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中国精品科技期刊2020
贾莹,林珍仪,高梓擎,等. 小麦麸皮蛋白的提取、功能特性及在食品工业中的应用[J]. 食品工业科技,2025,46(20):448−458. doi: 10.13386/j.issn1002-0306.2024100258.
引用本文: 贾莹,林珍仪,高梓擎,等. 小麦麸皮蛋白的提取、功能特性及在食品工业中的应用[J]. 食品工业科技,2025,46(20):448−458. doi: 10.13386/j.issn1002-0306.2024100258.
JIA Ying, LIN Zhenyi, GAO Ziqing, et al. Research Progress on Extraction, Functional Properties and Application of Wheat Bran Protein in Food Industry[J]. Science and Technology of Food Industry, 2025, 46(20): 448−458. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2024100258.
Citation: JIA Ying, LIN Zhenyi, GAO Ziqing, et al. Research Progress on Extraction, Functional Properties and Application of Wheat Bran Protein in Food Industry[J]. Science and Technology of Food Industry, 2025, 46(20): 448−458. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2024100258.

小麦麸皮蛋白的提取、功能特性及在食品工业中的应用

Research Progress on Extraction, Functional Properties and Application of Wheat Bran Protein in Food Industry

  • 摘要: 麸皮是小麦制粉的主要副产物,产量巨大、营养价值高,但麸皮中高含量的膳食纤维导致其制品口感粗糙,故绝大部分麸皮被用作牲畜饲料,食品加工利用率低。麸皮蛋白是麸皮中的重要组分,其含量丰富,氨基酸组成高于FAO/WHO推荐的成人模式,且其生物价效高,并具有优异的食品功能特性,是一种廉价、优质的全价植物基蛋白资源,极具开发潜能,应用前景广阔。本文介绍了麸皮蛋白的组成及分布,比较了不同的麸皮蛋白提取技术及其优缺点,以及不同处理对其食品功能特性的影响及改善;简述了麸皮蛋白在食品加工中的应用现状,展望了其在乳蛋白替代、制备纳米载体以及制备可食用包装薄膜等方面的潜在用途,并提出未来麸皮蛋白的研究挑战。旨在充分挖掘植物基蛋白资源,为麸皮蛋白的工业化生产、拓宽其加工及高值化应用提供思路和参考,同时促进小麦麸皮的增值转化,延长粮食加工产业链。

     

    Abstract: Wheat bran, a principal byproduct of wheat milling, has not only a substantial yield, but also a high nutritional value. However, its high dietary fiber content results in a coarse texture. Therefore, most of the wheat bran is used as livestock feed and its application in food processing is limited. Wheat bran protein, a chief constituent of wheat bran, is abundant and features an amino acid composition that surpasses the FAO/WHO recommended standards, offering high biological value and superior food functionality. It stands as a low-cost, high-quality, and complete plant-based protein source with significant development potential and broad application prospects. This article introduces the composition and distribution of wheat bran protein, evaluates the comparative merits and drawbacks of various extraction methods, and discusses the impact of different treatments on its functional properties in food. It also provides an overview of the current applications of wheat bran protein in food processing, highlighted its potential in milk protein replacement, nanocarrier preparation, and edible film fabrication. Meanwhile, the challenges in the studies on wheat bran protein are put forward. The article aims to adequately develop plant-based protein resources, offer insights into the industrial production of bran protein, expand its processing and high-value applications, and foster the value-added transformation of wheat bran, thereby extending the grain processing industry chain.

     

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