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利用包封酶和精油的障碍技术来对抗细菌生物膜。

Hurdle technology using encapsulated enzymes and essential oils to fight bacterial biofilms.

机构信息

Univ. Lille, CNRS, INRAE, Centrale Lille, UMR 8207 - UMET - Unité Matériaux Et Transformations, Lille, France.

Laboratoire Microbiologie Santé Et Environnement (LMSE), Doctoral School of Sciences and Technology, Faculty of Public Health, Lebanese University, Tripoli, Lebanon.

出版信息

Appl Microbiol Biotechnol. 2022 Apr;106(7):2311-2335. doi: 10.1007/s00253-022-11875-5. Epub 2022 Mar 21.

Abstract

Biofilm formation on abiotic surfaces has become a major public health concern because of the serious problems they can cause in various fields. Biofilm cells are extremely resistant to stressful conditions, because of their complex structure impedes antimicrobial penetration to deep-seated cells. The increased resistance of biofilm to currently applied control strategies underscores the urgent need for new alternative and/or supplemental eradication approaches. The combination of two or more methods, known as Hurdle technology, offers an excellent option for the highly effective control of biofilms. In this perspective, the use of functional enzymes combined with biosourced antimicrobial such as essential oil (EO) is a promising alternative anti-biofilm approach. However, these natural antibiofilm agents can be damaged by severe environmental conditions and lose their activity. The microencapsulation of enzymes and EOs is a promising new technology for enhancing their stability and improving their biological activity. This review article highlights the problems related to biofilm in various fields, and the use of encapsulated enzymes with essential oils as antibiofilm agents. KEY POINTS: • Problems associated with biofilms in the food and medical sectors and their subsequent risks on health and food quality. • Hurdle technology using enzymes and essential oils is a promising strategy for an efficient biofilms control. • The microencapsulation of enzymes and essential oils ensures their stability and improves their biological activities.

摘要

生物膜在非生物表面的形成已成为一个主要的公共卫生关注点,因为它们在各个领域可能会引发严重问题。生物膜细胞对恶劣环境条件具有极强的抵抗力,因为其复杂的结构阻碍了抗菌药物渗透到深层细胞。生物膜对当前应用的控制策略的抵抗力增加,突显了迫切需要新的替代和/或补充消除方法。两种或多种方法的结合,称为障碍技术,为生物膜的高效控制提供了极好的选择。从这个角度来看,将功能酶与生物源抗菌剂(如精油 (EO))结合使用是一种很有前途的抗生物膜方法。然而,这些天然抗生物膜剂可能会受到恶劣环境条件的破坏而失去活性。酶和 EO 的微胶囊化是提高其稳定性和改善其生物活性的一项有前途的新技术。本文重点介绍了生物膜在各个领域中存在的问题,以及将包封酶与精油作为抗生物膜剂的应用。关键点:

  1. 食品和医疗领域与生物膜相关的问题及其对健康和食品质量的潜在风险。

  2. 利用酶和精油的障碍技术是一种高效控制生物膜的有前途的策略。

  3. 酶和精油的微胶囊化可确保其稳定性并提高其生物活性。

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