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50赫兹正弦电场和/或磁场对氧化损伤细胞中DNA单/双链断裂修复速率的影响。

The effect of 50 Hz sinusoidal electric and/or magnetic fields on the rate of repair of DNA single/double strand breaks in oxidatively injured cells.

作者信息

Cantoni O, Sestili P, Fiorani M, Dachà M

机构信息

Centro di Metodologie Biochimiche Applicate, Università degli Studi di Urbino, Italy.

出版信息

Biochem Mol Biol Int. 1995 Nov;37(4):681-9.

PMID:8589641
Abstract

Exposure of cultured mammalian cells to 50 Hz electric (0.2-20 kV/m), magnetic (0.002-2 G), or combined electric and magnetic fields did not affect the rate of repair of DNA single strand breaks (SSB) induced by hydrogen peroxide. The same lack of effect was observed on the repair of both DNA SSBs and DNA double strand breaks (DSBs) in cells treated with the cocktail hydrogen peroxide/L-Histidine. These results indicate that exposure to electric and/or magnetic fields does not affect the machinery involved in the repair of DNA lesions in oxidatively injured cells thus suggesting that it is unlikely that field exposure might induce changes in the response of the cells to the tumor promoting or carcinogenic effects elicited by reactive oxygen species.

摘要

将培养的哺乳动物细胞暴露于50赫兹电场(0.2 - 20千伏/米)、磁场(0.002 - 2高斯)或电场与磁场组合环境中,不会影响过氧化氢诱导的DNA单链断裂(SSB)的修复速率。在用过氧化氢/L-组氨酸混合液处理的细胞中,对于DNA单链断裂和双链断裂(DSB)的修复也观察到同样缺乏影响的情况。这些结果表明,暴露于电场和/或磁场不会影响氧化损伤细胞中参与DNA损伤修复的机制,因此表明电场暴露不太可能诱导细胞对活性氧引发的肿瘤促进或致癌作用的反应发生变化。

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