Enhancement of intracellular gamma-tocopherol levels in cytokine-stimulated C3H 10T1/2 fibroblasts: relation to NO synthesis, isoprostane formation, and tocopherol oxidation.

Yuichiro Tanaka, Leslie A Lesoon Wood, Robert V Cooney
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引用次数: 17

Abstract

Background: Stimulation of C3H 10T1/2 murine fibroblasts with interferon-gamma(IFN) and bacterial lipopolysaccharide (LPS) generates reactive oxygen and nitrogen species leading to DNA damage, lipid oxidation, and tocopherol oxidation. The tocopherols possess unique chemical and biological properties that suggest they have important roles related to intracellular defense against radical-mediated damage.

Results: Despite increased levels of reactive oxidants and decreased media tocopherol, cellular levels of gamma-tocopherol, but not alpha-tocopherol, were observed to increase significantly when cells were treated with IFN/LPS. Inhibition of nitric oxide (NO) synthesis by a specific inhibitor of inducible NO synthase (iNOS) increased both intracellular alpha-tocopherol and gamma-tocopherol concentrations, but did not significantly alter the reduction in media tocopherol levels caused by IFN/LPS treatment. Both exposure to exogenous NO and cellular synthesis of NO in cell culture increased media levels of 8-epi-prostaglandin F2alpha, a marker of oxidative lipid damage, whereas inhibition of endogenous NO synthesis reduced media 8-epi-prostaglandin F2alpha formation to control levels.

Conclusion: Elevated intracellular levels of gamma-tocopherol in response to the cellular inflammatory state may indicate that it serves a unique role in minimizing cellular damage resulting from endogenous NO synthesis. Results of the current study suggest that NO is an important mediator of damage within the cell, as well as in the oxidation of both alpha- and gamma-tocopherols. The paradoxical increase in cellular tocopherol associated with the induction of NO synthesis may indicate either enhanced cellular transport/decreased export for tocopherols or recruitment of free tocopherol from tocopherol storage molecules.

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细胞因子刺激的C3H 10T1/2成纤维细胞内γ -生育酚水平的增强:与NO合成、异前列腺素形成和生育酚氧化的关系
背景:干扰素- γ (IFN)和细菌脂多糖(LPS)刺激C3H 10T1/2小鼠成纤维细胞产生活性氧和活性氮,导致DNA损伤、脂质氧化和生育酚氧化。生育酚具有独特的化学和生物学特性,表明它们在细胞内防御自由基介导的损伤方面具有重要作用。结果:尽管活性氧化剂水平升高,培养基生育酚水平降低,但当细胞被IFN/LPS处理时,细胞中γ -生育酚水平显著升高,而α -生育酚水平没有显著升高。诱导型NO合成酶(iNOS)的特异性抑制剂抑制一氧化氮(NO)合成可增加细胞内α -生育酚和γ -生育酚浓度,但对IFN/LPS处理引起的培养基中生育酚水平的降低没有显著改变。暴露于外源性NO和细胞培养中NO的细胞合成都会增加培养基中8-epi-前列腺素f2α的水平,这是氧化脂质损伤的标志,而抑制内源性NO合成会降低培养基中8-epi-前列腺素f2α的形成至控制水平。结论:细胞内γ -生育酚水平升高对细胞炎症状态的反应可能表明它在减轻内源性NO合成引起的细胞损伤方面起着独特的作用。目前的研究结果表明,NO是细胞内损伤的重要介质,也是α -和γ -生育酚氧化的重要介质。细胞中生育酚的增加与一氧化氮合成的诱导相关,这一矛盾的现象可能表明,生育酚的细胞运输增强/输出减少,或从生育酚储存分子中募集游离生育酚。
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