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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Enhanced Protein Adsorption and Facilitated Refolding of Like-Charged Protein with Highly Charged Silica Nanoparticles Fabricated by Sequential Double Modifications
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Enhanced Protein Adsorption and Facilitated Refolding of Like-Charged Protein with Highly Charged Silica Nanoparticles Fabricated by Sequential Double Modifications

机译:通过顺序双重修饰制备的带高电荷的二氧化硅纳米粒子,增强了蛋白质的吸附并促进了电荷相似的蛋白质的折叠

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摘要

Silica nanoparticles (SNPs) were sequentially modified with poly(ethylenimine) (PEI) and 2-diethylaminoethyl chloride (DEAE) to prepare a series of positively charged SNPs-PEI and SNPs-PEI-DEAE. The sequential double-modification strategy produced a charge density as high as 1740 mu mol/g (4524 mu mol/mL), which offered a very high adsorption capacity for bovine serum albumin (314 mg/g). Most importantly, the highly charged SNPs-PEI and SNPs-PEI-DEAE could efficiently facilitate the refolding of like-charged protein at extremely low utilization. For instance, in the refolding of 1 mg/mL lysozyme, the refolding yield reached 75% with only 3.3 mu L/mL SNPs-PEI-DEAE. The bead consumption was reduced by nearly 96% as compared to that of the charged microspheres used previously to reach a similar yield. The results proved that the polyelectrolyte-modified SNPs were promising for applications in facilitating like-charged protein refolding, and the research opened up a new way for biotechnology applications of highly charged nanoparticles.
机译:依次用聚乙烯亚胺(PEI)和2-二乙基氨基乙基氯(DEAE)修饰二氧化硅纳米颗粒(SNP),以制备一系列带正电荷的SNPs-PEI和SNPs-PEI-DEAE。顺序双重修饰策略产生的电荷密度高达1740μmol/ g(4524μmol/ mL),这为牛血清白蛋白提供了非常高的吸附容量(314 mg / g)。最重要的是,高电荷的SNPs-PEI和SNPs-PEI-DEAE可以以极低的利用率有效地促进带相同电荷的蛋白质的重折叠。例如,在1 mg / mL溶菌酶的重折叠中,仅3.3μL / mL SNPs-PEI-DEAE的重折叠产率达到了75%。与以前使用的带电微球相比,微珠消耗减少了近96%,从而达到了相似的产量。结果证明,聚电解质修饰的SNP在促进带电相同的蛋白重折叠方面具有广阔的应用前景,这项研究为高电荷的纳米颗粒在生物技术中的应用开辟了新途径。

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