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谷物 β-葡聚糖在调节肠道微生物群免疫功能方面的最新进展及其智能胶凝应用。

Recent advances of cereal β-glucan on immunity with gut microbiota regulation functions and its intelligent gelling application.

机构信息

College of Food and Pharmaceutical Sciences, Deep Processing Technology Key Laboratory of Zhejiang Province Animal Protein Food, Ningbo University, Ningbo, Zhejiang Province, PR China.

出版信息

Crit Rev Food Sci Nutr. 2023;63(19):3895-3911. doi: 10.1080/10408398.2021.1995842. Epub 2021 Nov 8.

Abstract

β-glucan from cereals such as wheat, barley, oats and rye are a water-soluble dietary fiber, which are composed of repeating (1→4)-β-bond β-D-glucopyranosyl units and a single (1→3)-β-D-bond separated unit. β-glucan has a series of physicochemical properties (such as viscosity, gelling properties, solubility, ), which can be used as a food gel and fat substitute. Its structure endows the healthy functions, including anti-oxidative stress, lowering blood glucose and serum cholesterol, regulating metabolic syndrome and exerting gut immunity via gut microbiota. Due to their unique structural properties and efficacy, cereal β-glucan are not only applied in food substrates in the food industry, but also in food coatings and packaging. This article reviewed the applications of cereal β-glucan in hydrogels, aerogels, intelligent packaging systems and targeted delivery carriers in recent years. Cereal β-glucan in edible film and gel packaging applications are becoming more diversified and intelligent in recent years. Those advances provide a potential solution based on cereal β-glucan as biodegradable substances for immune regulation delivery system and intelligent gelling material in the biomedicine field.

摘要

谷物(如小麦、大麦、燕麦和黑麦)中的β-葡聚糖是一种水溶性膳食纤维,由重复的(1→4)-β键β-D-葡吡喃糖单元和一个单独的(1→3)-β-D-键分离单元组成。β-葡聚糖具有一系列物理化学性质(如粘度、胶凝性质、溶解度等),可用作食品凝胶和脂肪替代品。其结构赋予了健康功能,包括抗氧化应激、降低血糖和血清胆固醇、调节代谢综合征以及通过肠道微生物群发挥肠道免疫作用。由于其独特的结构特性和功效,谷物β-葡聚糖不仅应用于食品工业中的食品基质,还应用于食品涂层和包装。本文综述了近年来谷物β-葡聚糖在水凝胶、气凝胶、智能包装系统和靶向输送载体中的应用。近年来,谷物β-葡聚糖在可食用膜和凝胶包装应用方面变得更加多样化和智能化。这些进展为基于谷物β-葡聚糖的免疫调节输送系统和智能凝胶材料提供了一个潜在的解决方案,这些材料可作为生物医学领域的可生物降解物质。

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