首页> 外文OA文献 >Inhibition of microsomal oxidation of alcohols and of hydroxyl-radical-scavenging agents by the iron-chelating agent desferrioxamine.
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Inhibition of microsomal oxidation of alcohols and of hydroxyl-radical-scavenging agents by the iron-chelating agent desferrioxamine.

机译:铁螯合剂去铁草胺抑制醇和羟基自由基清除剂的微粒体氧化。

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摘要

Rat liver microsomes (microsomal fractions) catalyse the oxidation of straight-chain aliphatic alcohols and of hydroxyl-radical-scavenging agents during NADPH-dependent electron transfer. The iron-chelating agent desferrioxamine, which blocks the generation of hydroxyl radicals in other systems, was found to inhibit the following microsomal reactions: production of formaldehyde from either dimethyl sulphoxide or 2-methylpropan-2-ol (t-butylalcohol); generation of ethylene from 4-oxothiomethylbutyric acid; release of 14CO2 from [I-14C]benzoate; production of acetaldehyde from ethanol or butanal (butyraldehyde) from butan-1-ol. Desferrioxamine also blocked the increase in the oxidation of all these substrates produced by the addition of iron-EDTA to the microsomes. Desferrioxamine had no effect on a typical mixed-function-oxidase activity, the N-demethylation of aminopyrine, nor on the peroxidatic activity of catalase/H2O2 with ethanol. H2O2 appears to be the precursor of the oxidizing radical responsible for the oxidation of the alcohols and the other hydroxyl-radical scavengers. Chelation of microsomal iron by desferrioxamine most likely decreases the generation of hydroxyl radicals, which results in an inhibition of the oxidation of the alcohols and the hydroxyl-radical scavengers. Whereas desferrioxamine inhibited the oxidation of 2-methylpropan-2-ol, dimethyl sulphoxide, 4-oxothiomethylbutyrate and benzoate by more than 90%, the oxidation of ethanol and butanol could not be decreased by more than 45-60%. Higher concentrations of desferrioxamine were required to block the metabolism of the primary alcohols than to inhibit the metabolism of the other substrates. The desferrioxamine-insensitive rate of oxidation of ethanol was not inhibited by competitive hydroxyl-radical scavengers. These results suggest that primary alcohols may be oxidized by two pathways in microsomes, one dependent on the interaction of the alcohols with hydroxyl radicals (desferrioxamine-sensitive), the other which appears to be independent of these radicals (desferrioxamine-insensitive).
机译:大鼠肝脏微粒体(微粒体级分)在依赖NADPH的电子转移过程中催化直链脂族醇和羟基自由基清除剂的氧化。发现铁螯合剂去铁胺可阻止其他系统中羟基的产生,它抑制了以下微粒体反应:由二甲基亚砜或2-甲基丙-2-醇(叔丁基醇)产生甲醛;由4-氧代硫代甲基丁酸生成乙烯;从[I-14C]苯甲酸酯释放14CO2;由乙醇生产乙醛,或由丁-1-醇生产丁醛(丁醛)。去铁胺也阻止了通过向微粒体中加入铁-EDTA而产生的所有这些底物的氧化增加。去铁胺对典型的混合功能氧化酶活性,氨基比林的N-去甲基化没有影响,也对过氧化氢酶/过氧化氢用乙醇的过氧化活性没有影响。 H2O2似乎是负责自由基氧化的醇和其他羟基自由基清除剂的氧化自由基的前体。去铁草胺螯合微粒体铁很可能会减少羟基自由基的产生,从而导致抑制醇类和羟基自由基清除剂的氧化。去铁胺抑制2-甲基丙烷-2-醇,二甲基亚砜,4-氧代硫代甲基丁酸酯和苯甲酸酯的氧化超过90%,而乙醇和丁醇的氧化不能降低超过45-60%。与抑制其他底物的代谢相比,需要更高浓度的去铁草胺来阻断伯醇的代谢。竞争性羟基自由基清除剂不抑制乙醇对去铁氧胺的不敏感速率。这些结果表明,伯醇在微粒体中可能通过两种途径被氧化,一种途径依赖于醇与羟基自由基的相互作用(去铁氧胺敏感),另一种似乎与这些自由基无关(去铁氧胺不敏感)。

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  • 作者

    Cederbaum, A I; Dicker, E;

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  • 年度 1983
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  • 原文格式 PDF
  • 正文语种 en
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