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植物蛋白-多糖相互作用如何影响二元水凝胶的性质?(综述)

How can plant-based protein-polysaccharide interactions affect the properties of binary hydrogels? (A review).

机构信息

Department of Food Science and Technology, Faculty of Agriculture, Ferdowsi University of Mashhad, Azadi Sq., Mashhad, Khorasan Razavi, P.O. Box 9177948944, Iran.

出版信息

Food Funct. 2023 Jul 3;14(13):5891-5909. doi: 10.1039/d3fo00611e.

Abstract

The last two decades have seen a growing trend toward gels thanks to their attractive sensory properties, low calories, and modification ability. Plant-derived proteins have outstanding potential to replace animal proteins as they are more affordable and eco-friendly. Polysaccharide addition can improve the gelation properties of plant proteins. This paper aimed at critically analyzing the effect of the plant protein-polysaccharide compatibility on the characterization of composite hydrogels. H-bonds and β structures, increased by polysaccharides, greatly correlated with the gelation rate, superior structural integrity, and textural/rheological properties. Indeed, polysaccharides favored the transition of α-helices to β-sheets followed by the shift of amide I which made the microstructure dense, regular, and homogeneous. Subsequently, the water-holding capacity, hardness, and elastic modulus increased but the porosity, swelling ratio, and digestibility decreased. High protein concentrations increased the water-holding capacity while the swelling ratio was mostly dependent on polysaccharides. Polysaccharides had a protective role against protease penetration and gel digestibility.

摘要

过去二十年,凝胶因其具有吸引力的感官特性、低卡路里和可改性而呈现出增长趋势。植物来源的蛋白质具有替代动物蛋白质的巨大潜力,因为它们更经济实惠且环保。多糖的添加可以改善植物蛋白质的凝胶性能。本文旨在批判性分析植物蛋白-多糖相容性对复合水凝胶特性的影响。多糖增加的氢键和β结构与凝胶速率、优异的结构完整性和质构/流变性能密切相关。事实上,多糖有利于α-螺旋向β-折叠的转变,随后酰胺 I 的移动使微观结构变得致密、规则且均匀。随后,保水能力、硬度和弹性模量增加,但孔隙率、溶胀率和消化率降低。高蛋白质浓度增加了保水能力,而溶胀率主要取决于多糖。多糖对蛋白酶渗透和凝胶消化性具有保护作用。

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