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Synthesis and Anticoagulant Activity of Bioisosteric Sulfonic‐Acid Analogues of the Antithrombin‐Binding Pentasaccharide Domain of Heparin
Authors:Dr Mihály Herczeg  Dr László Lázár  Dr Zsuzsanna Bereczky  Prof?Dr Katalin E Kövér  István Timári  Prof?Dr János Kappelmayer  Prof?Dr András Lipták  Prof?Dr Sándor Antus  Dr Anikó Borbás
Institution:1. Research Group for Carbohydrates of the Hungarian Academy of Sciences, University of Debrecen, 4010, Debrecen, P.?O. Box: 94 (Hungary);2. Clinical Research Center, Medical and Health Science Center, University of Debrecen, 4032, Debrecen, 98 Nagyerdei krt (Hungary);3. Department of Inorganic and Analytical Chemistry, University of Debrecen, 4010, Debrecen, P.?O. Box 21 (Hungary);4. Department of Clinical Biochemistry and Molecular Pathology, Medical and Health Science Center, University of Debrecen, 4032, Debrecen, 98 Nagyerdei krt (Hungary);5. Department of Pharmaceutical Chemistry, Medical and Health Science Center, University of Debrecen, 4010, Debrecen, P.?O. Box 70 (Hungary)
Abstract:Two pentasaccharide sulfonic acids that were related to the antithrombin‐binding domain of heparin were prepared, in which two or three primary sulfate esters were replaced by sodium‐sulfonatomethyl moieties. The sulfonic‐acid groups were formed on a monosaccharide level and the obtained carbohydrate sulfonic‐acid esters were found to be excellent donors and acceptors in the glycosylation reactions. Throughout the synthesis, the hydroxy groups to be methylated were masked in the form of acetates and the hydroxy groups to be sulfated were masked with benzyl groups. The disulfonic‐acid analogue was prepared in a 2+3] block synthesis by using a trisaccharide disulfonic acid as an acceptor and a glucuronide disaccharide as a donor. For the synthesis of the pentasaccharide trisulfonic acid, a more‐efficient approach, which involved elongation of the trisaccharide acceptor with a non‐oxidized precursor of the glucuronic acid followed by post‐glycosidation oxidation at the tetrasaccharide level and a subsequent 1+4] coupling reaction, was elaborated. In vitro evaluation of the anticoagulant activity of these new sulfonic‐acid derivatives revealed that the disulfonate analogue inhibited the blood‐coagulation‐proteinase factor Xa with outstanding efficacy; however, the introduction of the third sulfonic‐acid moiety resulted in a notable decrease in the anti‐Xa activity. The difference in the biological activity of the disulfonic‐ and trisulfonic‐acid counterparts could be explained by the different conformation of their L ‐iduronic‐acid residues.
Keywords:anticoagulants  carbohydrates  glycosylation  saccharides  sulfonic acid
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