维生素E:其抗氧化作用机制

R. Yamauchi
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引用次数: 74

摘要

综述了维生素E (α-生育酚)在不饱和脂质过氧化过程中的抗氧化活性。α-生育酚的自由基清除反应是通过α-生育酚自由基作为中间体进行的。如果存在合适的自由基,则自由基与α-生育酚自由基偶联可形成非自由基产物。α-生育酚与脂质-过氧自由基的反应产物为8a-(脂质-二氧基)-α-生育酚酮,经水解生成α-生育酚基醌。当氧气供应不足时,α-生育酚可以捕获脂质碳中心自由基,形成6-O-(脂质烷基)-α-生育酚。另一方面,α-生育酚的二聚体和三聚体是由α-生育酚自由基在含有大量α-生育酚的反应混合物中进行双分子自反应形成的。另一种产物形成途径产生异构体环氧-α-生育酚醌及其前体环氧羟基-α-生育酚酮,但该途径的机制尚不清楚。脂质过氧化过程中其他维生素E化合物(γ-和δ-生育酚)的反应产物与α-生育酚的反应产物基本相同。γ-和δ-生育酚的生育酚自由基倾向于相互反应形成二聚体产物,这些二聚体仍然是有效的抗氧化剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Vitamin E: Mechanism of Its Antioxidant Activity
The antioxidant activity of vitamin E (α-tocopherol) during the peroxidation of unsaturated lipids has been reviewed based on its reaction products. Free-radical scavenging reactions of α-tocopherol take place via the α-tocopheroxyl radical as an intermediate. If a suitable free radical is present, a non-radical product can be formed from the coupling of the free radical with the α-tocopheroxyl radical. The reaction products of α-tocopherol with lipid-peroxyl radicals are 8a-(lipid-dioxy)-α-tocopherones which are hydrolyzed to α-tocopherylquinone. If the supply of oxygen is insufficient, α-tocopherol can trap the carbon-centered radicals of lipids to form 6-O-(lipid-alkyl)-α-tocopherols. On the other hand, the dimer and trimer of α-tocopherol is formed by the bimolecular self-reaction of the α-tocopheroxyl radical in a reaction mixture containing a large amount of α-tocopherol. The other product-forming pathway yields isomeric epoxy-α-tocopherylquinones and their precursors, epoxyhydroperoxy-α-tocopherones, but the mechanism of this pathway remains unknown. The reaction products of other vitamin E compounds (γ- and δ-tocopherols) during lipid peroxidation are almost the same as those formed from the α-tocopherol. The tocopheroxyl radicals of γ- and δ-tocopherols prefer to react with each other to form dimeric products that are still effective as antioxidants.
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