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玉米蛋白水解物-单宁酸复合物的起泡特性及气-水界面行为

Foaming properties and air-water interfacial behavior of corn protein hydrolyzate-tannic acid complexes.

作者信息

Wang Yong-Hui, Lin Yuan, Yang Xiao-Quan

机构信息

1Key Laboratory of Biomarker Based Rapid-Detection Technology for Food Safety of Henan Province, Food and Bio-Engineering College, Xuchang University, Xuchang, 461000 People's Republic of China.

2Department of Food Science and Technology, South China University of Technology, Guangzhou, 510640 People's Republic of China.

出版信息

J Food Sci Technol. 2019 Feb;56(2):905-913. doi: 10.1007/s13197-018-03553-0. Epub 2019 Jan 22.

Abstract

The complexation of corn protein hydrolyzate (CPH) with tannic acid (TA) was utilized to improve the foaming properties of CPH itself, and the air-water interfacial behavior of CPH-TA complex was also investigated. The results showed that the surface hydrophobicity of pure CPH was significantly decreased in bulk solution after the complexation with TA. Compared with pure CPH, the foams stabilized by CPH-TA complex showed higher interfacial thickness between the bubbles, which well explained the better long term stability of the corresponding foams. Therefore, the complexation maintained the good foaming capacity of CPH itself, but considerably increased its foam stability. Moreover, the air-water interfacial behavior study demonstrated that the complexation slightly decreased the interfacial activity of CPH itself, but considerably increased its interfacial viscoelasticity, suggesting more stable of the air-water interface stabilized by CPH-TA complex compared with that stabilized by CPH alone. These findings indicated that foaming properties of the surface active components were closely related with its air-water interfacial behavior. The study suggested that CPH-TA complex could be used as a stabilizer in constructing the peptides-based foams.

摘要

利用玉米蛋白水解物(CPH)与单宁酸(TA)的络合作用来改善CPH自身的发泡性能,并对CPH-TA络合物的气-水界面行为进行了研究。结果表明,纯CPH与TA络合后,其在本体溶液中的表面疏水性显著降低。与纯CPH相比,由CPH-TA络合物稳定的泡沫在气泡之间表现出更高的界面厚度,这很好地解释了相应泡沫具有更好的长期稳定性。因此,络合作用保持了CPH自身良好的发泡能力,但显著提高了其泡沫稳定性。此外,气-水界面行为研究表明,络合作用略微降低了CPH自身的界面活性,但显著提高了其界面粘弹性,这表明与仅由CPH稳定的气-水界面相比,由CPH-TA络合物稳定的气-水界面更稳定。这些发现表明,表面活性成分的发泡性能与其气-水界面行为密切相关。该研究表明,CPH-TA络合物可作为构建基于肽的泡沫的稳定剂。

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