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溶菌酶和吐温80在亲水性和疏水性二氧化硅-水界面的吸附行为。

Adsorption behavior of lysozyme and Tween 80 at hydrophilic and hydrophobic silica-water interfaces.

作者信息

Joshi Omkar, McGuire Joseph

机构信息

Department of Chemical Engineering, Oregon State University, Corvallis, OR 97331, USA.

出版信息

Appl Biochem Biotechnol. 2009 Feb;152(2):235-48. doi: 10.1007/s12010-008-8246-8. Epub 2008 May 14.

Abstract

Nonionic surfactants such as Tween 80 are used commercially to minimize protein loss through adsorption and aggregation and preserve native structure and activity. However, the specific mechanisms underlying Tween action in this context are not well understood. Here, we describe the interaction of the well-characterized, globular protein lysozyme with Tween 80 at solid-water interfaces. Hydrophilic and silanized, hydrophobic silica surfaces were used as substrates for protein and surfactant adsorption, which was monitored in situ, with ellipsometry. The method of lysozyme and Tween introduction to the surfaces was varied in order to identify the separate roles of protein, surfactant, and the protein-surfactant complex in the observed interfacial behavior. At the hydrophobic surface, the presence of Tween in the protein solution resulted in a reduction in amount of protein adsorbed, while lysozyme adsorption at the hydrophilic surface was entirely unaffected by the presence of Tween. In addition, while a Tween pre-coat prevented lysozyme adsorption on the hydrophobic surface, such a pre-coat was completely ineffective in reducing adsorption on the hydrophilic surface. These observations were attributed to surface-dependent differences in Tween binding strength and emphasize the importance of the direct interaction between surfactant and solid surface relative to surfactant-protein association in solution in the modulation of protein adsorption by Tween 80.

摘要

诸如吐温80之类的非离子表面活性剂在商业上用于使因吸附和聚集导致的蛋白质损失最小化,并保持天然结构和活性。然而,吐温在此种情况下作用的具体机制尚未得到充分理解。在此,我们描述了特征明确的球状蛋白溶菌酶与吐温80在固-水界面处的相互作用。亲水性和硅烷化的疏水性二氧化硅表面用作蛋白质和表面活性剂吸附的底物,通过椭偏仪原位监测吸附情况。改变溶菌酶和吐温引入表面的方法,以确定蛋白质、表面活性剂以及蛋白质-表面活性剂复合物在观察到的界面行为中的各自作用。在疏水表面,蛋白质溶液中吐温的存在导致吸附的蛋白质量减少,而亲水性表面上溶菌酶的吸附完全不受吐温存在的影响。此外,虽然吐温预涂层可防止溶菌酶在疏水表面吸附,但这种预涂层在减少亲水性表面上的吸附方面完全无效。这些观察结果归因于吐温结合强度的表面依赖性差异,并强调了在吐温80调节蛋白质吸附过程中,表面活性剂与固体表面之间的直接相互作用相对于溶液中表面活性剂-蛋白质缔合的重要性。

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