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暴露于 2.45GHz 电磁场会在大鼠海马体中引起与 HSP 相关的应激反应。

Exposure to 2.45 GHz electromagnetic fields elicits an HSP-related stress response in rat hippocampus.

机构信息

Key Laboratory of Medical Protection for Electromagnetic Radiation, Ministry of Education, Third Military Medical University, Chongqing, PR China.

出版信息

Brain Res Bull. 2012 Jul 1;88(4):371-8. doi: 10.1016/j.brainresbull.2012.04.002. Epub 2012 Apr 9.


DOI:10.1016/j.brainresbull.2012.04.002
PMID:22513040
Abstract

The issue of possible neurobiological effects of the electromagnetic field (EMF) exposure is highly controversial. To determine whether electromagnetic field exposure could act as an environmental stimulus capable of producing stress responses, we employed the hippocampus, a sensitive target of electromagnetic radiation, to assess the changes in its stress-related gene and protein expression after EMF exposure. Adult male Sprague-Dawley rats with body restrained were exposed to a 2.45 GHz EMF at a specific absorption rate (SAR) of 6 W/kg or sham conditions. cDNA microarray was performed to examine the changes of gene expression involved in the biological effects of electromagnetic radiation. Of 2048 candidate genes, 23 upregulated and 18 downregulated genes were identified. Of these differential expression genes, two heat shock proteins (HSP), HSP27 and HSP70, are notable because expression levels of both proteins are increased in the rat hippocampus. Result from immunocytochemistry revealed that EMF caused intensive staining for HSP27 and HSP70 in the hippocampus, especially in the pyramidal neurons of cornu ammonis 3 (CA3) and granular cells of dentate gyrus (DG). The gene and protein expression profiles of HSP27 and HSP70 were further confirmed by reverse transcription polymerase chain reaction (RT-PCR) and Western blot. Our data provide direct evidence that exposure to electromagnetic fields elicits a stress response in the rat hippocampus.

摘要

电磁场(EMF)暴露可能产生神经生物学效应这一问题极具争议性。为了确定电磁场暴露是否可作为一种环境刺激源,引发应激反应,我们选择了海马体作为研究对象,这是电磁辐射的一个敏感靶点,以评估 EMF 暴露后其与应激相关的基因和蛋白表达的变化。将束缚身体的成年雄性 Sprague-Dawley 大鼠置于 2.45GHz 的电磁场中,SAR 为 6W/kg 或设置假暴露条件。通过 cDNA 微阵列分析,检测与电磁辐射生物学效应相关的基因表达变化。在 2048 个候选基因中,有 23 个基因上调,18 个基因下调。在这些差异表达基因中,有两种热休克蛋白(HSP),即 HSP27 和 HSP70,值得注意,因为这两种蛋白在大鼠海马体中的表达水平均增加。免疫细胞化学结果显示,EMF 导致海马体中 HSP27 和 HSP70 的免疫反应强烈,尤其是在 CA3 区的锥体神经元和 DG 区的颗粒细胞中。HSP27 和 HSP70 的基因和蛋白表达谱通过逆转录聚合酶链反应(RT-PCR)和 Western blot 进一步得到证实。我们的数据提供了直接证据,表明暴露于电磁场会在大鼠海马体中引发应激反应。

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Exposure to 2.45 GHz electromagnetic fields elicits an HSP-related stress response in rat hippocampus.

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[2]
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[3]
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J Ophthalmic Vis Res. 2021-4-29

[4]
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Cell Stress Chaperones. 2021-1

[5]
Behavioral changes and gene profile alterations after chronic 1,950-MHz radiofrequency exposure: An observation in C57BL/6 mice.

Brain Behav. 2020-11

[6]
Global gene expression analysis of Escherichia coli K-12 DH5α after exposure to 2.4 GHz wireless fidelity radiation.

Sci Rep. 2019-10-8

[7]
Impact of Long-Term RF-EMF on Oxidative Stress and Neuroinflammation in Aging Brains of C57BL/6 Mice.

Int J Mol Sci. 2018-7-19

[8]
Applying Broadband Dielectric Spectroscopy (BDS) for the Biophysical Characterization of Mammalian Tissues under a Variety of Cellular Stresses.

Int J Mol Sci. 2017-4-15

[9]
Circadian Rhythm Influences the Promoting Role of Pulsed Electromagnetic Fields on Sciatic Nerve Regeneration in Rats.

Front Neurol. 2017-3-15

[10]
Evidence of cellular stress and caspase-3 resulting from a combined two-frequency signal in the cerebrum and cerebellum of sprague-dawley rats.

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