首页> 外文期刊>Mutation Research: International Journal on Mutagenesis, Chromosome Breakage and Related Subjects >Individual responsiveness to induction of micronuclei in human lymphocytes after exposure in vitro to 1800-MHz microwave radiation.
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Individual responsiveness to induction of micronuclei in human lymphocytes after exposure in vitro to 1800-MHz microwave radiation.

机译:体外暴露于1800-MHz微波辐射后,个体对人类淋巴细胞中微核诱导的反应。

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The widespread application of microwaves is of great concern in view of possible consequences for human health. Many in vitro studies have been carried out to detect possible effects on DNA and chromatin structure following exposure to microwave radiation. The aim of this study is to assess the capability of microwaves, at different power densities and exposure times, to induce genotoxic effects as evaluated by the in vitro micronucleus (MN) assay on peripheral blood lymphocytes from nine different healthy donors, and to investigate also the possible inter-individual response variability. Whole blood samples were exposed for 60, 120 and 180 min to continuous microwave radiation with a frequency of 1800 MHz and power densities of 5, 10 and 20 mW/cm(2). Reproducibility was tested by repeating the experiment 3 months later. Multivariate analysis showed that lymphocyte proliferation indices were significantly different among donors (p<0.004) and between experiments (p<0.01), whereas the applied power density and the exposure time did not have any effect on them. Both spontaneous and induced MN frequencies varied in a highly significant way among donors (p<0.009) and between experiments (p<0.002), and a statistically significant increase of MN, although rather low, was observed dependent on exposure time (p=0.0004) and applied power density (p=0.0166). A considerable decrease in spontaneous and induced MN frequencies was measured in the second experiment. The results show that microwaves are able to induce MN in short-time exposures to medium power density fields. Our data analysis highlights a wide inter-individual variability in the response, which was confirmed to be a characteristic reproducible trait by means of the second experiment.
机译:考虑到对人体健康的可能后果,微波的广泛应用引起了极大的关注。已经进行了许多体外研究,以检测暴露于微波辐射后对DNA和染色质结构的可能影响。这项研究的目的是评估微波在不同功率密度和暴露时间下诱导遗传毒性作用的能力,如通过体外微核(MN)分析对来自9个不同健康供体的外周血淋巴细胞的评估所评估的,个体间可能存在的反应变异性。全血样本暴露于频率为1800 MHz,功率密度分别为5、10和20 mW / cm(2)的连续微波辐射下60、120和180分钟。通过在3个月后重复实验来测试可重复性。多变量分析表明,供体之间(p <0.004)和实验之间(p <0.01)的淋巴细胞增殖指数显着不同,而施加的功率密度和暴露时间对其没有任何影响。自发性和诱发性MN频率在供体之间(p <0.009)和实验之间(p <0.002)均以非常显着的方式变化,并且观察到MN的统计学显着增加(尽管相当低),取决于暴露时间(p = 0.0004) )和施加的功率密度(p = 0.0166)。在第二个实验中,自发性和诱发性MN频率显着下降。结果表明,微波能够在短时暴露于中等功率密度场中诱导MN。我们的数据分析强调了个体之间的广泛差异,通过第二个实验已证实其是可再现的特征。

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