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Genotoxicity testing of two lead-compounds in somatic cells of Drosophila melanogaster

机译:果蝇体细胞中两种铅化合物的遗传毒性测试

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摘要

The in vivo genotoxic activity of two inorganic lead compounds was studied in Drosophila melanogaster by measurement of two different genetic endpoints. We used the wing-spot test and the comet assay. The comet assay was conducted with larval haemocytes. The results from the wing-spot test showed that neither lead chloride, PbCl2, nor lead nitrate, Pb(NO3)2, were able to induce significant increases in the frequency of mutant spots. In addition, the combined treatments with gamma-radiation and PbCl2 or Pb(NO3)2 did not show significant variations in the frequency of the three categories of mutant spots recorded, compared with the frequency induced by gamma-radiation alone. This seems to indicate that the lead compounds tested do not interact with the repair of the genetic damage induced by ionizing radiation. When the lead compounds were evaluated in the in vivo comet assay with haemocytes, Pb(NO3)2 was effective in inducing significant increases of DNA damage with a direct dose-response pattern. These results confirm the usefulness of the comet assay with haemocytes as an in vivo model and support the assumption that there is a genotoxic risk associated with lead exposure. © 2011 Elsevier B.V
机译:通过测量两个不同的遗传终点,在果蝇中研究了两种无机铅化合物的体内遗传毒性活性。我们使用了翼点试验和彗星试验。幼虫血细胞进行了彗星试验。机翼斑点试验的结果表明,氯化铅PbCl2和硝酸铅Pb(NO3)2均不能引起突变点频率的显着增加。此外,与仅由伽马射线辐射诱导的频率相比,与伽马射线辐射和PbCl2或Pb(NO3)2的联合处理并未显示记录的三类突变点的频率有显着变化。这似乎表明所测试的先导化合物不与电离辐射诱导的遗传损伤的修复相互作用。当在血红细胞的体内彗星试验中评估先导化合物时,Pb(NO3)2可有效诱导DNA损伤,并具有直接剂量反应模式。这些结果证实了用血细胞作为体内模型进行彗星试验​​的有用性,并支持了铅暴露有遗传毒性风险的假设。 ©2011 Elsevier B.V

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