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首页> 外文期刊>Free radical research >Gamma-tocopherol is less effective than alpha-tocopherol in preventing oxidant-induced sister chromatid exchanges in Chinese hamster V79 cells.
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Gamma-tocopherol is less effective than alpha-tocopherol in preventing oxidant-induced sister chromatid exchanges in Chinese hamster V79 cells.

机译:γ-生育酚在预防中国仓鼠V79细胞中氧化剂诱导的姊妹染色单体交换方面不如α-生育酚有效。

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摘要

Although alpha-tocopherol (alpha-TOC) is the most biologically active form of vitamin E and is found at high levels in plasma, gamma-tocopherol (gamma-TOC) has also been found to be a powerful antioxidant in vitro and constitutes up to 70% of the dietary intake of TOC. Low plasma levels of gamma-TOC and a high alpha-TOC:gamma-TOC ratio may be associated with coronary heart disease, suggesting that there may be a positive protective role for the gamma-form of TOC. In this study the ability of different forms of vitamin E to protect against sister chromatid exchanges (SCE) induced by either hydrogen peroxide or menadione was investigated. Chinese hamster V79 cells were pre-treated with 10 microM TOC for 24 h, and then challenged with a genotoxin. After a 24 h pre-treatment, there was a greater incorporation of gamma-TOC (319.8 +/- 66.2 ng/10(6) cells) into V79 cells compared to alpha-TOC (66.9 +/- 6.4 ng/10(6) cells). Gamma-TOC did not protect the cells against SCE induced by either hydrogen peroxide or menadione, alpha-TOC acetate was partially protective against both genotoxins, whereas alpha-TOC completely abolished the oxidant induced SCE. These results demonstrate that, despite a greater incorporation of gamma-TOC into V79 cells, alpha-TOC but not gamma-TOC was more effective at inhibiting oxidatively-induced SCE in V79 cells.
机译:尽管α-生育酚(α-TOC)是维生素E的最具生物活性的形式,并且在血浆中含量很高,但γ-生育酚(gamma-TOC)在体外也被认为是一种强大的抗氧化剂,其含量高达饮食中TOC摄入量的70%。血浆低水平的γ-TOC和高水平的α-TOC:γ-TOC比值可能与冠心病有关,这表明γ形式的TOC可能具有积极的保护作用。在这项研究中,研究了不同形式的维生素E抵抗过氧化氢或甲萘醌诱导的姐妹染色单体交换(SCE)的能力。将中国仓鼠V79细胞用10 microM TOC预处理24 h,然后用基因毒素攻击。预处理24小时后,与alpha-TOC(66.9 +/- 6.4 ng / 10(6)相比,将γ-TOC(319.8 +/- 66.2 ng / 10(6)个细胞)纳入V79细胞的比例更高。 ) 细胞)。 Gamma-TOC不能保护细胞不受过氧化氢或甲萘醌诱导的SCE的侵害,而α-TOC乙酸盐可以部分保护两种基因毒素,而α-TOC则完全消除了氧化剂诱导的SCE。这些结果表明,尽管将γ-TOC更大程度地掺入了V79细胞,但α-TOC而非γ-TOC在抑制V79细胞中的氧化诱导的SCE方面更有效。

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