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Design and synthesis of new C-nucleosides as potential adenosine deaminase inhibitors
Authors:Tony Tite  Vassilios Myrianthopoulos  Emmanuel Mikros  Roxane Tenta  Tzortzis Nomikos
Affiliation:a Department of Pharmacy, Division of Pharmaceutical Chemistry, University of Athens, Panepistimiopolis, 15771 Zografou, Greece
b Department of Science of Nutrition-Dietetics, Harokopio University,70 El. Venizelou Street, Athens 17671, Greece
Abstract:A number of new pyrazolo[3,4-c] and [4,3-b]pyridine C-nucleosides, which can be viewed as 4- or 6-deazaformycin analogues were synthesized and examined as potential adenosine deaminase (ADA) inhibitors. The compounds were prepared through the condensation of a suitably substituted, lithiated 2- or 4-methylpyridine with tri-O-benzyl-d-ribonolactone, followed by borohydride reduction of the resulting hemiacetals, intramolecular Mitsunobu cyclisation of the derived diols, formation of the pyrazolopyridine ring system and subsequent removal of the protecting groups. These derivatives were designed on the structural basis provided by docking simulations performed within the enzyme catalytic site, however they demonstrated weak ADA inhibitory activity. Theoretical calculations assisted in the interpretation of the obtained biological data, thus providing guidance for rational structural modifications within this molecular scaffold.
Keywords:Pyrazolopyridine   Nucleosides   Mitsunobu   Enthalpy of hydration
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