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亚铁离子和去铁胺产生基于氧的自由基。

Oxygen-based free radical generation by ferrous ions and deferoxamine.

作者信息

Klebanoff S J, Waltersdorph A M, Michel B R, Rosen H

机构信息

Department of Medicine, University of Washington, Seattle 98195.

出版信息

J Biol Chem. 1989 Nov 25;264(33):19765-71.

PMID:2555330
Abstract

Deferoxamine accelerates the autooxidation of iron as measured by the rapid disappearance of Fe2+, the associated appearance of Fe3+, and the uptake of oxygen. Protons are released in the reaction. The formation of H2O2 was detected by the horseradish peroxidase-catalyzed oxidation of scopoletin, and the formation of hydroxyl radicals (OH.) was suggested by the formation of the OH. spin trap adduct (DMPO/OH). with the spin trap 5,5-dimethyl-1-pyrroline N-oxide (DMPO) and the generation of the methyl radical adduct on the further addition of dimethyl sulfoxide. (DMPO/OH). adduct formation was inhibited by catalase but not by superoxide dismutase. The oxidant formed converted iodide to a trichloroacetic acid-precipitable form (iodination) and was bactericidal to logarithmic phase Escherichia coli. Both iodination and bactericidal activity was inhibited by catalase and by OH. scavengers, but not by superoxide dismutase. Iodination was optimal in 5 x 10(-4) M acetate buffer, pH 5.0, and when the Fe2+ and deferoxamine concentrations were equimolar at 10(-4) M. Fe2+ could not be replaced by Fe3+, Co2+, Zn2+, Ca2+, Mg2+, or Mn2+, or deferoxamine by EDTA, diethylenetriaminepentaacetic acid, or bathophenanthroline. These findings indicate that Fe2+ and deferoxamine can act as an oxygen radical generating system, which may contribute to its biological effects in vitro and in vivo.

摘要

去铁胺可加速铁的自氧化,这可通过Fe2+的快速消失、Fe3+的相应出现以及氧的摄取来衡量。反应过程中会释放质子。通过辣根过氧化物酶催化的东莨菪亭氧化检测到H2O2的形成,通过OH·自旋捕获加合物(DMPO/OH·)的形成提示了羟基自由基(OH·)的形成。该自旋捕获剂为5,5-二甲基-1-吡咯啉N-氧化物(DMPO),进一步加入二甲基亚砜后会生成甲基自由基加合物。(DMPO/OH·)加合物的形成受到过氧化氢酶的抑制,但不受超氧化物歧化酶的抑制。所形成的氧化剂可将碘化物转化为三氯乙酸可沉淀形式(碘化),并且对对数生长期的大肠杆菌具有杀菌作用。碘化和杀菌活性均受到过氧化氢酶和OH·清除剂的抑制,但不受超氧化物歧化酶的抑制。碘化在5×10(-4)M乙酸盐缓冲液(pH 5.0)中最佳,且当Fe2+和去铁胺浓度在10(-4)M时等摩尔。Fe2+不能被Fe3+、Co2+、Zn2+、Ca2+、Mg2+或Mn2+替代,去铁胺也不能被乙二胺四乙酸、二乙烯三胺五乙酸或邻二氮菲替代。这些发现表明,Fe2+和去铁胺可作为一个氧自由基生成系统,这可能有助于其在体外和体内的生物学效应。

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