Conversion of 2,6-anhydro- d-altrose and -mannose derivatives with 4-substituted phenyl thiols to prepare compounds with potential antithrombotic activity

Acetolysis of methyl 3,4-di- O-acetyl-2,6-anhydro- d-altropyranoside afforded a mixture containing, besides 1,3,4-tri- O-acetyl-2,6-anhydro- d-altropyranose, the (1 R) and (1 S) diastereomers of methyl 2,6-anhydro- d-altrose-tetraacetate. Treatment of this mixture with 4-cyanobenzenethiol in the pre...

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Veröffentlicht in:Carbohydrate research 2001-06, Vol.332 (3), p.325-333
Hauptverfasser: Bozó, Éva, Boros, Sándor, Kuszmann, János
Format: Artikel
Sprache:eng
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Zusammenfassung:Acetolysis of methyl 3,4-di- O-acetyl-2,6-anhydro- d-altropyranoside afforded a mixture containing, besides 1,3,4-tri- O-acetyl-2,6-anhydro- d-altropyranose, the (1 R) and (1 S) diastereomers of methyl 2,6-anhydro- d-altrose-tetraacetate. Treatment of this mixture with 4-cyanobenzenethiol in the presence of trimethylsilyl triflate resulted in a mixture containing the 3,4,5-tri- O-acetyl-2,6-anhydro- d-altrose bis(4-cyanophenyl) dithioacetal, the corresponding O-methyl S-aryl monothiohemiacetal diastereomers and the β-thiopyranoside, respectively. Acetolysis of methyl 3,4-di- O-acetyl-2,6-anhydro- d-mannopyranoside led to a mixture of the (1 R) and (1 S) diastereomers of methyl 2,6-anhydro- d-mannosetetraacetate, which was converted into the corresponding O-methyl S-aryl monothiohemiacetals. Treatment of 1,1,3,4,5-penta- O-acetyl-2,6-anhydro- aldehydo- d-altrose and - d-mannose with 4-cyano- and 4-nitrobenzenethiol, respectively, in the presence of trimethylsilyl triflate afforded the corresponding dithioacetal derivatives. All arylthio derivatives obtained after deacetylation were tested for their oral antithrombotic activity. Graphic
ISSN:0008-6215
1873-426X
DOI:10.1016/S0008-6215(01)00102-1