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谷物加工副产物——富含酚类化合物的资源及其潜在的生物活性。

Cereal Processing By-Products as Rich Sources of Phenolic Compounds and Their Potential Bioactivities.

机构信息

Department of Food Science, Faculty of Food Science and Technology, University of Agricultural Science and Veterinary Medicine, 400372 Cluj-Napoca, Romania.

出版信息

Nutrients. 2021 Nov 3;13(11):3934. doi: 10.3390/nu13113934.

Abstract

In today's society, we can see a progressive paradigm shift that tends towards a healthy and sustainable lifestyle. The proof is represented by the growing interest in food loss and waste of different sectors, from the political to the academic, or even to the private sector. In order to reduce food waste and to increase sustainability, the European Union (EU) has planned a circular bioeconomy. This action plan includes an approach based on reducing, reusing, recovering, and recycling materials and energy. Every year, there are high amounts of waste and by-products resulting from agricultural producing and agro-industrial processing, impacting the environment and the socio-economic sector. Cereal food products cover over 20% of daily diet, so it can be assumed that cereal production and processing are one of the most important sectors of agri-food industries. It is estimated that the waste generated from cereal processing and manufacturing is up to 13%, a percentage that can be decreased by converting the by-products in raw materials for biofuels, biodegradable plastics, alcohols, antioxidants, food additives, or pharmaceutic ingredients due to their content in macro- and micro-nutrients or bioactive compounds. Based on the fact that diet plays a crucial role in maintaining the integrity of our body, it is important to capitalize on any source of bioactive compounds to which we have access. This review aims to highlight the need to recirculate by-products for the purpose of extraction and use of their key compounds, polyphenols, which have not only antioxidant effects, but also preventive and therapeutic effects against cancer. For these, it is necessary to understand the biotechnologies needed for processing the most consumed cereals, the methods of extraction of phenolic compounds, and the main effects that these compounds have, summarizing the most relevant in vitro and in vivo studies performed so far.

摘要

在当今社会,我们可以看到一种向健康和可持续生活方式转变的积极趋势。这一趋势体现在不同领域,包括政治、学术,甚至私营部门对粮食损失和浪费的兴趣日益浓厚。为了减少粮食浪费和提高可持续性,欧盟(EU)计划建立一个循环生物经济。该行动计划包括基于减少、再利用、回收和循环利用材料和能源的方法。每年,农业生产和农产工业加工都会产生大量的废物和副产品,对环境和社会经济部门造成影响。谷物食品占日常饮食的 20%以上,因此可以假设谷物生产和加工是农业食品工业最重要的部门之一。据估计,谷物加工和制造过程中产生的废物高达 13%,通过将副产品转化为生物燃料、可生物降解塑料、醇类、抗氧化剂、食品添加剂或药用成分,可以减少这一比例,因为这些副产品中含有大量的宏量和微量营养素或生物活性化合物。由于饮食在维持身体完整性方面起着至关重要的作用,因此充分利用我们所能获得的任何生物活性化合物来源是很重要的。本文旨在强调需要对副产品进行再循环,以便提取和利用其关键化合物——多酚,多酚不仅具有抗氧化作用,而且对癌症具有预防和治疗作用。为此,有必要了解加工最常食用谷物所需的生物技术、提取酚类化合物的方法以及这些化合物的主要作用,并总结迄今为止已完成的最相关的体外和体内研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f8c9/8621182/2cbbba58453c/nutrients-13-03934-g002.jpg

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