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牛血清白蛋白与阳离子单链+非离子和阳离子双子+非离子双表面活性剂混合物的相互作用。

Interaction of bovine serum albumin with cationic single chain+nonionic and cationic gemini+nonionic binary surfactant mixtures.

机构信息

Department of Chemistry, University of Kashmir, Srinagar-190006, J&K, India.

出版信息

J Phys Chem B. 2010 Mar 11;114(9):3197-204. doi: 10.1021/jp908985v.

Abstract

The interaction of bovine serum albumin (BSA) with cetyltrimethylammonium bromide (CTAB), C(16)C(4)C(16)Br(2), Brij58, and their binary mixtures has been studied using tensiometry, spectrofluorometry, and circular dichroism at physiological pH and 25 degrees C. The tensiometric profiles of CTAB and C(16)C(4)C(16)Br(2) in the presence of BSA exhibit a single break at a lower surfactant concentration termed as C(1) (concentration corresponding to saturation of the interface) compared to their critical micelle concentration (CMC) in the buffered solution. However, for Brij58, CTAB+Brij58, and C(16)C(4)C(16)Br(2)+Brij58, two breaks were observed, first at the critical aggregation concentration (CAC), corresponding to onset of interaction with BSA and the second at C(1) corresponding to saturation of the interface. The interaction of CTAB+Brij58 and C(16)C(4)C(16)Br(2)+Brij58 mixtures with the BSA solution is discussed in terms of competition between surfactant-surfactant and surfactant-BSA interactions. CTAB+Brij58 and C(16)C(4)C(16)Br(2)+Brij58 mixtures show nonideality with respect to mixed micelle formation, which is reflected in their interaction with the BSA. The interaction of CTAB+Brij58 with BSA decreases with increase in the mole fraction of CTAB in the mixture, whereas in C(16)C(4)C(16)Br(2)+Brij58 the reverse is the case. The results of the present study may prove fruitful in optimizing the properties of surfactant-protein mixtures relevant for many formulations.

摘要

在生理 pH 值和 25°C 下,使用张力计、荧光光谱法和圆二色性研究了牛血清白蛋白 (BSA) 与十六烷基三甲基溴化铵 (CTAB)、C(16)C(4)C(16)Br(2)、Brij58 及其二元混合物的相互作用。与缓冲溶液中的临界胶束浓度 (CMC) 相比,在 BSA 存在下,CTAB 和 C(16)C(4)C(16)Br(2) 的张力计曲线在较低表面活性剂浓度下呈现单个断裂,称为 C(1)(界面饱和对应的浓度)。然而,对于 Brij58、CTAB+Brij58 和 C(16)C(4)C(16)Br(2)+Brij58,观察到两个断裂,第一个在临界聚集浓度 (CAC),对应于与 BSA 的相互作用开始,第二个在 C(1),对应于界面饱和。讨论了 CTAB+Brij58 和 C(16)C(4)C(16)Br(2)+Brij58 混合物与 BSA 溶液的相互作用,涉及表面活性剂-表面活性剂和表面活性剂-BSA 相互作用之间的竞争。CTAB+Brij58 和 C(16)C(4)C(16)Br(2)+Brij58 混合物在混合胶束形成方面表现出非理想性,这反映在它们与 BSA 的相互作用中。CTAB+Brij58 与 BSA 的相互作用随混合物中 CTAB 摩尔分数的增加而降低,而在 C(16)C(4)C(16)Br(2)+Brij58 中则相反。本研究的结果可能有助于优化与许多制剂相关的表面活性剂-蛋白质混合物的性质。

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