A series of 1'-substituted analogs of 4-aza-7,9-dideazaadenosine C-nucleoside were prepared and evaluated for the potential as antiviral agents. These compounds showed a broad range of inhibitory activity against various RNA viruses. In particular, the whole cell potency against HCV when R=CN was attributed to inhibition of HCV NS5B polymerase and intracellular concentration of the corresponding nucleoside triphosphate.
The heterocycles containing N and O are important structures in pharmaceuticals, agrochemicals and functional molecules. The synthesis of these compounds usually needs complex substrates and harsh reaction conditions. Herein, we...
Herein, nickel-catalyzed
decarbonylative C–F bond alkylation
of aroyl fluorides with organoboron reagents is reported. Aroyl fluorides
are more chemically stable than the corresponding aroyl chlorides
and can be readily synthesized from the corresponding carboxylic acids.
The fluoronickel intermediate formed via oxidative addition interacts
with Lewis-acidic trialkylboranes, and the subsequent decarbonylative
alkylation proceeds. This new synthetic methodology allows 1,2-bifunctionalization
of aromatic carboxylic acids via palladium-catalyzed
ortho
-C–H arylation. In addition, an unprecedented 1,4-nickel migration
on
ortho
-arylated aroyl fluorides was observed. As
a demonstration of the synthetic utility of the present reaction,
the sequential 1-alkyl-2-arylation of 3-hydroxy-2-naphthoic acid was
accomplished via chemoselective alkylation at a fluorocarbonyl moiety
and the subsequent C–O bond arylation at an acetoxy group.
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