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首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Lead-induced DNA damage in Vicia faba root cells: potential involvement of oxidative stress.
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Lead-induced DNA damage in Vicia faba root cells: potential involvement of oxidative stress.

机译:铅在蚕豆根细胞中引起的DNA损伤:氧化应激的潜在参与。

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摘要

Genotoxic effects of lead (0-20muM) were investigated in whole-plant roots of Vicia faba L., grown hydroponically under controlled conditions. Lead-induced DNA damage in V. faba roots was evaluated by use of the comet assay, which allowed the detection of DNA strand-breakage and with the V. faba micronucleus test, which revealed chromosome aberrations. The results clearly indicate that lead induced DNA fragmentation in a dose-dependant manner with a maximum effect at 10muM. In addition, at this concentration, DNA damage time-dependently increased until 12h. Then, a decrease in DNA damages was recorded. The significant induction of micronucleus formation also reinforced the genotoxic character of this metal. Direct interaction of lead with DNA was also evaluated with the a-cellular comet assay. The data showed that DNA breakages were not associated with a direct effect of lead on DNA. In order to investigate the relationship between lead genotoxicity and oxidative stress, V. faba were exposed to lead in the presence or absence of the antioxidant Vitamin E, or the NADPH-oxidase inhibitor dephenylene iodonium (DPI). The total inhibition of the genotoxic effects of lead (DNA breakage and micronucleus formation) by these compounds reveals the major role of reactive oxygen species (ROS) in the genotoxicity of lead. These results highlight, for the first time in vivo and in whole-plant roots, the relationship between ROS, DNA strand-breaks and chromosome aberrations induced by lead.
机译:研究了在受控条件下水培生长的蚕豆(Vicia faba L.)全株根中铅(0-20μM)的遗传毒性作用。通过彗星试验评估铅在蚕豆根中的DNA损伤,该试验可检测DNA链断裂,并通过蚕豆微核试验检测染色体畸变。结果清楚地表明,铅以剂量依赖性方式诱导DNA片段化,在10μM时发挥最大作用。此外,在此浓度下,DNA损伤的时间依赖性增加直至12h。然后,记录了DNA损伤的减少。微核形成的显着诱导也增强了这种金属的遗传毒性。铅与DNA的直接相互作用也通过a细胞彗星试验进行了评估。数据表明,DNA断裂与铅对DNA的直接作用无关。为了研究铅的遗传毒性与氧化应激之间的关系,在存在或不存在抗氧化剂维生素E或NADPH-氧化酶抑制剂去亚苯基碘鎓(DPI)的情况下,将蚕豆暴露于铅。这些化合物对铅的遗传毒性作用(DNA断裂和微核形成)的总体抑制作用揭示了活性氧(ROS)在铅的遗传毒性中的主要作用。这些结果首次在体内和整个植物的根部突显了铅诱导的ROS,DNA链断裂与染色体畸变之间的关系。

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