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Global Analysis of Transcriptional Expression in Mice Exposed to Intermediate Frequency Magnetic Fields Utilized for Wireless Power Transfer Systems

机译:暴露于中频磁场的小鼠的转录表达的整体分析用于无线电力传输系统

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摘要

Background: Intermediate frequency magnetic fields (IF-MFs) at around 85 kHz are a component of wireless power transfer systems used for charging electrical vehicles. However, limited data exist on the potential health effects of IF-MFs. We performed a comprehensive analysis of transcriptional expression in mice after IF-MF exposure. Materials and Methods: We developed an IF-MF exposure system to generate a high magnetic flux density (25.3 mT). The system can expose the IF-MF for a mouse whole-body without considering thermal effects. After 10 days (1 h/day) of exposure, a comprehensive expression analysis was performed using microarray data from both the brain and liver. Results: No significant differences in transcriptional expression were detected in the 35,240 probe-sets when controlling the false discovery rate (FDR) under a fold change cutoff >1.5. However, several differential expressions were detected without FDR-adjustment, but these were not confirmed by RT-PCR analysis. Conclusions: To our knowledge, this is the first in vivo study to evaluate the biological effects of IF-MF exposure with an intense magnetic flux density 253 times higher than the occupational restriction level defined by the International Commission on Non-Ionizing Radiation Protection guidelines. However, our findings indicate that transcriptional responses in the living body are not affected under these conditions.
机译:背景:大约85 kHz的中频磁场(IF-MF)是用于为电动汽车充电的无线电力传输系统的组成部分。但是,关于IF-MF的潜在健康影响的数据有限。在IF-MF暴露后,我们对小鼠的转录表达进行了全面分析。材料和方法:我们开发了IF-MF曝光系统以产生高磁通密度(25.3 mT)。该系统可以在不考虑热效应的情况下为小鼠全身暴露IF-MF。暴露10天(1小时/天)后,使用来自大脑和肝脏的微阵列数据进行了全面的表达分析。结果:在倍数变化截止值> 1.5下控制错误发现率(FDR)时,在35,240个探针组中未检测到转录表达的显着差异。但是,在不进行FDR调整的情况下,检测到了几种差异表达,但RT-PCR分析并未确认这些差异表达。结论:据我们所知,这是第一项评估IF-MF暴露的生物学效应的体内研究,其强磁通密度比国际非电离辐射防护委员会规定的职业限制水平高253倍。但是,我们的发现表明,在这些条件下,活体中的转录反应不会受到影响。

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