通过马氏反应和复合共凝胶对植物和藻类蛋白质进行改性:机制、特征以及在封装氧敏感油类中的应用

Zijia Zhang, Bo Wang, Jie Chen and Benu Adhikari
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引用次数: 0

摘要

作为动物蛋白的替代品,人们对植物蛋白和海藻蛋白的需求与日俱增。这种需求是由生活方式的选择和对可持续发展的关注所驱动的。作为配料的需求尤为强劲。然而,这些蛋白质的技术功能特性,如溶解性、乳化性、包裹性和胶凝性,需要改进才能满足食品的要求。在改性蛋白质的方法中,通过马氏反应与多糖共价共轭,以及通过络合共凝胶进行非共价络合已受到越来越多的研究关注。本文从这两种方法的机理、典型工艺规程和改性蛋白质的特点等方面对其进行了概述。此外,还综述了共价共轭物和复合共凝胶作为乳化剂和封装外壳材料在不稳定油类和氧敏感油类中的应用。本综述还回顾了将这两种方法结合起来以实现更好的乳化和封装效果的最新研究,以便深入了解以前共轭的蛋白质与第二种多糖发生复合共凝结的机理。最后,本综述旨在确定使用植物和藻类蛋白质制造乳化剂和封装外壳材料的最有效技术,特别是用于稳定和保护对氧气敏感的油类。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Modification of plant and algal proteins through the Maillard reaction and complex coacervation: mechanisms, characteristics, and applications in encapsulating oxygen-sensitive oils

There is an increasing demand for plant and algal proteins as alternatives to animal proteins. This demand is driven by lifestyle choices and sustainability concerns. The demand for them is particularly strong as ingredients. However, the technofunctional properties of these proteins, such as solubility, emulsifying, encapsulating, and gelling, need improvement to meet the requirements of food products. Among the approaches to modify proteins, covalent conjugation with polysaccharides through the Maillard reaction and non-covalent complexation through complex coacervation have received increased research attention. This paper provides an overview of these two approaches in terms of their mechanisms, typical process protocols, and the characteristics of modified proteins. The application of covalent conjugates and complex coacervates as emulsifiers and encapsulating shell materials for unstable and oxygen-sensitive oils is also reviewed. Recent studies that have combined these two approaches to achieve improved emulsification and encapsulation outcomes are reviewed to provide insights into the mechanism by which previously conjugated proteins undergo complex coacervation with a second polysaccharide. Ultimately, this review intends to identify the most effective technologies for creating emulsifiers and encapsulating shell materials using plant and algal proteins, particularly to stabilise and protect oxygen-sensitive oils.

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