Sun Chunying, Zhang Zhidong, Sun Yantong, Sun Xueyuan, Jin Yan, Zhu Jingwen, Yu Jiaxin, Wu Tao
State Key Laboratory of Food Nutrition and Safety, Food Biotechnology Engineering Research Center of Ministry of Education, College of Food Science and Engineering, Tianjin University of Science & Technology, Tianjin 300457, China.
Foods. 2025 Jun 30;14(13):2318. doi: 10.3390/foods14132318.
Probiotics, as live microbial agents, play a pivotal role in modulating host microbiota balance, enhancing immunity, and improving gastrointestinal health. However, their application is hindered by critical challenges, such as inactivation during processing, storage, and gastrointestinal delivery, as well as low colonization efficiency. This article comprehensively reviews recent advances in probiotic delivery systems, focusing on innovative technologies, including hydrogels, nanocoatings, emulsions, and core-shell microgels. It provides an in-depth analysis of natural polyphenol-based nanocoatings and metal-phenolic network (MPN) single-cell encapsulation strategies for enhancing bacterial survival rates while highlighting the unique potential of microalgae-based bio-carriers in targeted delivery. Research demonstrates that well-designed edible delivery systems can effectively preserve probiotic viability and enable controlled intestinal release, offering novel strategies to reshape a healthy gut microbiome. While these systems show promise in maintaining probiotic activity and gut colonization, challenges remain in safety, scalable production, and clinical translation. Overcoming these barriers is crucial to fully harnessing probiotics for human health.
益生菌作为活的微生物制剂,在调节宿主微生物群平衡、增强免疫力和改善胃肠道健康方面发挥着关键作用。然而,它们的应用受到诸多严峻挑战的阻碍,例如在加工、储存和胃肠道传递过程中的失活,以及低定殖效率。本文全面综述了益生菌递送系统的最新进展,重点关注创新技术,包括水凝胶、纳米涂层、乳液和核壳微凝胶。文章深入分析了基于天然多酚的纳米涂层和金属-酚网络(MPN)单细胞封装策略,以提高细菌存活率,同时突出了基于微藻的生物载体在靶向递送方面的独特潜力。研究表明,精心设计的可食用递送系统能够有效保持益生菌的活力,并实现肠道的可控释放,为重塑健康的肠道微生物群提供了新策略。虽然这些系统在维持益生菌活性和肠道定殖方面显示出前景,但在安全性、可扩展生产和临床转化方面仍存在挑战。克服这些障碍对于充分利用益生菌促进人类健康至关重要。