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茶儿茶素 - 铜(II)体系产生的羟基自由基的自旋捕集研究

Spin-trapping study on the hydroxyl radical formed from a tea catechin-Cu(II) system.

作者信息

Yoshioka H, Senba Y, Saito K, Kimura T, Hayakawa F

机构信息

Institute for Environmental Sciences, University of Shizuoka, Japan.

出版信息

Biosci Biotechnol Biochem. 2001 Aug;65(8):1697-706. doi: 10.1271/bbb.65.1697.

Abstract

A spin-trapping method was applied to examine the formation of the hydroxyl (OH) radical from a tea catechin-Cu(II) system to elucidate a previous result that some tea catechin-Cu(II) systems induced DNA scission. Three tea catechins, (-)-epigallocatechin (EGC), (-)-epigallocatechin gallate (EGCg) and (-)-epicatechin (EC), were used. The spin-trapping agent, 5,5'-dimethyl-pyrroline-1-oxide (DMPO), was dissolved in a pH 9 phosphate buffer solution, then a catechin and Cu(II) were added in that order, and the ESR spectral change was monitored for one hour. The order of adding the catechin and Cu(II) was then reversed, and the ESR spectral change was again monitored to examine the coordinating activity of each catechin toward the Cu(II) ion and the effect on OH radical generation. The intensity changes of the spin adducts, DMPO-OH, DMPO-CH3 and DMPO-H, were analyzed, the results suggesting that the OH radical generated in the system decomposed DMPO, resulting in the formation of DMPO-CH3 and DMPO-H. The results show that EGC formed a stable complex with Cu(II) and generated the OH radical. EGCg seemed to have this activity, but the OH radical that was generated was scavenged by the gallate group existing in the complex. EC did not show strong coordinating and OH-generating activities. These characteristics of the three catechins are consistent with the results shown for DNA scission.

摘要

采用自旋捕获法研究茶儿茶素 - 铜(II)体系中羟基(OH)自由基的形成,以阐明先前的一个结果,即某些茶儿茶素 - 铜(II)体系会诱导DNA断裂。使用了三种茶儿茶素,(-) - 表没食子儿茶素(EGC)、(-) - 表没食子儿茶素没食子酸酯(EGCg)和(-) - 表儿茶素(EC)。将自旋捕获剂5,5'-二甲基 - 吡咯啉 - 1 - 氧化物(DMPO)溶解在pH 9的磷酸盐缓冲溶液中,然后依次加入儿茶素和铜(II),并监测ESR光谱变化一小时。然后颠倒儿茶素和铜(II)的添加顺序,再次监测ESR光谱变化,以研究每种儿茶素对铜(II)离子的配位活性以及对OH自由基生成的影响。分析了自旋加合物DMPO - OH、DMPO - CH3和DMPO - H的强度变化,结果表明体系中生成的OH自由基分解了DMPO,导致形成DMPO - CH3和DMPO - H。结果表明,EGC与铜(II)形成了稳定的络合物并生成了OH自由基。EGCg似乎具有这种活性,但生成的OH自由基被络合物中存在的没食子酸基团清除。EC没有表现出很强的配位和OH生成活性。这三种儿茶素的这些特性与DNA断裂的结果一致。

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