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预测多酚抗氧化剂如何通过与铁结合来防止DNA损伤。

Predicting how polyphenol antioxidants prevent DNA damage by binding to iron.

作者信息

Perron Nathan R, Hodges James N, Jenkins Michael, Brumaghim Julia L

机构信息

Department of Chemistry, Clemson University, Clemson, South Carolina 29634-0973, USA.

出版信息

Inorg Chem. 2008 Jul 21;47(14):6153-61. doi: 10.1021/ic7022727. Epub 2008 Jun 14.

Abstract

Prevention of oxidative DNA damage due to hydroxyl radical is important for the prevention and treatment of disease. Because of their widely recognized antioxidant ability, 12 polyphenolic compounds were assayed by gel electrophoresis to directly quantify the inhibition of DNA damage by polyphenols with Fe(2+) and H2O2. All of the polyphenol compounds have IC50 values ranging from 1-59 microM and inhibit 100% of DNA damage at 50-500 microM concentrations. Gel electrophoresis results with iron(II)EDTA and UV-vis spectroscopy experiments confirm that binding of the polyphenol to iron is essential for antioxidant activity. Furthermore, antioxidant potency of polyphenol compounds correlates to the pKa of the first phenolic hydrogen, representing the first predictive model of antioxidant potency based on metal-binding. Understanding this iron-coordination mechanism for polyphenol antioxidant activity will aid in the design of more-potent antioxidants to treat and prevent diseases caused by oxidative stress, and help develop structure-activity relationships for these compounds.

摘要

预防由羟基自由基引起的氧化性DNA损伤对于疾病的防治至关重要。鉴于12种多酚化合物具有广泛认可的抗氧化能力,通过凝胶电泳对其进行测定,以直接量化多酚与Fe(2+)和H2O2对DNA损伤的抑制作用。所有多酚化合物的半数抑制浓度(IC50)值在1至59微摩尔之间,在50至500微摩尔浓度下可抑制100%的DNA损伤。用乙二胺四乙酸铁(II)进行的凝胶电泳结果和紫外可见光谱实验证实,多酚与铁的结合对于抗氧化活性至关重要。此外,多酚化合物的抗氧化能力与第一个酚羟基氢的pKa相关,这代表了基于金属结合的抗氧化能力的第一个预测模型。了解多酚抗氧化活性的这种铁配位机制将有助于设计更有效的抗氧化剂来治疗和预防由氧化应激引起的疾病,并有助于建立这些化合物构效关系。

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