Yao Xiaoya, Wan Xinyu, Chi Yongzhou, Nie Xiaobao
School of Life Science and Food Engineering, Huaiyin Institute of Technology, Huai'an, 223003, Jiangsu, People's Republic of China.
Antonie Van Leeuwenhoek. 2025 Aug 15;118(9):131. doi: 10.1007/s10482-025-02146-0.
Sulfated polysaccharides have received significant interest due to their broad range of biological properties, which include immunomodulation, anticoagulation, and antiviral activity. Green algae are an important source of structurally diverse sulfated polysaccharides, but efforts directed at research and development of these compounds have lagged far behind efforts directed at sulfated polysaccharides from brown and red algae. The family Cladophoraceae, represented by the genera Cladophora and Chaetomorpha, are widely distributed in resource-rich marine, brackish, and freshwater environments. These algal genera are rich in sulfated polysaccharides primarily composed of galactose and arabinose that exhibit unique structures not yet comprehensively investigated. The present review provides information on the extraction and purification of sulfated polysaccharides from the Cladophoraceae (SPC), an analysis of their chemical composition and structural features, and an overview of their biological activity. Studies have shown that SPC exhibit anticoagulant, immunomodulatory, anti-obesity (and related complications), and antibacterial properties. However, the mechanisms underlying their bioactivity, particularly the molecular targets of their anticoagulant and immunomodulant activity, remain poorly characterized, and systematic structure-activity relationship studies are lacking. The objective of our review is to provide a theoretical foundation for further research and development of SPC and to promote their use in pharmaceuticals, nutraceuticals, and cosmetics.
硫酸化多糖因其广泛的生物学特性而备受关注,这些特性包括免疫调节、抗凝和抗病毒活性。绿藻是结构多样的硫酸化多糖的重要来源,但针对这些化合物的研发工作远远落后于针对褐藻和红藻硫酸化多糖的努力。以刚毛藻属和毛藻属为代表的刚毛藻科广泛分布于资源丰富的海洋、咸淡水和淡水环境中。这些藻类富含主要由半乳糖和阿拉伯糖组成的硫酸化多糖,其结构独特,尚未得到全面研究。本综述提供了从刚毛藻科提取和纯化硫酸化多糖(SPC)的信息,分析了它们的化学组成和结构特征,并概述了它们的生物活性。研究表明,SPC具有抗凝、免疫调节、抗肥胖(及相关并发症)和抗菌特性。然而,其生物活性的潜在机制,尤其是其抗凝和免疫调节活性的分子靶点,仍未得到充分表征,且缺乏系统的构效关系研究。我们综述的目的是为SPC的进一步研发提供理论基础,并促进其在制药、营养保健品和化妆品中的应用。