Wang Xiaochen, Gao Shukun, Yun Shuaiting, Zhang Mingjing, Peng Liyang, Li Yingxiu, Zhou Yanxia
Marine College, Shandong University, Weihai 264209, China.
Pharmaceuticals (Basel). 2022 May 23;15(5):644. doi: 10.3390/ph15050644.
Probiotics exhibit many health benefits and a great potential for broad applications in pharmaceutical fields, such as prevention and treatment of gastrointestinal tract diseases (irritable bowel syndrome), prevention and therapy of allergies, certain anticancer effects, and immunomodulation. However, their applications are limited by the low viability and metabolic activity of the probiotics during processing, storage, and delivery in the digestive tract. To overcome the mentioned limitations, probiotic delivery systems have attracted much attention. This review focuses on alginate as a preferred polymer and presents recent advances in alginate-based polymers for probiotic delivery systems. We highlight several alginate-based delivery systems containing various types of probiotics and the physical and chemical modifications with chitosan, cellulose, starch, protein, fish gel, and many other materials to enhance their performance, of which the viability and protective mechanisms are discussed. Withal, various challenges in alginate-based polymers for probiotics delivery systems are traced out, and future directions, specifically on the use of nanomaterials as well as prebiotics, are delineated to further facilitate subsequent researchers in selecting more favorable materials and technology for probiotic delivery.
益生菌具有诸多健康益处,在制药领域具有广泛应用的巨大潜力,例如预防和治疗胃肠道疾病(肠易激综合征)、预防和治疗过敏、某些抗癌作用以及免疫调节。然而,在加工、储存和消化道递送过程中,益生菌的低存活率和代谢活性限制了它们的应用。为克服上述限制,益生菌递送系统已备受关注。本综述聚焦于藻酸盐作为一种优选聚合物,并介绍了基于藻酸盐的聚合物在益生菌递送系统方面的最新进展。我们重点介绍了几种包含各类益生菌的基于藻酸盐的递送系统,以及用壳聚糖、纤维素、淀粉、蛋白质、鱼胶和许多其他材料进行的物理和化学修饰以提高其性能,其中讨论了存活率和保护机制。此外,指出了基于藻酸盐的聚合物在益生菌递送系统中的各种挑战,并描绘了未来方向,特别是关于使用纳米材料以及益生元,以进一步帮助后续研究人员选择更有利的材料和技术用于益生菌递送。