Repositorio Dspace

Theoretical insights into the effect of halogenated substituent on the electronic structure and spectroscopic properties of the favipiravir tautomeric forms and its implications for the treatment of COVID-19

Mostrar el registro sencillo del ítem

dc.rights.license CC BY eng
dc.contributor.author Assis, Leticia Cristina cze
dc.contributor.author de Castro, Alexandre Alves cze
dc.contributor.author de Jesus, Joao Paulo Almirao cze
dc.contributor.author da Cunha, Elaine Fontes Ferreira cze
dc.contributor.author Nepovimová, Eugenie cze
dc.contributor.author Krejcar, Ondřej cze
dc.contributor.author Kuča, Kamil cze
dc.contributor.author de Castro Ramalho, Teodorico cze
dc.contributor.author La Porta, Felipe de Almeida cze
dc.date.accessioned 2026-07-21T06:41:21Z
dc.date.available 2026-07-21T06:41:21Z
dc.date.issued 2021 eng
dc.identifier.issn 2046-2069 eng
dc.identifier.uri http://hdl.handle.net/20.500.12603/2805
dc.description.abstract In this study, we systematically investigated the electronic structure, spectroscopic (nuclear magnetic resonance, infrared, Raman, electron ionization mass spectrometry, UV-Vis, circular dichroism, and emission) properties, and tautomerism of halogenated favipiravir compounds (fluorine, chlorine, and bromine) from a computational perspective. Additionally, the effects of hydration on the proton transfer mechanism of the tautomeric forms of the halogenated favipiravir compounds are discussed. Our results suggest that spectroscopic properties allow for the elucidation of such tautomeric forms. As is well-known, the favipiravir compound has excellent antiviral properties and hence was recently tested for the treatment of new coronavirus (SARS-CoV-2). Through in silico modeling, in the current study, we evaluate the role of such tautomeric forms in order to consider the effect of drug-metabolism in the inhibition process of the main protease (M-pro) and RNA-dependent RNA polymerase (RdRp) of SARS-CoV-2 virus. According to the molecular docking, all halogenated compounds presented a better interaction energy than the co-crystallized active ligand (-3.5 kcal mol(-1)) in the viral RdRp, in both wild-type (-6.3 to -6.5 kcal mol(-1)) and variant (-5.4 to -5.6 kcal mol(-1)) models. The variant analyzed for RdRp (Y176C) decreases the affinity of the keto form of the compounds in the active site, and prevented the ligands from interacting with RNA. These findings clearly indicated that all these compounds are promising as drug candidates for this molecular target. eng
dc.format p. 35228-35244 eng
dc.language.iso eng eng
dc.relation.ispartof RSC ADVANCES, volume 11, issue: 56 eng
dc.subject PERTURBATION-THEORY eng
dc.subject T-705 FAVIPIRAVIR eng
dc.subject MASS-SPECTRA eng
dc.subject SARS-COV-2 eng
dc.subject DRUG eng
dc.subject INHIBITORS eng
dc.subject PROTEASE eng
dc.subject DOCKING eng
dc.subject IMPACT eng
dc.subject ENERGY eng
dc.title Theoretical insights into the effect of halogenated substituent on the electronic structure and spectroscopic properties of the favipiravir tautomeric forms and its implications for the treatment of COVID-19 eng
dc.type article eng
dc.identifier.obd 43878160 eng
dc.identifier.wos 000713408900001 eng
dc.identifier.doi 10.1039/d1ra06309j eng
dc.publicationstatus postprint eng
dc.peerreviewed yes eng
dc.source.url https://pubs.rsc.org/en/content/articlelanding/2021/RA/D1RA06309J cze
dc.relation.publisherversion https://pubs.rsc.org/en/content/articlelanding/2021/RA/D1RA06309J eng
dc.rights.access Open Access eng


Ficheros en el ítem

Este ítem aparece en la(s) siguiente(s) colección(ones)

Mostrar el registro sencillo del ítem

Buscar en DSpace


Listar

Mi cuenta