中的蛋白质分子显示出改善的稳定性,从而使其在双分子领域具有广泛的应用。技术和制药科学。

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