P. D. Patel Institute of Applied Sciences, CHARUSAT Campus, Charotar University of Sciences and Technology, Changa 388421, India.
Natural Products & Green Chemistry Division, CSIR-Central Salt and Marine Chemicals Research Institute, Gijubhai Badheka Marg, Bhavnagar 364002, India.
Molecules. 2021 Apr 29;26(9):2608. doi: 10.3390/molecules26092608.
Among the various natural polymers, polysaccharides are one of the oldest biopolymers present on the Earth. They play a very crucial role in the survival of both animals and plants. Due to the presence of hydroxyl functional groups in most of the polysaccharides, it is easy to prepare their chemical derivatives. Several polysaccharide derivatives are widely used in a number of industrial applications. The polysaccharides such as cellulose, starch, chitosan, etc., have several applications but due to some distinguished characteristic properties, seaweed polysaccharides are preferred in a number of applications. This review covers published literature on the seaweed polysaccharides, their origin, and extraction from seaweeds, application, and chemical modification. Derivatization of the polysaccharides to impart new functionalities by chemical modification such as esterification, amidation, amination, C-N bond formation, sulphation, acetylation, phosphorylation, and graft copolymerization is discussed. The suitability of extraction of seaweed polysaccharides such as agar, carrageenan, and alginate using ionic solvent systems from a sustainability point of view and future prospects for efficient extraction and functionalization of seaweed polysaccharides is also included in this review article.
在各种天然聚合物中,多糖是地球上存在的最古老的生物聚合物之一。它们在动植物的生存中起着非常关键的作用。由于大多数多糖都含有羟基官能团,因此很容易制备它们的化学衍生物。几种多糖衍生物广泛应用于许多工业应用中。多糖如纤维素、淀粉、壳聚糖等有多种应用,但由于一些独特的特性,海藻多糖在许多应用中更受欢迎。这篇综述涵盖了已发表的关于海藻多糖的文献,包括它们的来源、从海藻中提取、应用和化学修饰。通过化学修饰如酯化、酰胺化、氨化、C-N 键形成、硫酸化、乙酰化、磷酸化和接枝共聚,对多糖进行衍生化以赋予新的功能也进行了讨论。本文还从可持续性的角度讨论了使用离子溶剂系统从琼脂、卡拉胶和褐藻酸盐等海藻中提取多糖的适宜性,以及海藻多糖的高效提取和功能化的未来前景。