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超氧化物依赖性羟基自由基利用络合铁和过氧化氢引发脂质过氧化。

Lipid peroxidation initiated by superoxide-dependent hydroxyl radicals using complexed iron and hydrogen peroxide.

作者信息

Gutteridge J M

出版信息

FEBS Lett. 1984 Jul 9;172(2):245-9. doi: 10.1016/0014-5793(84)81134-5.

Abstract

Iron salts stimulate lipid peroxidation by decomposing lipid peroxides to produce alkoxyl and peroxyl radicals which initiate further oxidation. In aqueous solution ferrous salts produce OH. radicals, a reactive species able to abstract hydrogen atoms from unsaturated fatty acids, and so can initiate lipid peroxidation. When iron salts are added to lipids, containing variable amounts of lipid peroxide, the former reaction is favoured and OH. radicals contribute little to the observed rate of peroxidation. When iron is complexed with EDTA, however, lipid peroxide decomposition is prevented, but the complex reacts with hydrogen peroxide to form OH. radicals which are seen to initiate lipid peroxidation. Superoxide radicals appear to play an important part in reducing the iron complex.

摘要

铁盐通过分解脂质过氧化物产生烷氧基和过氧自由基来刺激脂质过氧化,这些自由基会引发进一步的氧化反应。在水溶液中,亚铁盐会产生羟基自由基,这是一种能够从不饱和脂肪酸中提取氢原子的活性物质,因此可以引发脂质过氧化。当向含有不同量脂质过氧化物的脂质中添加铁盐时,前一种反应更受青睐,而羟基自由基对观察到的过氧化速率贡献不大。然而,当铁与乙二胺四乙酸(EDTA)络合时,脂质过氧化物的分解会受到抑制,但该络合物会与过氧化氢反应形成羟基自由基,这些自由基会引发脂质过氧化。超氧自由基似乎在还原铁络合物方面起着重要作用。

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