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微生物生物膜:对其特性、有益作用及应用的全面综述

Microbial biofilms: a comprehensive review of their properties, beneficial roles and applications.

作者信息

Zhao Nan, Liu Zhongyang, Chen Xinyi, Yu Ting, Yan Fujie

机构信息

Department of Food Science and Nutrition, College of Biosystems Engineering and Food Science, Zhejiang University, Hangzhou, China.

出版信息

Crit Rev Food Sci Nutr. 2024 Nov 23:1-15. doi: 10.1080/10408398.2024.2432474.

Abstract

Biofilms are microbial communities nested in self-secreted extracellular polymeric substances that can provide microorganisms with strong tolerance and a favorable living environment. Deepening the understanding and research on positive effects of microbial biofilms is consequently necessary, since most researches focuses on how to control biofilms formation to reduce food safety issues. This paper highlights beneficial roles of biofilms including the formation mechanism, influencing factors, health benefits, strategies to improve its film-forming efficiency, as well as applications especially in fields of food industry, agriculture and husbandry, and environmental management. Beneficial biofilms can be affected by multiple factors such as strain characteristics, media composition, signal molecules, and carrier materials. The biofilm barrier composed of beneficial bacteria provides a more favorable microecological environment, keeping bacteria survival longer, and its derived metabolites are better conducive to health. However, in the practical application of biofilms, there are still significant challenges, especially in terms of film-forming efficiency, stability, and safety assessment. Continuous research is needed to discover innovative methods of utilizing biofilms for sustainable food development in the future, in order to fully unleash its potential and promote its application in the food industry.

摘要

生物膜是嵌套在自身分泌的胞外聚合物中的微生物群落,能为微生物提供强大的耐受性和良好的生存环境。因此,加深对微生物生物膜积极作用的理解和研究很有必要,因为大多数研究都集中在如何控制生物膜形成以减少食品安全问题。本文重点介绍了生物膜的有益作用,包括形成机制、影响因素、健康益处、提高其成膜效率的策略,以及在食品工业、农牧业和环境管理等领域的应用。有益生物膜会受到多种因素的影响,如菌株特性、培养基成分、信号分子和载体材料等。由有益细菌组成的生物膜屏障提供了更有利的微生态环境,使细菌存活时间更长,其产生的代谢产物更有利于健康。然而,在生物膜的实际应用中,仍存在重大挑战,尤其是在成膜效率、稳定性和安全性评估方面。未来需要持续研究,以发现利用生物膜促进可持续食品发展的创新方法,从而充分发挥其潜力并推动其在食品工业中的应用。

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