School of Medicine and Health, Harbin Institute of Technology, Harbin 150001, China.
College of Sports and Human Sciences, Harbin Sport University, Harbin 150008, China.
Int J Biol Macromol. 2024 Jan;256(Pt 2):128440. doi: 10.1016/j.ijbiomac.2023.128440. Epub 2023 Nov 26.
Since many nutrients are highly sensitive, they cannot be absorbed and utilized efficiently by the body. Using nano-delivery systems to encapsulate nutrients is an effective method of solving the problems associated with the application of nutrients at this stage. Polysaccharides, as natural biomaterials, have a unique chemical structure, ideal biocompatibility, biodegradability and low immunogenicity. This makes polysaccharides powerful carriers that can enhance the biological activity of nutrients. However, the true role of polysaccharide-based delivery systems requires an in-depth understanding of the structural and physicochemical characteristics of polysaccharide-based nanodelivery systems, as well as effective modulation of the intestinal delivery mechanism and the latest advances in nano-encapsulation. This review provides an overview of polysaccharide-based nano-delivery systems dependent on different carrier types, emphasizing recent advances in the application of polysaccharides, a biocomposite material designed for nutrient delivery systems. Strategies for polysaccharide-based nano-delivery systems to enhance the bioavailability of orally administered nutrients from the perspective of the intestinal absorption barrier are presented. Characterization methods for polysaccharide-based nano-delivery systems are presented as well as an explanation of the formation mechanisms behind nano-delivery systems from the perspective of molecular forces. Finally, we discussed the challenges currently facing polysaccharide-based nano-delivery systems as well as possible future directions for the future.
由于许多营养素高度敏感,因此它们无法被身体高效吸收和利用。利用纳米递药系统来包裹营养素是解决现阶段营养素应用问题的有效方法。多糖作为天然生物材料,具有独特的化学结构、理想的生物相容性、可生物降解性和低免疫原性。这使得多糖成为增强营养素生物活性的强大载体。然而,多糖基递药系统的真正作用需要深入了解多糖基纳米递药系统的结构和物理化学特性,以及有效调节肠道递药机制和最新的纳米封装进展。本综述概述了基于多糖的纳米递药系统,重点介绍了用于营养递药系统的生物复合材料——多糖的最新应用进展。本文从肠道吸收屏障的角度提出了基于多糖的纳米递药系统提高口服营养素生物利用度的策略。本文还介绍了多糖基纳米递药系统的表征方法,并从分子力的角度解释了纳米递药系统的形成机制。最后,我们讨论了多糖基纳米递药系统目前面临的挑战以及未来可能的发展方向。