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首页> 外文期刊>Journal of biomedicine & biotechnology >Assessment of Genotoxic and Cytotoxic Hazards in Brain and Bone Marrow Cells of Newborn Rats Exposed to Extremely Low-Frequency Magnetic Field
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Assessment of Genotoxic and Cytotoxic Hazards in Brain and Bone Marrow Cells of Newborn Rats Exposed to Extremely Low-Frequency Magnetic Field

机译:极低频磁场暴露对新生大鼠脑和骨髓细胞遗传毒性和细胞毒性的评估

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摘要

The present study aimed to evaluate the association between whole body exposure to extremely low frequency magnetic field (ELF-MF) and genotoxic, cytotoxic hazards in brain and bone marrow cells of newborn rats. Newborn rats (10 days after delivery) were exposed continuously to 50 Hz, 0.5 mT for 30 days. The control group was treated as the exposed one with the sole difference that the rats were not exposed to magnetic field. Comet assay was used to quantify the level of DNA damage in isolated brain cells. Also bone marrow cells were flushed out to assess micronucleus induction and mitotic index. Spectrophotometric methods were used to measure the level of malondialdehyde (MDA) and the activity of glutathione (GSH) and superoxide dismutase (SOD). The results showed a significant increase in the mean tail moment indicating DNA damage in exposed group (P < 0.01,0.001,0.0001). Moreover ELF-MF exposure induced a significant (P < 0.01,0.001) four folds increase in the induction of micronucleus and about three folds increase in mitotic index (P < 0.0001). Additionally newborn rats exposed to ELF-MF showed significant higher levels of MDA and SOD (P < 0.05). Meanwhile ELF-MF failed to alter the activity of GSH. In conclusion, the present study suggests an association between DNA damage and ELF-MF exposure in newborn rats.
机译:本研究旨在评估全身暴露于极低频磁场(ELF-MF)与新生大鼠脑和骨髓细胞的遗传毒性,细胞毒性危害之间的关系。将新生大鼠(分娩后10天)连续暴露于50Hz,0.5mT下30天。对照组被当作暴露的大鼠,唯一的区别是大鼠没有暴露于磁场。彗星试验用于量化分离的脑细胞中DNA损伤的水平。还冲洗出骨髓细胞以评估微核诱导和有丝分裂指数。使用分光光度法测量丙二醛(MDA)的水平以及谷胱甘肽(GSH)和超氧化物歧化酶(SOD)的活性。结果表明,暴露组的平均尾巴矩显着增加,表明DNA损伤(P <0.01,0.001,0.0001)。此外,ELF-MF暴露引起微核的诱导显着增加(P <0.01,0.001)四倍,有丝分裂指数增加约三倍(P <0.0001)。另外,暴露于ELF-MF的新生大鼠显示出较高的MDA和SOD水平(P <0.05)。同时,ELF-MF未能改变GSH的活性。总之,本研究表明新生大鼠的DNA损伤与ELF-MF暴露之间存在关联。

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