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首页> 外文期刊>Journal of Colloid and Interface Science >Characterization of reversed micelles of Cibacron Blue F-3GA modified Span 85 for protein solubilization
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Characterization of reversed micelles of Cibacron Blue F-3GA modified Span 85 for protein solubilization

机译:烟碱蓝F-3GA修饰的Span 85反向胶束的表征,用于蛋白质增溶

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摘要

The nonionic surfactant of sorbitan trioleate (Span 85) was modified with Cibacron Blue F-3GA (CB) as an affinity surfactant (CB-Span 85) to form affinity-based reversed micelles in n-hexane. The reversed micelles formed by the mixture of Span 85 and CB-Span 85 conjugate were extensively characterized in water content, hydrodynamic radius, and aggregation number. The results show that the water content and hydrodynamic radius of the reversed micelles were significantly increased by the introduction of CB ligands (CB-Span 85 conjugate), and the reversed micelles with CB-Span 85 conjugate had a wider aggregation number distribution than the Span 85 reversed micelles. Using lysozyme as a model protein, protein solubilization by the reversed micelles was investigated. Lysozyme solubilization increased significantly with the coupled CB concentration, indicating that the extraction was based upon the affinity interactions between lysozyme molecules and the CB ligand. High solubilization of lysozyme was obtained by the affinity-based reversed micelles of 62.7 mmol/L Span 85 with coupled CB higher than 0.25 mmol/L. Lysozyme recovery was carried out using a stripping solution of high ionic strength. The recovered lysozyme exhibited an activity equivalent to the native lysozyme and its secondary structure was also unchanged. The results indicate that the reversed micellar system would find potential application in protein separation. (c) 2005 Elsevier Inc. All rights reserved.
机译:用Cibacron Blue F-3GA(CB)改性脱水山梨糖醇三油酸酯(Span 85)的非离子表面活性剂作为亲和性表面活性剂(CB-Span 85),在正己烷中形成基于亲和力的反胶束。 Span 85和CB-Span 85共轭物的混合物形成的反胶束在水含量,流体动力学半径和聚集数方面得到了广泛的表征。结果表明,引入CB配体(CB-Span 85共轭物)后,反胶束的含水量和流体力学半径显着增加,而具有CB-Span 85共轭物的反胶束的聚集数分布比Span更宽。 85个反胶束。使用溶菌酶作为模型蛋白,研究了反向胶束对蛋白的增溶作用。溶菌酶的溶解度随偶联的CB浓度而显着增加,表明提取是基于溶菌酶分子和CB配体之间的亲和相互作用。通过基于亲和力的62.7 mmol / L Span 85的反向胶束和耦合的CB高于0.25 mmol / L,可实现溶菌酶的高度溶解。使用高离子强度的汽提溶液进行溶菌酶回收。回收的溶菌酶表现出与天然溶菌酶相当的活性,并且其二级结构也未改变。结果表明,反向胶束系统将在蛋白质分离中找到潜在的应用。 (c)2005 Elsevier Inc.保留所有权利。

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