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离子物质对蛋清蛋白在不锈钢表面吸附的影响。

Effects of ionic substances on the adsorption of egg white proteins to a stainless steel surface.

作者信息

Sugiyama Hiroki, Hagiwara Tomoaki, Watanabe Hisahiko, Sakiyama Takaharu

机构信息

Department of Food Science and Technology, Tokyo University of Marine Science and Technology, Tokyo, Japan.

出版信息

Biosci Biotechnol Biochem. 2012;76(3):467-72. doi: 10.1271/bbb.110747.

Abstract

The surface fouling of food processing equipment by proteins was studied by investigating the adsorption of egg white proteins to the surface of stainless steel (SS) at pH 7.4 and 30 °C, and particularly the effects of different types of ionic substances. Ovalbumin and ovomucoid, acidic egg white proteins, were less adsorbed in the presence of phosphate (P(i)), a multivalent anion, than in the presence of HEPES, an amphoteric ion. On the other hand, lysozyme, a basic egg white protein, was more adsorbed in the presence of P(i) than in the presence of HEPES. Citrate as another multivalent anion and taurine as another amphoteric ion affected the respective adsorption of those egg white proteins similarly to P(i) and HEPES. The adsorption of an egg white protein to an SS surface therefore depended on the combination of the type of protein and the effective charge of the coexisting ionic substance. This behaviour can be well explained by assuming that a small ionic substance precedes a protein in attaching to an SS surface, resulting in an alteration to the effective surface charge. Pretreating SS with a P(i) buffer lowered the amount of ovalbumin adsorbed with the HEPES buffer, demonstrating that P(i) can attach to and remain on the SS surface to affect the subsequent protein adsorption.

摘要

通过研究蛋清蛋白在pH 7.4和30°C条件下对不锈钢(SS)表面的吸附情况,特别是不同类型离子物质的影响,对食品加工设备表面蛋白质污垢进行了研究。卵清蛋白和卵类粘蛋白这两种酸性蛋清蛋白,在多价阴离子磷酸盐(P(i))存在下的吸附量比在两性离子HEPES存在下少。另一方面,碱性蛋清蛋白溶菌酶在P(i)存在下的吸附量比在HEPES存在下多。柠檬酸盐作为另一种多价阴离子和牛磺酸作为另一种两性离子,对这些蛋清蛋白各自吸附的影响与P(i)和HEPES类似。因此,蛋清蛋白在SS表面的吸附取决于蛋白质类型和共存离子物质有效电荷的组合。假设小分子离子物质在蛋白质附着到SS表面之前先附着,从而导致有效表面电荷发生改变,就可以很好地解释这种行为。用P(i)缓冲液预处理SS可降低用HEPES缓冲液吸附的卵清蛋白量,这表明P(i)可以附着并保留在SS表面,从而影响后续的蛋白质吸附。

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