4.5 Article

Effect of (1→3)- and (1→4)-linkages of fully sulfated polysaccharides on their anticoagulant activity

Journal

CARBOHYDRATE RESEARCH
Volume 337, Issue 10, Pages 925-933

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/S0008-6215(02)00078-2

Keywords

fully chemically sulfated polysaccharides; anticoagulant activity; NMR spectroscopy

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Chemically fully sulfated polysaccharides including xylan (-->4Xylbeta-(1-->4)Xylbeta1-->), amylose (-->4Glcalpha-(1-->4)Glcalpha1-->), cellulose (-->4Glcbeta-(1-->4)Glcbeta1-->), curdlan (-->3Glcbeta-(1-->3)Glcbeta1-->) and galactan (-->3Galbeta-(1-->3)Galbeta1-->), which have been isolated from Korean clam, were prepared, and their anticoagulant activity was investigated. The results strongly suggest that the activity might not be depending on anomeric configuration (alpha or beta) or monosaccharide species but on the glycosidic linkage, either (1-->3) or (1-->4). H-1 NMR studies of these modified polysaccharides show that the neighboring sulfate groups at the C-2 and C-3 positions might have caused the conformational changes of each monosaccharide, from C-4(1) to C-1(4). Furthermore, the effect of 6-sulfate residues on the anticoagulant activity was investigated using a specific desulfated reaction for the chemically fully sulfated polysaccharides. The 6-sulfate group is very important in determining anticoagulant activity of (1-->3)-linked polysaccharides, whereas the activity is not affected by presence or absence of the 6-sulfate group in (1-->4)-linked polysaccharides. (C) 2002 Elsevier Science Ltd. All rights reserved.

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