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α-生育酚对自由基诱导的血浆脂蛋白脂质过氧化起始的需求、促进或抑制作用。

Requirement for, promotion, or inhibition by alpha-tocopherol of radical-induced initiation of plasma lipoprotein lipid peroxidation.

作者信息

Neuzil J, Thomas S R, Stocker R

机构信息

Biochemistry Group, Heart Research Institute, Sydney, NSW, Australia.

出版信息

Free Radic Biol Med. 1997;22(1-2):57-71. doi: 10.1016/s0891-5849(96)00224-9.

Abstract

alpha-Tocopherol (alpha-TOH), generally regarded as the most important lipid-soluble, chain-breaking antioxidant in human plasma, can also be a pro-oxidant in isolated low-density lipoprotein (LDL) (Bowry V. W.; Stocker R. J. Am. Chem. Soc. 115:6029-6044; 1993). Here we examined whether this pro-oxidant activity of alpha-TOH is of more general relevance. We compared the oxidizability of lipid hydroperoxide-free, in vivo or in vitro alpha-TOH-depleted LDL and high-density lipoprotein (HDL), as well as plasma reconstituted with alpha-TOH-depleted lipoproteins, with that of the corresponding native and alpha-TOH-supplemented samples, using water- and lipid-soluble peroxyl radicals (ROO.), hydroxyl radicals (.OH), Cu2+, the transition metal-containing Ham's F-10 medium, soybean 15-lipoxygenase, and horseradish peroxidase as oxidants. Lipoprotein and plasma oxidizability was assessed by the loss of cholesteryl esters and alpha-TOH and the accumulation of hydroperoxides of cholesteryl esters and phospholipids. Compared to native LDL, HDL, and plasma, the in vivo and in vitro alpha-TOH-depleted counterparts were highly resistant to peroxidation initiation by all oxidants when used at mild radical flux conditions. Wherever tested, the oxidizability of isolated LDL decreased proportionally with decreasing alpha-TOH content. Initiation of LDL lipid oxidation by lipoxygenase and Cu2+ (even up to Cu2+:LDL ratio of 20:1) had an absolute requirement for alpha-TOH. Oxidation of reconstituted plasma with ROO. showed that in the absence of the vitamin, plasma lipids were largely resistant to oxidation, whereas bilirubin and urate oxidized more rapidly. Replenishing the in vitro depleted LDL with alpha-TOH, but not with alpha-tocopherol acetate, fully restored its original content of vitamin E and its oxidizability. Similarly, dietary supplementation with alpha-TOH restored the vitamin content and oxidizability of the in vivo alpha-TOH-depleted lipoproteins and plasma obtained from a patient with familial isolated vitamin E deficiency. Under high fluxes of ROO. and .OH, the activity of alpha-TOH in LDL switched from pro- to anti-oxidant, with the switching point for .OH observed at a lower radical flux than that for ROO.. Together, our results show that alpha-TOH generally makes lipoproteins more reactive towards radical oxidants; this can result in a pro-oxidant activity depending on the specific oxidation conditions.

摘要

α-生育酚(α-TOH)通常被认为是人体血浆中最重要的脂溶性链断裂抗氧化剂,但在分离的低密度脂蛋白(LDL)中它也可能是一种促氧化剂(鲍里V.W.;斯托克R.《美国化学会志》115:6029 - 6044;1993)。在此,我们研究了α-TOH的这种促氧化活性是否具有更广泛的相关性。我们使用水溶性和脂溶性过氧自由基(ROO·)、羟基自由基(·OH)、Cu²⁺、含过渡金属的哈姆F - 10培养基、大豆15 - 脂氧合酶和辣根过氧化物酶作为氧化剂,比较了无脂质过氧化氢的体内或体外α-TOH缺乏的LDL和高密度脂蛋白(HDL)以及用α-TOH缺乏的脂蛋白重构的血浆与相应的天然和α-TOH补充样本的氧化能力。通过胆固醇酯和α-TOH的损失以及胆固醇酯和磷脂过氧化氢的积累来评估脂蛋白和血浆的氧化能力。与天然LDL、HDL和血浆相比,在温和的自由基通量条件下使用时,体内和体外α-TOH缺乏的对应物对所有氧化剂引发的过氧化具有高度抗性。无论在何处测试,分离的LDL的氧化能力随α-TOH含量的降低成比例下降。脂氧合酶和Cu²⁺引发LDL脂质氧化(即使高达Cu²⁺:LDL比例为20:1)对α-TOH有绝对需求。用ROO·重构血浆的氧化表明,在缺乏该维生素的情况下,血浆脂质对氧化基本具有抗性,而胆红素和尿酸盐氧化得更快。用α-TOH而非醋酸α-生育酚补充体外缺乏α-TOH的LDL,可完全恢复其维生素E的原始含量及其氧化能力。同样,饮食中补充α-TOH可恢复从家族性单纯维生素E缺乏患者获得的体内α-TOH缺乏的脂蛋白和血浆的维生素含量和氧化能力。在高ROO·和·OH通量下,LDL中α-TOH的活性从促氧化剂转变为抗氧化剂,观察到·OH的转变点的自由基通量低于ROO·。总之,我们的结果表明,α-TOH通常使脂蛋白对自由基氧化剂更具反应性;这可能导致取决于特定氧化条件的促氧化活性。

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