Norwegian Biopolymer Laboratory (NOBIPOL), Department of Biotechnology and Food Science, NTNU Norwegian University of Science and Technology, Sem Sælands vei 6/8, 7491 Trondheim, Norway.
Department of Biotechnology and Nanomedicine, SINTEF Industry, Richard Birkelands vei 3 B, 7034 Trondheim, Norway.
Carbohydr Polym. 2024 Nov 1;343:122448. doi: 10.1016/j.carbpol.2024.122448. Epub 2024 Jun 30.
Fucoidans, a group of high molecular weight polysaccharides derived mainly from brown algae, are characterized by their high fucose content, degree of sulfation (DS), and intra- and interspecific structural variation. Fucoidans are increasingly recognized due to various reported bioactivities, potentially beneficial for human health. To unlock their potential use within biomedical applications, a better understanding of their structure-functional relationship is needed. To achieve this, systematic bioactivity studies based on well-defined, pure fucoidans, and the establishment of standardized, satisfactory purification protocols are required. We performed a comprehensive compositional and structural characterization of crude and ultra-purified fucoidans from three kelps: Saccharina latissima (SL), Alaria esculenta (AE) and Laminaria hyperborea (LH). Further, the complement-inhibiting activity of the purified fucoidans was assessed in a human whole blood model. The purification process led to fucoidans with higher DS and fucose and lower concentrations of other monosaccharides. Fucoidans from SL and LH resembles homofucans, while AE is a heterofucan rich in galactose with comparably lower DS. Fucoidans from SL and LH showed complement-inhibiting activity in blood and blood plasma, while no inhibition was observed for AE under the same conditions. The results emphasize the importance of high DS and possibly fucose content for fucoidans' bioactive properties.
岩藻聚糖,一组主要来源于褐藻的高分子量多糖,其特征在于其岩藻糖含量高、硫酸化程度(DS)高,以及种内和种间结构变化。由于具有各种报道的生物活性,岩藻聚糖越来越受到关注,可能对人类健康有益。为了在生物医学应用中发挥其潜在用途,需要更好地了解其结构-功能关系。为此,需要基于定义明确、纯净的岩藻聚糖进行系统的生物活性研究,并建立标准化、令人满意的纯化方案。我们对三种海带(裙带菜、海蒿子和北裙带菜)的粗制和超纯岩藻聚糖进行了全面的组成和结构表征。此外,还在人全血模型中评估了纯化岩藻聚糖的补体抑制活性。纯化过程导致 DS 和岩藻糖含量较高,而其他单糖浓度较低。来自 SL 和 LH 的岩藻聚糖类似于同源岩藻聚糖,而 AE 是富含半乳糖的异源岩藻聚糖,DS 相对较低。SL 和 LH 的岩藻聚糖在血液和血浆中具有补体抑制活性,而在相同条件下,AE 则没有抑制作用。这些结果强调了高 DS 和可能的岩藻糖含量对岩藻聚糖生物活性的重要性。