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具有抗菌活性的富含酚类植物提取物:食品防腐剂和杀菌剂的替代品?

Phenolic-Rich Plant Extracts With Antimicrobial Activity: An Alternative to Food Preservatives and Biocides?

作者信息

Oulahal Nadia, Degraeve Pascal

机构信息

Univ Lyon, Université Claude Bernard Lyon 1, ISARA Lyon, BioDyMIA (Bioingénierie et Dynamique Microbienne aux Interfaces Alimentaires), Equipe Mixte d'Accueil n°3733, IUT Lyon 1, Technopole Alimentec, Bourg-en-Bresse, France.

出版信息

Front Microbiol. 2022 Jan 4;12:753518. doi: 10.3389/fmicb.2021.753518. eCollection 2021.

Abstract

In recent years, the search for natural plant-based antimicrobial compounds as alternatives to some synthetic food preservatives or biocides has been stimulated by sanitary, environmental, regulatory, and marketing concerns. In this context, besides their established antioxidant activity, the antimicrobial activity of many plant phenolics deserved increased attention. Indeed, industries processing agricultural plants generate considerable quantities of phenolic-rich products and by-products, which could be valuable natural sources of natural antimicrobial molecules. Plant extracts containing volatile (e.g., essential oils) and non-volatile antimicrobial molecules can be distinguished. Plant essential oils are outside the scope of this review. This review will thus provide an overview of current knowledge regarding the promises and the limits of phenolic-rich plant extracts for food preservation and biofilm control on food-contacting surfaces. After a presentation of the major groups of antimicrobial plant phenolics, of their antimicrobial activity spectrum, and of the diversity of their mechanisms of action, their most promising sources will be reviewed. Since antimicrobial activity reduction often observed when comparing and activities of plant phenolics has often been reported as a limit for their application, the effects of the composition and the microstructure of the matrices in which unwanted microorganisms are present (e.g., food and/or microbial biofilms) on their activity will be discussed. Then, the different strategies of delivery of antimicrobial phenolics to promote their activity in such matrices, such as their encapsulation or their association with edible coatings or food packaging materials are presented. The possibilities offered by encapsulation or association with polymers of packaging materials or coatings to increase the stability and ease of use of plant phenolics before their application, as well as to get systems for their controlled release are presented and discussed. Finally, the necessity to consider phenolic-rich antimicrobial plant extracts in combination with other factors consistently with hurdle technology principles will be discussed. For instance, several authors recently suggested that natural phenolic-rich extracts could not only extend the shelf-life of foods by controlling bacterial contamination, but could also coexist with probiotic lactic acid bacteria in food systems to provide enhanced health benefits to human.

摘要

近年来,出于卫生、环境、监管和市场等方面的考虑,人们开始寻找天然植物源抗菌化合物,以替代某些合成食品防腐剂或杀菌剂。在此背景下,除了已确定的抗氧化活性外,许多植物酚类物质的抗菌活性也值得更多关注。事实上,加工农产品的行业会产生大量富含酚类的产品和副产品,它们可能是天然抗菌分子的宝贵来源。可以区分含有挥发性(如精油)和非挥发性抗菌分子的植物提取物。植物精油不在本综述范围内。因此,本综述将概述目前关于富含酚类植物提取物在食品保鲜和食品接触表面生物膜控制方面的前景和局限性的知识。在介绍了主要的抗菌植物酚类物质类别、它们的抗菌活性谱以及作用机制的多样性之后,将对它们最有前景的来源进行综述。由于在比较植物酚类物质的[此处原文缺失部分内容]和[此处原文缺失部分内容]活性时,经常观察到抗菌活性降低,这通常被认为是其应用的一个限制,因此将讨论存在有害微生物的基质(如食品和/或微生物生物膜)的组成和微观结构对其活性的影响。然后,介绍了将抗菌酚类物质递送至此类基质以促进其活性的不同策略,例如它们的包封或与可食用涂层或食品包装材料的结合。还介绍并讨论了通过与包装材料或涂层的聚合物进行包封或结合来提高植物酚类物质在应用前的稳定性和易用性,以及获得其控释系统的可能性。最后,将讨论根据栅栏技术原理,将富含酚类的抗菌植物提取物与其他因素结合考虑的必要性。例如,几位作者最近提出,富含天然酚类的提取物不仅可以通过控制细菌污染来延长食品的保质期,还可以在食品系统中与益生菌乳酸菌共存,为人类带来更多健康益处。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/687c/8764166/ee04fc1642ab/fmicb-12-753518-g001.jpg

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