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STEREOCONTROLLED FACILE SYNTHESIS AND BIOLOGICAL EVALUATION OF (3 ' S) AND (3 ' R)-3 '-AMINO (AND AZIDO)-3 '-DEOXY PYRANONUCLEOSIDES

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Autore
Manta, S.; Parmenopoulou, V.; Kiritsis, C.; Dimopoulou, A.; Kollatos, N.; Papasotiriou, I.; Balzarini, J.; Komiotis, D.
Data
2012
DOI
10.1080/15257770.2012.696759
Soggetto
Azido pyranonucleosides
amino pyranonucleosides
cytostatic activity
5-fluorouracil
FLUORO-KETOPYRANOSYL NUCLEOSIDES
N-4-BENZOYL CYTOSINE
3'-AMINO-3'-DEOXYHEXOPYRANOSYL NUCLEOSIDES
N-6-BENZOYL ADENINE
1,5-ANHYDROHEXITOL NUCLEOSIDES
EXOMETHYLENE PYRANONUCLEOSIDES
EFFICIENT SYNTHESIS
ANTIVIRAL AGENTS
ANTITUMOR AGENTS
DERIVATIVES
Biochemistry & Molecular Biology
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Abstract
This article describes the synthesis of (3'S) and (3'R)-3'-amino-3'-deoxy pyranonucleosides and their precursors (3'S) and (3'R)-3'-azido-3'-deoxy pyranonucleosides. Azidation of 1,2:5,6-di-O-isopropylidene-3-O-toluenesulfonyl-alpha-D-allofuranose followed by hydrolysis and subsequent acetylation afforded 3-azido-3-deoxy-1,2,4,6-tetra-O-acetyl-D-glucopyranose, which upon coupling with the proper silylated bases, deacetylation, and catalytic hydrogenation, obtained the target 3'-amino-3'-deoxy-beta-D-glucopyranonucleosides. The desired 1-(3'-amino-3'-deoxy-beta-D-allopyranosyl) 5-fluorouracil was readily prepared from the suitable imidazylate sugar after azidation followed by a protection/deprotection sequence and reduction of the unprotected azido precursor. No antiviral activity was observed for the novel nucleosides. Moderate cytostatic activity was recorded for the 5-fluorouracil derivatives.
URI
http://hdl.handle.net/11615/30669
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