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生育酚和生育三烯酚抗氧化特性中的自由基循环与膜内流动性

Free radical recycling and intramembrane mobility in the antioxidant properties of alpha-tocopherol and alpha-tocotrienol.

作者信息

Serbinova E, Kagan V, Han D, Packer L

机构信息

Department of Molecular and Cell Biology, University of California, Berkeley 94720.

出版信息

Free Radic Biol Med. 1991;10(5):263-75. doi: 10.1016/0891-5849(91)90033-y.

Abstract

d-Alpha-tocopherol (2R,4'R,8'R-Alpha-tocopherol) and d-alpha-tocotrienol are two vitamin E constituents having the same aromatic chromanol "head" but differing in their hydrocarbon "tail": tocopherol with a saturated and toctrienol with an unsaturated isoprenoid chain. d-Alpha-tocopherol has the highest vitamin E activity, while d-alpha-tocotrienol manifests only about 30% of this activity. Since vitamin E is considered to be physiologically the most important lipid-soluble chain-breaking antioxidant of membranes, we studied alpha-tocotrienol as compared to alpha-tocopherol under conditions which are important for their antioxidant function. d-Alpha-tocotrienol possesses 40-60 times higher antioxidant activity against (Fe2+ + ascorbate)- and (Fe2+ + NADPH)-induced lipid peroxidation in rat liver microsomal membranes and 6.5 times better protection of cytochrome P-450 against oxidative damage than d-alpha-tocopherol. To clarify the mechanisms responsible for the much higher antioxidant potency of d-alpha-tocotrienol compared to d-alpha-tocopherol, ESR studies were performed of recycling efficiency of the chromanols from their chromanoxyl radicals. 1H-NMR measurements of lipid molecular mobility in liposomes containing chromanols, and fluorescence measurements which reveal the uniformity of distribution (clusterizations) of chromanols in the lipid bilayer. From the results, we concluded that this higher antioxidant potency of d-alpha-tocotrienol is due to the combined effects of three properties exhibited by d-alpha-tocotrienol as compared to d-alpha-tocopherol: (i) its higher recycling efficiency from chromanoxyl radicals, (ii) its more uniform distribution in membrane bilayer, and (iii) its stronger disordering of membrane lipids which makes interaction of chromanols with lipid radicals more efficient. The data presented show that there is a considerable discrepancy between the relative in vitro antioxidant activity of d-alpha-tocopherol and d-alpha-tocotrienol with the conventional bioassays of their vitamin activity.

摘要

d-α-生育酚(2R,4'R,8'R-α-生育酚)和d-α-生育三烯酚是维生素E的两种成分,它们具有相同的芳香色满“头部”,但烃“尾部”不同:生育酚具有饱和的异戊二烯链,生育三烯酚具有不饱和的异戊二烯链。d-α-生育酚具有最高的维生素E活性,而d-α-生育三烯酚的活性仅约为其30%。由于维生素E在生理上被认为是膜中最重要的脂溶性链断裂抗氧化剂,我们在对其抗氧化功能很重要的条件下,将α-生育三烯酚与α-生育酚进行了比较研究。d-α-生育三烯酚对大鼠肝微粒体膜中(Fe2+ + 抗坏血酸)和(Fe2+ + NADPH)诱导的脂质过氧化具有高40 - 60倍的抗氧化活性,并且对细胞色素P - 450的氧化损伤保护作用比d-α-生育酚好6.5倍。为了阐明与d-α-生育酚相比,d-α-生育三烯酚具有更高抗氧化效力的机制,对色满醇从其色满氧基自由基的循环效率进行了电子自旋共振(ESR)研究。对含有色满醇的脂质体中脂质分子流动性进行了1H - NMR测量,以及对揭示色满醇在脂质双层中分布均匀性(聚集)的荧光测量。从结果中,我们得出结论,d-α-生育三烯酚这种更高的抗氧化效力是由于与d-α-生育酚相比,d-α-生育三烯酚表现出的三种特性的综合作用:(i)其从色满氧基自由基的更高循环效率,(ii)其在膜双层中更均匀的分布,以及(iii)其对膜脂质更强的无序化作用,这使得色满醇与脂质自由基的相互作用更有效。所呈现的数据表明,d-α-生育酚和d-α-生育三烯酚的相对体外抗氧化活性与其维生素活性的传统生物测定之间存在相当大的差异。

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