Liebler D C
Department of Pharmacology and Toxicology, College of Pharmacy, University of Arizona, Tucson 85721.
Crit Rev Toxicol. 1993;23(2):147-69. doi: 10.3109/10408449309117115.
Vitamin E (alpha-tocopherol), the principal chain-breaking antioxidant in biological membranes, prevents toxicant- and carcinogen-induced oxidative damage by trapping reactive oxyradicals. Although alpha-tocopherol antioxidant reactions appear to be not under direct metabolic control, alpha-tocopherol may function through redox cycles, which deliver reducing equivalents for antioxidant reactions and link antioxidant function to cellular metabolism. This review describes the antioxidant chemistry of alpha-tocopherol and evaluates the experimental evidence for the linkage of alpha-tocopherol turnover to cellular metabolism through redox cycles. Numerous in vitro experiments demonstrate antioxidant synergism between alpha-tocopherol and ascorbate, reduced glutathione, NADPH, and cellular electron transport proteins. Nevertheless, evidence that a one-electron redox cycle regenerates alpha-tocopherol from the tocopheroxyl radical is inconclusive. The difficulty of separating tocopheroxyl recycling from direct antioxidant actions of other antioxidants has complicated interpretation of the available data. A two-electron redox cycle involving alpha-tocopherol oxidation to 8a-substituted tocopherones followed by tocopherone reduction to alpha-tocopherol may occur, but would require enzymatic catalysis in vivo. Metabolism of antioxidant-inactive alpha-tocopheryl esters releases alpha-tocopherol, whereas reductive metabolism of alpha-tocopherylquinone, an alpha-tocopherol oxidation product, yields alpha-tocopherylhydroquinone, which also may provide antioxidant protection.
维生素E(α-生育酚)是生物膜中主要的链断裂抗氧化剂,通过捕获活性氧自由基来防止毒物和致癌物诱导的氧化损伤。尽管α-生育酚的抗氧化反应似乎不受直接的代谢控制,但α-生育酚可能通过氧化还原循环发挥作用,该循环为抗氧化反应提供还原当量,并将抗氧化功能与细胞代谢联系起来。本综述描述了α-生育酚的抗氧化化学,并评估了通过氧化还原循环将α-生育酚周转与细胞代谢联系起来的实验证据。大量体外实验表明,α-生育酚与抗坏血酸、还原型谷胱甘肽、NADPH和细胞电子传递蛋白之间存在抗氧化协同作用。然而,关于单电子氧化还原循环从生育酚氧基自由基再生α-生育酚的证据尚无定论。将生育酚氧基循环与其他抗氧化剂的直接抗氧化作用区分开来的困难使得对现有数据的解释变得复杂。可能存在一个双电子氧化还原循环,涉及α-生育酚氧化为8a-取代生育醌,随后生育醌还原为α-生育酚,但这在体内需要酶催化。抗氧化活性不高的α-生育酚酯的代谢会释放出α-生育酚,而α-生育酚氧化产物α-生育酚醌的还原代谢会产生α-生育酚氢醌,它也可能提供抗氧化保护。