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Vitamin C in Cultured Human (HeLa) Cells: Lack of Effect on DNA Protection and Repair

机译:培养的人(HeLa)细胞中的维生素C:对DNA保护和修复缺乏影响

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摘要

Aims: Dietary antioxidants, including vitamin C, may be in part responsible for the cancer-preventive effects of fruits and vegetables. Human intervention trials with clinical endpoints have failed to confirm their protective effects, and mechanistic studies have given inconsistent results. Our aim was to investigate antioxidant/ pro-oxidant effects of vitamin C at the cellular level. Experimental approach: We have used the comet assay to investigate effects of vitamin C on DNA damage, antioxidant status, and DNA repair, in HeLa (human tumor) cells, and HPLC to measure uptake of vitamin C into cells. Results: Even at concentrations in the medium as high as 200 μM, vitamin C did not increase the background level of strand breaks or of oxidized purines in nuclear DNA. Vitamin C is taken up by HeLa cells and accumulates to mM levels. Preincubation of cells with vitamin C did not render them resistant to strand breakage induced by H2O2 or to purine oxidation by photosensitizer plus light. Vitamin C had no effect on the rate of repair of strand breaks or oxidized bases by HeLa cells. However, vitamin C at a concentration of less than 1 μM, or extract from cells preincubated for 6 h with vitamin C, was able to induce damage (strand breaks) in lysed, histone-depleted nuclei (nucleoids). Conclusion: In these cultured human cells, vitamin C displays neither antioxidant nor pro-oxidant properties; nor does it affect DNA strand break or base excision repair.
机译:目的:饮食中的抗氧化剂,包括维生素C,可能部分归因于水果和蔬菜的防癌作用。具有临床终点的人体干预试验未能证实其保护作用,而机理研究得出的结果不一致。我们的目的是在细胞水平上研究维生素C的抗氧化剂/促氧化剂作用。实验方法:我们已经使用彗星实验研究了维生素C对HeLa(人类肿瘤)细胞中DNA损伤,抗氧化剂状态和DNA修复的影响,并使用HPLC测定了维生素C进入细胞的吸收。结果:即使在浓度高达200μM的培养基中,维生素C也不会增加核DNA中链断裂或氧化嘌呤的背景水平。维生素C被HeLa细胞吸收并累积至mM水平。细胞与维生素C的预孵育不能使其抵抗由H2O2引起的链断裂或对光敏剂加光引起的嘌呤氧化的抵抗。维生素C对HeLa细胞修复链断裂或氧化碱基的速率没有影响。但是,浓度小于1μM的维生素C或从与维生素C预孵育6小时的细胞中提取的提取物能够诱导裂解的,组蛋白耗尽的核(核苷酸)受损(链断裂)。结论:在这些培养的​​人体细胞中,维生素C既不显示抗氧化特性也不显示促氧化特性。也不会影响DNA链断裂或碱基切除修复。

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