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长期暴露于极低频磁场会诱发小鼠出现抑郁样行为和皮质酮分泌,且不会增强其下丘脑-垂体-肾上腺轴的功能。

Chronic exposure to an extremely low-frequency magnetic field induces depression-like behavior and corticosterone secretion without enhancement of the hypothalamic-pituitary-adrenal axis in mice.

作者信息

Kitaoka Kazuyoshi, Kitamura Mitsuo, Aoi Shun, Shimizu Noriyuki, Yoshizaki Kazuo

机构信息

Department of Physiology, Institute of Health Biosciences, University of Tokushima Graduate School, Tokushima, Japan.

出版信息

Bioelectromagnetics. 2013 Jan;34(1):43-51. doi: 10.1002/bem.21743. Epub 2012 Jul 2.


DOI:10.1002/bem.21743
PMID:22753092
Abstract

An extremely low-frequency magnetic field (ELF-MF) is generated by power lines and household electrical devices. Many studies have suggested an association between chronic ELF-MF exposure and anxiety and/or depression. The mechanism of these effects is assumed to be a stress response induced by ELF-MF exposure. However, this mechanism remains controversial. In the present study, we investigated whether chronic ELF-MF exposure (intensity, 1.5 mT; [corrected] total exposure, 200 h) affected emotional behavior and corticosterone synthesis in mice. ELF-MF-treated mice showed a significant increase in total immobility time in a forced swim test and showed latency to enter the light box in a light-dark transition test, compared with sham-treated (control) mice. Corticosterone secretion was significantly high in the ELF-MF-exposed mice; however, no changes were observed in the amount of the adrenocorticotropic hormone and the expression of genes related to stress response. Quantification of the mRNA levels of adrenal corticosteroid synthesis enzymes revealed a significant reduction in Cyp17a1 mRNA in the ELF-MF-exposed mice. Our findings suggest the possibility that high intensity and chronic exposure to ELF-MF induces an increase in corticosterone secretion, along with depression- and/or anxiety-like behavior, without enhancement of the hypothalamic-pituitary-adrenal axis.

摘要

极低频磁场(ELF-MF)由输电线和家用电气设备产生。许多研究表明,长期暴露于ELF-MF与焦虑和/或抑郁之间存在关联。这些影响的机制被认为是ELF-MF暴露诱导的应激反应。然而,这一机制仍存在争议。在本研究中,我们调查了长期暴露于ELF-MF(强度为1.5 mT;[校正后]总暴露时间为200小时)是否会影响小鼠的情绪行为和皮质酮合成。与假处理(对照)小鼠相比,ELF-MF处理的小鼠在强迫游泳试验中的总不动时间显著增加,并且在明暗转换试验中进入亮箱的潜伏期延长。ELF-MF暴露小鼠的皮质酮分泌显著升高;然而,促肾上腺皮质激素的量和与应激反应相关的基因表达未观察到变化。肾上腺皮质类固醇合成酶mRNA水平的定量分析显示,ELF-MF暴露小鼠的Cyp17a1 mRNA显著降低。我们的研究结果表明,高强度和长期暴露于ELF-MF可能会导致皮质酮分泌增加,同时伴有抑郁和/或焦虑样行为,而不会增强下丘脑-垂体-肾上腺轴。

相似文献

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Chronic exposure to an extremely low-frequency magnetic field induces depression-like behavior and corticosterone secretion without enhancement of the hypothalamic-pituitary-adrenal axis in mice.

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引用本文的文献

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BMC Public Health. 2024-11-8

[2]
Effect of Short-time Exposure of Local Extremely Low-Frequency Magnetic Fields on Sleepiness in Male Rats.

Basic Clin Neurosci. 2022

[3]
New View on the Impact of the Low-Frequency Electromagnetic Field (50 Hz) on Stress Responses: Hormesis Effect.

Neuroendocrinology. 2023

[4]
Magnetic field effects in biology from the perspective of the radical pair mechanism.

J R Soc Interface. 2022-8

[5]
Effect of extremely low frequency magnetic fields on oxidative balance in rat brains subjected to an experimental model of chronic unpredictable mild stress.

BMC Neurosci. 2021-9-6

[6]
Extremely Low-Frequency Magnetic Field as a Stress Factor-Really Detrimental?-Insight into Literature from the Last Decade.

Brain Sci. 2021-1-31

[7]
Investigating the effects of exposure to extremely low frequency electromagnetic fields on job burnout syndrome and the severity of depression; the role of oxidative stress.

J Occup Health. 2020-1

[8]
The effect of exposure to low frequency electromagnetic fields (EMF) as an integral part of the housing system on anxiety-related behaviour, cognition and welfare in two strains of laboratory mouse.

PLoS One. 2018-5-17

[9]
Exposure to an Extremely-Low-Frequency Magnetic Field Stimulates Adrenal Steroidogenesis via Inhibition of Phosphodiesterase Activity in a Mouse Adrenal Cell Line.

PLoS One. 2016-4-21

[10]
Extremely low frequency magnetic field modulates the level of neurotransmitters.

Korean J Physiol Pharmacol. 2014-12-31

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