Résumé
This study presents the design, synthesis, and biological evaluation of novel N-arylsulfonamide nucleosides as inhibitors of the SARS-CoV-2 nsp14 N7-methyltransferase. Several compounds demonstrate potent nanomolar inhibition in vitro, with structure-activity relationship analysis revealing the importance of aryl substituents on activity and physicochemical properties. Approaches aimed to improve cellular delivery using carbonate and isobutyryl prodrugs show partial conversion to the active form upon incubation in cell extracts, while orthoester prodrugs remain stable and inactive. Additionally, a fluorescent analogue was synthesized to track intracellular uptake and distribution, confirming cytoplasmic localization. These results highlight the Narylsulfonamide nucleoside scaffold as a promising antiviral chemotype against SARS-CoV-2, and emphasize the critical role of chemical modifications for optimizing biological activity and pharmacokinetic profiles toward effective COVID-19 therapies.