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在混响室中,培养的人角质形成细胞暴露于持续时间短、振幅低、高频(900 MHz)的电磁场时无反应。

Human keratinocytes in culture exhibit no response when exposed to short duration, low amplitude, high frequency (900 MHz) electromagnetic fields in a reverberation chamber.

作者信息

Roux David, Girard Sébastien, Paladian Françoise, Bonnet Pierre, Lalléchère Sébastien, Gendraud Michel, Davies Eric, Vian Alain

机构信息

Clermont Université, Université Blaise Pascal, Clermont-Ferrand, France.

出版信息

Bioelectromagnetics. 2011 May;32(4):302-11. doi: 10.1002/bem.20641. Epub 2010 Dec 22.

Abstract

We exposed normal human epidermal keratinocytes to short duration, high frequency, and low amplitude electromagnetic fields, similar to that used by mobile phone technologies. We paid particular attention to the control of the characteristics of the electromagnetic environment generated within a mode stirred reverberation chamber (statistical homogeneity and isotropy of the field and SAR distribution). Two non-thermal exposure conditions were tested on the epidermal cells: 10-min exposure with a field amplitude of 8 V/m, and 30 min with 41 V/m. Corresponding specific absorption rates ranged from 2.6 to 73 mW/kg (continuous wave, 900 MHz carrier frequency). We collected RNA from cells subjected to these conditions and used it for a large-scale microarray screening of over 47000 human genes. Under these conditions, exposure of keratinocytes to the electromagnetic field had little effect; only 20 genes displayed significant modulation. The expression ratios were very small (close to 1.5-fold change), and none of them were shared by the two tested conditions. Furthermore, those assayed using polymerase chain reaction did not display significant expression modulation (overall mean of the exposed samples: 1.20 ± 0.18). In conclusion, the data presented here show that cultured keratinocytes are not significantly affected by EMF exposure.

摘要

我们将正常人表皮角质形成细胞暴露于类似于手机技术所使用的短持续时间、高频和低振幅电磁场中。我们特别关注了模式搅拌混响室内产生的电磁环境特性的控制(场和比吸收率分布的统计均匀性和各向同性)。在表皮细胞上测试了两种非热暴露条件:场强为8 V/m的10分钟暴露,以及场强为41 V/m的30分钟暴露。相应的比吸收率范围为2.6至73 mW/kg(连续波,900 MHz载波频率)。我们从经受这些条件的细胞中收集RNA,并将其用于对超过47000个人类基因进行大规模微阵列筛选。在这些条件下,角质形成细胞暴露于电磁场几乎没有影响;只有20个基因表现出显著的调节。表达率非常小(接近1.5倍变化),并且两种测试条件下没有一个基因是相同的。此外,使用聚合酶链反应检测的那些基因没有显示出显著的表达调节(暴露样品的总体平均值:1.20±0.18)。总之,此处呈现的数据表明培养的角质形成细胞不受电磁场暴露的显著影响。

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