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Circadian Gene Expression and Extremely Low-Frequency Magnetic Fields: An In Vitro Study

机译:昼夜节律基因表达和极低频磁场:一项体外研究

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摘要

It is well known that circadian clocks are mainly regulated by light targeting signaling pathways in the hypothalamic suprachiasmatic nucleus. However, an entrainment mediated by non-photic sensory stimuli was also suggested for peripheral clocks. Exposure to extremely low frequency (ELF) electromagnetic fields might affect circadian rhythmicity. The goal of this research was to investigate effects of ELF magnetic fields (ELF-MF) on circadian clock genes in a human fibroblast cell line. We found that an ELF-MF (0.1mT, 50Hz) exposure was capable of entraining expression of clock genes BMAL1, PER2, PER3, CRY1, and CRY2. Moreover, ELF-MF treatment induced an alteration in circadian clock gene expression previously entrained by serum shock stimulation. These results support the hypothesis that ELF-MF may be able to drive circadian physiologic processes by modulating peripheral clock gene expression. Bioelectromagnetics. 36:294-301, 2015. (c) 2015 Wiley Periodicals, Inc.
机译:众所周知,昼夜节律时钟主要受下丘脑视交叉上核中光靶向信号通路的调节。然而,还建议由非光感官刺激介导的夹带。暴露于极低频(ELF)电磁场可能会影响昼夜节律。这项研究的目的是研究ELF磁场(ELF-MF)对人类成纤维细胞系中昼夜节律基因的影响。我们发现ELF-MF(0.1mT,50Hz)暴露能够携带时钟基因BMAL1,PER2,PER3,CRY1和CRY2的表达。此外,ELF-MF处理诱导了先前被血清休克刺激所夹带的昼夜节律基因表达的改变。这些结果支持ELF-MF可能能够通过调节外周时钟基因表达来驱动昼夜生理过程的假设。生物电磁学。 36:294-301,2015.(c)2015威利期刊公司

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