DFT Study of the Direct Radical Scavenging Potency of Two Natural Catecholic Compounds

被引:9
|
作者
Amic, Ana [1 ]
Cagardova, Denisa Mastil'ak [2 ]
机构
[1] Josip Juraj Strossmayer Univ Osijek, Dept Chem, Ulica Cara Hadrijana 8A, Osijek 31000, Croatia
[2] Slovak Univ Technol Bratislava, Inst Phys Chem & Chem Phys, Dept Chem Phys, Radlinskeho 9, SK-81237 Bratislava, Slovakia
关键词
quercetin; rooperol; peroxyl radicals; density functional theory; kinetics; tunnelling; HYDROGEN-ATOM TRANSFER; ANTIOXIDANT ACTIVITY; DENSITY FUNCTIONALS; ELECTRON-TRANSFER; OXIDATIVE STRESS; MECHANISM; KINETICS; CHEMISTRY; THERMOCHEMISTRY; ISOMERIZATION;
D O I
10.3390/ijms232214497
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
To ascertain quercetin's and rooperol's potency of H-atom donation to CH3OO center dot and HOO center dot, thermodynamics, kinetics and tunnelling, three forms of chemical reaction control, were theoretically examined. In lipid media, H-atom donation from quercetin's catecholic OH groups via the proton-coupled electron transfer (PCET) mechanism, is more relevant than from C-ring enolic moiety. Amongst rooperol's two catecholic moieties, H-atom donation from A-ring OH groups is favored. Allylic hydrogens of rooperol are poorly abstractable via the hydrogen atom transfer (HAT) mechanism. Kinetic analysis including tunnelling enables a more reliable prediction of the H-atom donation potency of quercetin and rooperol, avoiding the pitfalls of a solely thermodynamic approach. Obtained results contradict the increasing number of misleading statements about the high impact of C-H bond breaking on polyphenols' antioxidant potency. In an aqueous environment at pH = 7.4, the 3-O- phenoxide anion of quercetin and rooperol's 4 '-O- phenoxide anion are preferred sites for CH3OO center dot and HOO center dot inactivation via the single electron transfer (SET) mechanism.
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页数:15
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