IMIBIO-SL   20937
INSTITUTO MULTIDISCIPLINARIO DE INVESTIGACIONES BIOLOGICAS DE SAN LUIS
Unidad Ejecutora - UE
artículos
Título:
Computational study of the hydrogen peroxide scavenging mechanism of allyl methyl disulfide, an antioxidant compound from garlic
Autor/es:
DÍAZ, MARIO G.; ANDRADA, MATIAS F.; VEGA-HISSI, ESTEBAN G.; GARRO MARTINEZ, JUAN C.; DÍAZ, MARIO G.; ANDRADA, MATIAS F.; VEGA-HISSI, ESTEBAN G.; GARRO MARTINEZ, JUAN C.
Revista:
MOLECULAR DIVERSITY
Editorial:
SPRINGER
Referencias:
Año: 2019 vol. 23 p. 985 - 995
ISSN:
1381-1991
Resumen:
Abstract: Although many sulfur containing garlic compounds present antioxidant activity, little is known about molecular mechanisms through which these compounds react with reactive oxygen species. In this work, the reactivity and the hydrogen peroxide scavenger reaction mechanisms (including thermodynamics and kinetics aspects) of allyl methyl disulfide in aqueous phase are studied employing density functional theory computational methods. Three reactive sites susceptible for electrophilic attack are found over sulfur atoms and the double bond allyl moiety. For each detected site, one redox reaction is proposed and analyzed. All reactions are thermodynamically feasible, whereas attack over the methyl bound sulfur atom is kinetically favored. Graphical abstract: [Figure not available: see fulltext.].