College of Food Science and Engineering, Ocean University of China, Qingdao, China.
Qingdao National Laboratory for Marine Science and Technology, Qingdao, China.
Crit Rev Food Sci Nutr. 2023;63(20):4371-4388. doi: 10.1080/10408398.2021.2001640. Epub 2021 Nov 8.
Tremendous progress in the inseparable relationships between probiotics and human health has enabled advances in probiotic functional foods. To ensure the vitality of sensitive probiotics against multiple harsh conditions, rising food-grade delivery systems for probiotics have been developed. This review gives a summary of recently reported delivery vehicles for probiotics, analyzes their respective merits and drawbacks and makes comparisons among them. Subsequently, the applications and future prospects are discussed. According to the types of encapsulating probiotics, food-grade delivery systems for probiotics can be classified into "silkworm cocoons" and "spider webs", which are put forward in this paper. The former, which surrounds the inner probiotics with the outer protective layers, includes particles, emulsions, beads, hybrid electrospun nanofibers and microcapsules. While hydrogels and bigels belong to the latter, which protects probiotics with the aid of network structures. The future prospects include preferable viability and stability of probiotics, co-delivery systems, targeted gut release of probiotics, delivery of multiple strains, more scientific experimental verification and more diversified food products, which will enlighten further studies on delivering probiotics for human health. Taken together, delivery vehicles for probiotics are-or will soon be-in the field of food science, with further applications under development.
益生菌与人类健康之间不可分割的关系取得了巨大的进展,这使得益生菌功能性食品得到了发展。为了确保敏感益生菌在多种恶劣条件下的活力,开发了越来越多的食品级益生菌输送系统。本综述总结了最近报道的益生菌输送载体,分析了它们各自的优缺点,并对它们进行了比较。随后,讨论了它们的应用和未来前景。根据包裹益生菌的类型,益生菌的食品级输送系统可分为“蚕茧”和“蛛网”,这是本文提出的概念。前者用外层保护层将内部益生菌包裹起来,包括颗粒、乳液、珠粒、混合静电纺纳米纤维和微胶囊。而水凝胶和双凝胶属于后者,它们借助网络结构来保护益生菌。未来的前景包括益生菌更好的生存能力和稳定性、共输送系统、益生菌在肠道中的靶向释放、多种菌株的输送、更科学的实验验证以及更多样化的食品产品,这将启发人们对益生菌输送系统的进一步研究,以促进人类健康。总之,益生菌输送载体正在或即将在食品科学领域得到应用,并在不断发展。