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60吉赫兹毫米波及其相应热效应对内质网应激传感器基因表达的影响。

Impact of 60-GHz millimeter waves and corresponding heat effect on endoplasmic reticulum stress sensor gene expression.

作者信息

Le Quément Catherine, Nicolaz Christophe Nicolas, Habauzit Denis, Zhadobov Maxim, Sauleau Ronan, Le Dréan Yves

机构信息

Transcription, Environment and Cancer Group, Institute of Research in Environmental and Occupational Health-IRSET, INSERM, University of Rennes 1, Rennes, France.

出版信息

Bioelectromagnetics. 2014 Sep;35(6):444-51. doi: 10.1002/bem.21864. Epub 2014 Aug 6.


DOI:10.1002/bem.21864
PMID:25099539
Abstract

Emerging high data rate wireless communication systems, currently under development, will operate at millimeter waves (MMW) and specifically in the 60 GHz band for broadband short-range communications. The aim of this study was to investigate potential effects of MMW radiation on the cellular endoplasmic reticulum (ER) stress. Human skin cell lines were exposed at 60.4 GHz, with incident power densities (IPD) ranging between 1 and 20 mW/cm(2) . The upper IPD limits correspond to the ICNIRP local exposure limit for the general public. The expression of ER-stress sensors, namely BIP and ORP150, was then examined by real-time RT-PCR. Our experimental data demonstrated that MMW radiations do not change BIP or ORP150 mRNA basal levels, whatever the cell line, the exposure duration or the IPD level. Co-exposure to the well-known ER-stress inducer thapsigargin (TG) and MMW were then assessed. Our results show that MMW exposure at 20 mW/cm(2) inhibits TG-induced BIP and ORP150 over expression. Experimental controls showed that this inhibition is linked to the thermal effect resulting from the MMW exposure.

摘要

目前正在开发的新兴高速率无线通信系统将在毫米波(MMW)频段运行,特别是在60GHz频段用于宽带短程通信。本研究的目的是调查毫米波辐射对细胞内质网(ER)应激的潜在影响。将人类皮肤细胞系暴露于60.4GHz,入射功率密度(IPD)范围为1至20mW/cm²。较高的IPD限值对应于国际非电离辐射防护委员会(ICNIRP)对公众的局部暴露限值。然后通过实时逆转录聚合酶链反应(RT-PCR)检测内质网应激传感器(即BIP和ORP150)的表达。我们的实验数据表明,无论细胞系、暴露持续时间或IPD水平如何,毫米波辐射均不会改变BIP或ORP150的mRNA基础水平。随后评估了与著名的内质网应激诱导剂毒胡萝卜素(TG)共同暴露和毫米波暴露的情况。我们的结果表明,20mW/cm²的毫米波暴露可抑制TG诱导的BIP和ORP150的过表达。实验对照表明,这种抑制与毫米波暴露产生的热效应有关。

相似文献

[1]
Impact of 60-GHz millimeter waves and corresponding heat effect on endoplasmic reticulum stress sensor gene expression.

Bioelectromagnetics. 2014-9

[2]
Absence of direct effect of low-power millimeter-wave radiation at 60.4 GHz on endoplasmic reticulum stress.

Cell Biol Toxicol. 2009-10

[3]
Study of narrow band millimeter-wave potential interactions with endoplasmic reticulum stress sensor genes.

Bioelectromagnetics. 2009-7

[4]
Low-power millimeter wave radiations do not alter stress-sensitive gene expression of chaperone proteins.

Bioelectromagnetics. 2007-4

[5]
Impact of 60-GHz millimeter waves on stress and pain-related protein expression in differentiating neuron-like cells.

Bioelectromagnetics. 2016-10

[6]
Transcriptome analysis reveals the contribution of thermal and the specific effects in cellular response to millimeter wave exposure.

PLoS One. 2014-10-10

[7]
Increased expression of tight junctions in ARPE-19 cells under endoplasmic reticulum stress.

Curr Eye Res. 2011-10-6

[8]
Additive Effects of Millimeter Waves and 2-Deoxyglucose Co-Exposure on the Human Keratinocyte Transcriptome.

PLoS One. 2016-8-16

[9]
IEEE Committee on Man and Radiation-COMAR Technical Information Statement: Health and Safety Issues Concerning Exposure of the General Public to Electromagnetic Energy from 5G Wireless Communications Networks.

Health Phys. 2020-8

[10]
Transcriptional landscape of human keratinocyte models exposed to 60-GHz millimeter-waves.

Toxicol In Vitro. 2024-5

引用本文的文献

[1]
Advances in Millimeter-Wave Treatment and Its Biological Effects Development.

Int J Mol Sci. 2024-8-8

[2]
Millimeter waves alter DNA secondary structures and modulate the transcriptome in human fibroblasts.

Biomed Opt Express. 2022-4-28

[3]
Effects of Electromagnetic Waves with LTE and 5G Bandwidth on the Skin Pigmentation In Vitro.

Int J Mol Sci. 2020-12-26

[4]
Millimeter-wave pulsed heating in vitro: cell mortality and heat shock response.

Sci Rep. 2019-10-24

[5]
5G Wireless Communication and Health Effects-A Pragmatic Review Based on Available Studies Regarding 6 to 100 GHz.

Int J Environ Res Public Health. 2019-9-13

[6]
Untargeted metabolomics unveil alterations of biomembranes permeability in human HaCaT keratinocytes upon 60 GHz millimeter-wave exposure.

Sci Rep. 2019-6-27

[7]
Millimeter Wave Radiation Activates Leech Nociceptors via TRPV1-Like Receptor Sensitization.

Biophys J. 2019-4-25

[8]
Additive Effects of Millimeter Waves and 2-Deoxyglucose Co-Exposure on the Human Keratinocyte Transcriptome.

PLoS One. 2016-8-16

[9]
Effects of Long-Term Exposure to 60 GHz Millimeter-Wavelength Radiation on the Genotoxicity and Heat Shock Protein (Hsp) Expression of Cells Derived from Human Eye.

Int J Environ Res Public Health. 2016-8-8

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