Zhengwei Ying, Haroon Khan, Li Peipei, Huicheng Yang, Lingyan Wang, Manman Chen, Chunyu Niu, Syed Shams Ul Hassan, Yan Chen, Leifang Zhang, Yin Chen, Yanlei Yu
Sulfated fucans from sea cucumbers are potent anticoagulants, but their structural complexity has hindered understanding of their structure-activity relationship at the oligosaccharide level. Herein, we report the preparation, structural characterization, and anticoagulant evaluation of structurally defined sulfated fuco-oligosaccharides from the sea cucumber, Acaudina leucoprocta. Crude polysaccharides were fractionated by anion-exchange chromatography to obtain a fucan sulfate fraction (WS-0). Mild acid hydrolysis of WS-0 generated an oligosaccharide mixture, which was purified by sequential Bio-Gel P-2 and anion-exchange chromatography, yielding a series of oligosaccharide fractions with degrees of polymerization (DP) ranging from 1 to 9. Their structures were elucidated using ESI-MS, MS/MS, and 800 MHz NMR spectroscopy. Two structurally defined fuco-disaccharides were obtained: α-L-Fucp2S4S-(1 → 3)-α/β-L-Fucp (dWS0-4-0.14) and a mixture of α-L-Fucp2S-(1 → 3)-α/β-L-Fucp and α-L-Fucp4S-(1 → 3)-α/β-L-Fucp (dWS0-4-0.05). Among the oligosaccharide fractions, dWS0-3-1 (DP 3-6) exhibited the strongest anticoagulant activity, prolonging APTT to 47.4 ± 4.7 s and TT to 43.2 ± 1.0 s at 400 μg/mL, while showing minimal effect on PT. Comparative analysis revealed that both chain length and sulfation pattern co-determine anticoagulant potency, with 2,4-di-O-sulfation enabling shorter chains to inhibit thrombin. This study provided the first structural map of anticoagulant fuco-oligosaccharides from A. leucoprocta, identifying minimal structural motifs for activity and offering promising leads for developing novel antithrombotic agents.