کد مقاله | کد نشریه | سال انتشار | مقاله انگلیسی | نسخه تمام متن |
---|---|---|---|---|
5372963 | 1504193 | 2016 | 7 صفحه PDF | دانلود رایگان |

• Ab initio molecular dynamics is performed to describe the reaction of quercetin and superoxide.
• The reaction occurs near the sites 4′ and 7 when the system contains sufficiently water molecules.
• The difference of reactivity of superoxide compared to commonly used radicals as DPPH or ABTS+ is explained.
Superoxide plays an important role in biology but in unregulated concentrations it is implicated in a lot of diseases such as cancer or atherosclerosis. Antioxidants like flavonoids are abundant in plant and are good scavengers of superoxide radical. The modeling of superoxide scavenging by flavonoids from the diet still remains a challenge. In this study, ab initio molecular dynamics of the reaction of the flavonoid quercetin toward superoxide radical has been carried out using Car–Parrinello density functional theory. The study has proven different reactant solvation by modifying the number of water molecules surrounding superoxide. The reaction consists in the gift of a hydrogen atom of one of the hydroxyl groups of quercetin to the radical. When it occurs, it is relatively fast, lower than 100 fs. Calculations show that it depends largely on the environment of the hydroxyl group giving its hydrogen atom, the geometry of the first water layer and the presence of a certain number of water molecules in the second layer, indicating a great influence of the solvent on the reactivity.
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Journal: Chemical Physics - Volume 475, 22 August 2016, Pages 32–38