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J Inorg Biochem ; 105(10): 1314-22, 2011 Oct.
Article in English | MEDLINE | ID: mdl-21864809

ABSTRACT

The iron binding properties and antioxidant activities of compounds with hydroxy-keto binding sites, 3-hydroxychromone, 5-hydroxychromone, and sulfonated morin were investigated. For these compounds, prevention of iron-mediated DNA damage and kinetics of Fe(II) oxidation were studied in aqueous solutions close to physiological pH (pH 6). 3-Hydroxychromone and sulfonated morin inhibit iron-mediated DNA damage at lower concentrations than 5-hydroxychromone. All three compounds bind iron, but 3-hydroxychromone and sulfonated morin promote Fe(II) oxidation much faster than 5-hydroxychromone. These results indicate that DNA damage inhibition by flavonols with competing hydroxy-keto binding sites is primarily due to iron binding at the 3-hydroxy-keto site. Iron oxidation rate also plays a significant role in antioxidant activity. In addition to iron binding and oxidation, reactive oxygen species scavenging occurs at high concentrations for the hydroxychromones. This study emphasizes the importance of iron binding in polyphenol antioxidant behavior and provides insights into the iron binding antioxidant activity of similar flavonols such as quercetin and myricetin.


Subject(s)
Antioxidants/metabolism , Chromones/chemistry , Flavonoids/metabolism , Flavonols/metabolism , Iron/metabolism , Metals/metabolism , Antioxidants/chemistry , Binding Sites , Chromones/metabolism , DNA Damage , Flavonoids/chemistry , Flavonols/chemistry
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