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Purification and Structural Analyses of Sulfated Polysaccharides from Low-Value Sea Cucumber Stichopus naso and Anticoagulant Activities of Its Oligosaccharides.

Authors :
Cui, Lige
Sun, Huifang
Shang, Xiaolei
Wen, Jing
Li, Pengfei
Yang, Shengtao
Chen, Linxia
Huang, Xiangyang
Li, Haoyang
Yin, Ronghua
Zhao, Jinhua
Source :
Marine Drugs; Jun2024, Vol. 22 Issue 6, p265, 15p
Publication Year :
2024

Abstract

Three polysaccharides (SnNG, SnFS and SnFG) were purified from the body wall of Stichopus naso. The physicochemical properties, including monosaccharide composition, molecular weight, sulfate content, and optical rotation, were analyzed, confirming that SnFS and SnFG are sulfated polysaccharides commonly found in sea cucumbers. The highly regular structure {3)-L-Fuc<subscript>2S</subscript>-(α1,}<subscript>n</subscript> of SnFS was determined via a detailed NMR analysis of its oxidative degradation product. By employing β-elimination depolymerization of SnFG, tri-, penta-, octa-, hendeca-, tetradeca-, and heptadeca-saccharides were obtained from the low-molecular-weight product. Their well-defined structures confirmed that SnFG possessed the backbone of {D-GalNAc<subscript>4S6S</subscript>-β(1,4)-D-GlcA}, and each GlcA residue was branched with Fuc<subscript>2S4S</subscript>. SnFS and SnFG are both structurally the simplest version of natural fucan sulfate and fucosylated glycosaminoglycan, facilitating the application of low-value sea cucumbers S. naso. Bioactivity assays showed that SnFG and its derived oligosaccharides exhibited potent anticoagulation and intrinsic factor Xase (iXase) inhibition. Moreover, a comparative analysis with the series of oligosaccharides solely branched with Fuc<subscript>3S4S</subscript> showed that in oligosaccharides with lower degrees of polymerization, such as octasaccharides, Fuc<subscript>2S4S</subscript> led to a greater increase in APTT prolongation and iXase inhibition. As the degree of polymerization increases, the influence from the sulfation pattern diminishes, until it is overshadowed by the effects of molecular weight. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
16603397
Volume :
22
Issue :
6
Database :
Complementary Index
Journal :
Marine Drugs
Publication Type :
Academic Journal
Accession number :
178186352
Full Text :
https://doi.org/10.3390/md22060265