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铁(III)刺激脂质过氧化的机制。

The mechanism of iron (III) stimulation of lipid peroxidation.

作者信息

Tadolini B, Hakim G

机构信息

Istituto di Chimica Biologica, Università di Sassari, Italy.

出版信息

Free Radic Res. 1996 Sep;25(3):221-7. doi: 10.3109/10715769609149047.

Abstract

A study conducted on Fe2+ autoxidation showed that its rate was extremely slow at acidic pH values and increased by increasing the pH; it was stimulated by Fe3+ addition but the stimulation did not present a maximum at a Fe2+/Fe3+ ratio approaching 1:1. The species generated during Fe(3+)-catalyzed Fe2+ autoxidation was able to oxidize deoxyribose; the increased Fe2+ oxidation observed at higher pHs was paralleled by increased deoxyribose degradation. The species generated during Fe(3+)-catalyzed Fe2+ autoxidation could not initiate lipid peroxidation in phosphatidylcholine liposomes from which lipid hydroperoxides (LOOH) had been removed by treatment with triphenylphosphine. Neither Fe2+ oxidation nor changes in the oxidation index of the liposomes due to lipid peroxidation were observed at pHs where the Fe3+ effect on Fe2+ autoxidation and on deoxyribose degradation was evident. In our experimental system, a Fe2+/Fe3+ ratio ranging from 1:3 to 2:1 was unable to initiate lipid peroxidation in LOOH-free phosphatidylcholine liposomes. By contrast Fe3+ stimulated the peroxidation of liposomes where increasing amounts of cumene hydroperoxide were incorporated. These results argue against the participation of Fe3+ in the initiation of LOOH-independent lipid peroxidation and suggest its possible involvement in LOOH-dependent lipid peroxidation.

摘要

一项关于Fe2+自氧化的研究表明,在酸性pH值下其速率极慢,且随着pH值升高而增加;添加Fe3+可刺激其自氧化,但在Fe2+/Fe3+比例接近1:1时刺激作用并未达到最大值。Fe(3+)催化Fe2+自氧化过程中产生的物质能够氧化脱氧核糖;在较高pH值下观察到的Fe2+氧化增加与脱氧核糖降解增加同时出现。Fe(3+)催化Fe2+自氧化过程中产生的物质不能在已用三苯基膦处理去除脂质氢过氧化物(LOOH)的磷脂酰胆碱脂质体中引发脂质过氧化。在Fe3+对Fe2+自氧化和脱氧核糖降解有明显影响的pH值下,未观察到Fe2+氧化或脂质过氧化导致的脂质体氧化指数变化。在我们的实验系统中,1:3至2:1的Fe2+/Fe3+比例无法在不含LOOH的磷脂酰胆碱脂质体中引发脂质过氧化。相比之下,Fe3+刺激了含有越来越多氢过氧化异丙苯的脂质体的过氧化。这些结果表明Fe3+不参与不依赖LOOH的脂质过氧化的引发,并提示其可能参与依赖LOOH的脂质过氧化。

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