Depsides: Lichen metabolites active against hepatitis C virus

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Abstract

A thorough phytochemical study of Stereocaulon evolutum was conducted, for the isolation of structurally related atranorin derivatives. Indeed, pilot experiments suggested that atranorin (1), the main metabolite of this lichen, would interfere with the lifecycle of hepatitis C virus (HCV). Eight compounds, including one reported for the first time (2), were isolated and characterized. Two analogs (5, 6) were also synthesized, to enlarge the panel of atra-norin-related structures. Most of these compounds were active against HCV, with a halfmaximal inhibitory concentration of about 10 to 70 μM, with depsides more potent than monoaromatic phenols. The most effective inhibitors (1, 5 and 6) were then added at different steps of the HCV lifecycle. Interestingly, atranorin (1), bearing an aldehyde function at C-3, inhibited only viral entry, whereas the synthetic compounds 5 and 6, bearing a hydroxymethyl and a methyl function, respectively, at C-3 interfered with viral replication.

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Vu, T. H., Lamer, A. C. L., Lalli, C., Samson, J. B. M., Dévéhat, F. L. L., & Seyec, J. L. (2015). Depsides: Lichen metabolites active against hepatitis C virus. PLoS ONE, 10(3). https://doi.org/10.1371/journal.pone.0120405

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