The functional modification of legume proteins by ultrasonication: A review

超声 溶解度 流变学 乳状液 表面张力 化学工程 化学 粒径 粘度 微观结构 浊度 热稳定性 水溶液 豆类 粒子(生态学) 色谱法 材料科学 有机化学 复合材料 热力学 工程类 地质学 物理 海洋学 生物 结晶学 农学
作者
Seyed Mohammad Taghi Gharibzahedi,Brennan Smith
出处
期刊:Trends in Food Science and Technology [Elsevier BV]
卷期号:98: 107-116 被引量:270
标识
DOI:10.1016/j.tifs.2020.02.002
摘要

The use of vegetable proteins is one of the key elements of vegetarian diets. Legumes are an alternative protein source with comparable quality as animal derived proteins, and can be more economical. However, nutritional and technological improvement of legume proteins (LPs) is needed to modify their structure and function. Ultrasound is a promising non-thermal system that has attracted considerable interest worldwide in preparing highly functional LPs. The ultrasonication effect on the improvement of physicochemical (free sulfhydryl content, surface hydrophobicity, surface tension, particle size, turbidity, viscosity and rheology), thermal, microstructure, and techno-functional properties (solubility, water (WHC), and oil (OHC) holding capacity, emulsifying activity index (EAI), emulsion stability index (ESI), foaming capacity (FC) and stability (FS), and gel strength) of pulses and soy protein was comprehensively reviewed. The future research needs, existing challenges, and practical solutions related to the utilization of this green technology in the functionality and enhancement of LPs were also elucidated. High-intensity ultrasonic treatment, as a result of cavitational forces, can reduce the particle size, surface tension, turbidity, and viscosity of LP-based solutions with a significant increase in free sulfhydryl and hydrophobic groups on LPs surface. The partial unfolding and structural changes along with the break-up and re-formation of inter-molecular bonds resulted in different microstructures from large, irregular aggregates to small, uniform particles. A significantly improved solubility, WHC, OHC, EAI, ESI, FC, FS and gel strength was found for most LPs treated with ultrasonication.
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