State Key Laboratory of Food Science and Technology, Jiangnan University, Wuxi, China.
Department of Food Science, University of Massachusetts, Amherst, Massachusetts, USA.
Compr Rev Food Sci Food Saf. 2023 Sep;22(5):4107-4146. doi: 10.1111/1541-4337.13201. Epub 2023 Jun 22.
There is considerable interest in the development of advanced biomaterials with improved or novel functionality for diversified applications. Dendritic glucans, such as phytoglycogen and glycogen, are abundant biomaterials with highly branched three-dimensional globular architectures, which endow them with unique structural and functional attributes, including small size, large specific surface area, high water solubility, low viscosity, high water retention, and the availability of numerous modifiable surface groups. Dendritic glucans can be synthesized by in vivo biocatalysis reactions using glucosyl-1-phosphate as a substrate, which can be obtained from plant, animal, or microbial sources. They can also be synthesized by in vitro methods using sucrose or starch as a substrate, which may be more suitable for large-scale industrial production. The large numbers of hydroxyl groups on the surfaces of dendritic glucan provide a platform for diverse derivatizations, including nonreducing end, hydroxyl functionalization, molecular degradation, and conjugation modifications. Due to their unique physicochemical and functional attributes, dendritic glucans have been widely applied in the food, pharmaceutical, biomedical, cosmetic, and chemical industries. For instance, they have been used as delivery systems, adsorbents, tissue engineering scaffolds, biosensors, and bioelectronic components. This article reviews progress in the design, synthesis, and application of dendritic glucans over the past several decades.
人们对具有改进或新颖功能的先进生物材料的开发产生了浓厚的兴趣,这些生物材料可应用于多样化的领域。树状聚糖,如植物糖原和糖原,是丰富的生物材料,具有高度分支的三维球状结构,使它们具有独特的结构和功能特性,包括小尺寸、大比表面积、高水溶性、低粘度、高保水性和大量可修饰的表面基团。树状聚糖可以通过使用葡萄糖-1-磷酸作为底物的体内生物催化反应来合成,葡萄糖-1-磷酸可以从植物、动物或微生物来源获得。它们也可以通过使用蔗糖或淀粉作为底物的体外方法合成,这可能更适合大规模工业生产。树状聚糖表面上大量的羟基为各种衍生化提供了一个平台,包括非还原端、羟基官能化、分子降解和共轭修饰。由于其独特的物理化学和功能特性,树状聚糖已广泛应用于食品、制药、生物医学、化妆品和化学工业。例如,它们已被用作输送系统、吸附剂、组织工程支架、生物传感器和生物电子元件。本文综述了过去几十年中树状聚糖的设计、合成和应用的进展。