Construction of nano slow-release systems for antibacterial active substances and its applications: A comprehensive review

活性成分 纳米技术 抗菌剂 抗菌活性 活性包装 化学 食品包装 生化工程 材料科学 组合化学 有机化学 细菌 生物信息学 遗传学 食品科学 工程类 生物
作者
Jiayong Cao,Mingkun Gao,Jian Wang,Yuan Liu,Xuan Zhang,Yi Ping,Jia Liu,Ge Chen,Donghui Xu,Xiaodong Huang,Guangyang Liu
出处
期刊:Frontiers in Nutrition [Frontiers Media]
卷期号:10 被引量:10
标识
DOI:10.3389/fnut.2023.1109204
摘要

At present, nano-carrier materials with antibacterial activity are of great significance. Due to the widespread resistance of many pathogenic microorganisms, it has seriously threatened human health. The natural antimicrobial substances extracted from fruits and vegetables can significantly improve their stability combined with nano-carrier materials. The resistance of pathogenic microorganisms will be substantially reduced, greatly enhancing the effect of active antimicrobial substances. Nanotechnology has excellent research prospects in the food industry, antibacterial preservation, food additives, food packaging, and other fields. This paper introduces nano-carrier materials and preparation techniques for loading and encapsulating active antibacterial substances in detail by constructing a nano-release system for active antibacterial substances. The antibacterial effect can be achieved by protecting them from adverse external conditions and destroying the membrane of pathogenic microorganisms. The mechanism of the slow release of the bacteriostatic active substance is also described. The mechanism of carrier loading and release is mainly through non-covalent forces between the bacteriostatic active substance and the carrier material, such as hydrogen bonding, π-π stacking, van der Waals forces, electrostatic interactions, etc., as well as the loading and adsorption of the bacteriostatic active substance by the chemical assembly. Finally, its wide application in food and medicine is introduced. It is hoped to provide a theoretical basis and technical support for the efficient utilization and product development of bacteriostatic active substances.
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