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新型纳米包封益生菌制剂:包封材料、递送和包封系统。

Novel nano-encapsulated probiotic agents: Encapsulate materials, delivery, and encapsulation systems.

机构信息

Key Laboratory of Dairy Science, Northeast Agricultural University, College of Food Science, Harbin 150030, China.

Key Laboratory of Dairy Science, Northeast Agricultural University, College of Food Science, Harbin 150030, China.

出版信息

J Control Release. 2022 Sep;349:184-205. doi: 10.1016/j.jconrel.2022.06.061. Epub 2022 Jul 8.

Abstract

Gut microbes are closely associated with most human health. When ingested orally, probiotics can effectively regulate the composition and quantity of human intestinal microorganisms, which is beneficial to human health. However, probiotics will be affected by the harsh environment of the digestive tract during the in vivo transportation process, and ensuring the viability of probiotics is a great challenge. Probiotic encapsulating technology provides an effective solution to this problem. The introduction of extreme temperatures, large probiotic microcapsule sizes and the difficulty in controlling probiotic microcapsule particle sizes mean that traditional microcapsule encapsulation methods have some limitations. From traditional microcapsule technology to the bulk encapsulation of probiotics with nanofibers and nanoparticles to the recent ability to wear nano "armor" for a single probiotic through biofilm, biological membrane and nanocoating. Emerging probiotic nanoagents provides a new conceptual and development direction for the field of probiotic encapsulation. In this review, we presented the characteristics of encapsulated probiotic carrier materials and digestive tract transport systems, we focused on the encapsulation systems of probiotic nanoagents, we analyzed the shortcomings and advantages of the current agent encapsulation systems, and we stated the developmental direction and challenges for these agents for the future.

摘要

肠道微生物与大多数人类健康密切相关。口服益生菌可以有效地调节人体肠道微生物的组成和数量,这有利于人体健康。然而,益生菌在体内运输过程中会受到消化道恶劣环境的影响,保证益生菌的存活率是一个巨大的挑战。益生菌包埋技术为此提供了有效的解决方案。极端温度的引入、较大的益生菌微胶囊尺寸以及难以控制益生菌微胶囊粒径意味着传统的微胶囊包埋方法存在一些局限性。从传统的微胶囊技术到使用纳米纤维和纳米颗粒对益生菌进行大规模包埋,再到最近通过生物膜、纳米涂层和纳米“盔甲”为单个益生菌穿上纳米“盔甲”的能力。新兴的益生菌纳米制剂为益生菌包埋领域提供了新的概念和发展方向。在这篇综述中,我们介绍了包埋益生菌载体材料和消化道转运系统的特点,重点介绍了益生菌纳米制剂的包埋系统,分析了现有制剂包埋系统的优缺点,并对未来这些制剂的发展方向和挑战进行了阐述。

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