Martins Alice, Alves Celso, Silva Joana, Pinteus Susete, Gaspar Helena, Pedrosa Rui
MARE-Marine and Environmental Sciences Centre/ARNET-Aquatic Research Network, Polytechnic of Leiria, 2520-630 Peniche, Portugal.
BioISI-Biosystems and Integrative Sciences Institute, Faculty of Sciences, University of Lisbon, 1749-016 Lisboa, Portugal.
Polymers (Basel). 2023 Jan 12;15(2):399. doi: 10.3390/polym15020399.
The marine environment presents itself as a treasure chest, full of a vast diversity of organisms yet to be explored. Among these organisms, macroalgae stand out as a major source of natural products due to their nature as primary producers and relevance in the sustainability of marine ecosystems. Sulfated polysaccharides (SPs) are a group of polymers biosynthesized by macroalgae, making up part of their cell wall composition. Such compounds are characterized by the presence of sulfate groups and a great structural diversity among the different classes of macroalgae, providing interesting biotechnological and therapeutical applications. However, due to the high complexity of these macromolecules, their chemical characterization is a huge challenge, driving the use of complementary physicochemical techniques to achieve an accurate structural elucidation. This review compiles the reports (2016-2021) of state-of-the-art methodologies used in the chemical characterization of macroalgae SPs aiming to provide, in a simple way, a key tool for researchers focused on the structural elucidation of these important marine macromolecules.
海洋环境犹如一个装满大量有待探索的多样生物的宝库。在这些生物中,大型藻类因其作为初级生产者的性质以及在海洋生态系统可持续性方面的相关性,成为天然产物的主要来源。硫酸化多糖(SPs)是大型藻类生物合成的一类聚合物,构成其细胞壁成分的一部分。这类化合物的特征是存在硫酸基团,并且在不同种类的大型藻类之间具有极大的结构多样性,从而具有有趣的生物技术和治疗应用。然而,由于这些大分子的高度复杂性,其化学表征是一项巨大挑战,这促使人们使用互补的物理化学技术来实现准确的结构解析。本综述汇编了2016年至2021年用于大型藻类硫酸化多糖化学表征的前沿方法的报告,旨在以简单的方式为专注于这些重要海洋大分子结构解析的研究人员提供一个关键工具。