自愈水凝胶
豆类
分子间力
化学
植物蛋白
食品科学
纳米技术
共价键
氢键
有机化学
化学工程
残留物(化学)
生物物理学
食物蛋白
疏水效应
食品化学
蝶形花科
蛋白质-蛋白质相互作用
作者
Bin Zhu,Xumei Feng,Yang Li,Baokun Qi
标识
DOI:10.1111/1541-4337.70421
摘要
Legume proteins have become essential materials for developing plant-based foods due to their excellent functional properties. Intermolecular forces in legume protein hydrogels include non-covalent bonds such as hydrogen bonds, hydrophobic interactions, and covalent bonds such as disulfide bonds. Changes in gel intermolecular forces directly affect the gel food quality. This paper describes the types and determination of legume protein hydrogel intermolecular forces, and deeply explores the influencing factors, including gel preparation methods, protein pre-treatment ways (physical treatment, chemical treatment, enzymatic hydrolysis, and fibrillation), and the introduction of other active ingredients (polyphenols, polysaccharides, exogenous amino acids, and proteins from other sources). The preparation methods determine the textural properties of legume protein hydrogels. Pre-treatment (especially ultrasonic treatment) is an effective method for improving legume protein hydrogels. The incorporation of polyphenols, polysaccharides, and other substances, as well as fibrillation of proteins, further promotes the application of legume protein hydrogels in food and biomedical fields. Adjustment of gel intermolecular forces is expected to control the release of bioactive components from gel carriers as well as facilitate the development of foodstuffs with different applications. Undoubtedly, mastering the mechanisms and strategies for regulating intermolecular forces in hydrogels will further enhance the quality of legume protein hydrogel products and facilitate the development of new products that meet consumer demands.
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