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界面流变学评价β-酪蛋白-表面活性剂混合层在气-液界面的吸附。

Adsorption of β-casein-surfactant mixed layers at the air-water interface evaluated by interfacial rheology.

机构信息

Departamento de Química Física I, Universidad Complutense de Madrid , Ciudad Universitaria s/n, 28040-Madrid, Spain.

出版信息

J Phys Chem B. 2012 Apr 26;116(16):4898-907. doi: 10.1021/jp301031y. Epub 2012 Apr 13.

Abstract

This work presents a detailed study of the dilational viscoelastic moduli of the adsorption layers of the milk protein β-casein (BCS) and a surfactant at the liquid/air interface, over a broad frequency range. Two complementary techniques have been used: a drop profile tensiometry technique and an excited capillary wave method, ECW. Two different surfactants were studied: the nonionic dodecyldimethylphosphine oxide (C12DMPO) and the cationic dodecyltrimethylammonium bromide (DoTAB). The interfacial dilational elasticity and viscosity are very sensitive to the composition of protein-surfactant mixed adsorption layers at the air/water interface. Two different dynamic processes have been observed for the two systems studied, whose characteristic frequencies are close to 0.01 and 100 Hz. In both systems, the surface elasticity was found to show a maximum when plotted versus the surfactant concentration. However, at frequencies above 50 Hz the surface elasticity of BCS + C12DMPO is higher than the one of the aqueous BCS solution over most of the surfactant concentration range, whereas for the BCS + DoTAB it is smaller for high surfactant concentrations and higher at low concentrations. The BCS-surfactant interaction modifies the BCS random coil structure via electrostatic and/or hydrophobic interactions, leading to a competitive adsorption of the BCS-surfactant complexes with the free, unbound surfactant molecules. Increasing the surfactant concentration decreases the adsorbed proteins. However, the BCS molecules are rather strongly bound to the interface due to their large adsorption energy. The results have been fitted to the model proposed by C. Kotsmar et al. ( J. Phys. Chem. B 2009 , 113 , 103 ). Even though the model describes well the concentration dependence of the limiting elasticity, it does not properly describe its frequency dependence.

摘要

本工作详细研究了在较宽频率范围内,乳蛋白β-酪蛋白(BCS)和表面活性剂在液/气界面上吸附层的膨胀粘弹性模量。使用了两种互补技术:滴形轮廓张力法和受激毛细波法(ECW)。研究了两种不同的表面活性剂:非离子十二烷基二甲基氧化膦(C12DMPO)和阳离子十二烷基三甲基溴化铵(DoTAB)。在空气/水界面上,蛋白质-表面活性剂混合吸附层的组成对界面膨胀弹性和粘性非常敏感。对于所研究的两个体系,观察到了两个不同的动态过程,其特征频率接近 0.01 和 100 Hz。在这两个体系中,当表面活性剂浓度作图时,表面弹性被发现表现出最大值。然而,在 50 Hz 以上的频率下,BCS+C12DMPO 的表面弹性在大多数表面活性剂浓度范围内高于纯水溶液中的 BCS,而对于 BCS+DoTAB,在高表面活性剂浓度下较小,在低浓度下较高。BCS-表面活性剂相互作用通过静电和/或疏水相互作用改变了 BCS 的无规卷曲结构,导致 BCS-表面活性剂配合物与游离的未结合的表面活性剂分子竞争吸附。随着表面活性剂浓度的增加,吸附的蛋白质减少。然而,由于 BCS 分子的吸附能较大,它们与界面的结合相当牢固。结果已根据 C. Kotsmar 等人提出的模型进行拟合(J. Phys. Chem. B 2009, 113, 103)。尽管该模型很好地描述了极限弹性的浓度依赖性,但它没有很好地描述其频率依赖性。

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