氧化低密度脂蛋白和内皮:口服维生素E补充可预防氧化低密度脂蛋白介导的血管损伤。

J Balla, J D Belcher, G Balla, H S Jacob, G M Vercellotti
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引用次数: 0

摘要

维生素E补充剂可能通过抑制LDL氧化成致动脉粥样硬化部分而降低心肌梗死的发生率。我们之前报道过血红蛋白是一种有效的亲脂性铁源,可以快速嵌入低密度脂蛋白,催化其氧化并促进其内皮细胞溶解。口服维生素E对血红素催化的低密度脂蛋白氧化和由此导致的内皮损伤的影响在10名志愿者中进行了研究,他们每天服用800国际单位的维生素E,加或不加维生素C(1000毫克),持续2周。在补充之前、期间和2周后,分离血浆LDL,测定其α -生育酚分子数量、对血红素催化氧化的抗性以及对猪主动脉内皮细胞的损伤能力。与对照组相比,补充维生素E使LDL过氧化滞后期延长了一倍(104 +/- 18 vs. 58 +/- 11分钟;p < 0.001),同时LDL颗粒α -生育酚含量增加(26 +/- 6 vs 11 +/- 2 mol/mol;P < 0.001)。最有趣的是,ldl介导的内皮细胞毒性被阻止(3 +/- 2% vs 42 +/- 12%;P < 0.001)。2周洗脱期后,LDL- α -生育酚含量、LDL氧化滞后时间和氧化LDL介导的细胞溶解均恢复到基线水平。为了确定维生素E和维生素C补充剂是否在这些效果中起协同作用,我们对几名志愿者进行了监测,他们每天单独服用维生素E或单独服用维生素C。单独服用维生素E(剂量低至400国际单位/天)对所有测量结果的影响与服用维生素C时相同。单独服用维生素C对这些测量结果没有显著影响。我们的结论是:膳食中补充维生素E可以保护细胞免受LDL氧化介导的内皮细胞损伤,但这种有益作用在补充停止后迅速消失。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Oxidized low-density lipoproteins and endothelium: oral vitamin E supplementation prevents oxidized low-density lipoprotein-mediated vascular injury.

Vitamin E supplements may decrease the incidence of myocardial infarction by inhibiting LDL oxidation to atherogenic moieties. We previously reported that hemin is a potent and relevant lipophilic source of iron that can rapidly intercalate into LDL, catalyzing its oxidation and promoting its cytolysis of endothelium. The effects of oral vitamin E on heme-catalyzed LDL oxidation and resulting endothelial damage were studied in 10 volunteers who received daily 800 I.U. of vitamin E with or without vitamin C (1000 mg) for 2 weeks. Prior, during, and 2 weeks after supplementation, plasma LDL was isolated and its number of alpha-tocopherol molecules, resistance to heme-catalyzed oxidation, and ability to damage porcine aortic endothelial cells were assayed. Vitamin E supplementation doubled the lag phase of LDL peroxidation as compared to control (104 +/- 18 vs. 58 +/- 11 min; p < 0.001) accompanied by an increase in alpha-tocopherol content of LDL particles (26 +/- 6 vs. 11 +/- 2 mol/mol; p < 0.001). Most intriguingly, LDL-mediated endothelial cell cytotoxicity was prevented (3 +/- 2% vs. 42 +/- 12%; p < 0.001). After a 2-week washout period, LDL alpha-tocopherol content, the lag time of LDL oxidation, and oxidized LDL-mediated cytolysis all returned to baseline levels. To determine whether supplements of vitamin E and vitamin C beneficially synergize in these effects, we monitored several volunteers on daily vitamin E alone or vitamin C alone. Vitamin E alone (at doses as low as 400 I.U./day) affected all measurements in a manner identical to that when it was taken with vitamin C. Vitamin C alone had no significant effect on these measurements. We conclude: dietary vitamin E supplementation provides cytoprotection against LDL oxidation-mediated endothelial cell injury, but this salutary effect is rapidly lost after supplementation is stopped.

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