Warille Aymen A, Altun Gamze, Elamin Abdalla A, Kaplan Arife Ahsen, Mohamed Hamza, Yurt Kıymet Kübra, El Elhaj Abubaker
Department of Anatomy and Histology, College of Medicine, University of Hail, Hail, Saudi Arabia.
Department of Anatomy, Medical School, Ondokuz Mayıs University, Samsun, Turkey.
J Microsc Ultrastruct. 2017 Oct-Dec;5(4):177-184. doi: 10.1016/j.jmau.2017.09.002. Epub 2017 Sep 14.
This review discusses the effects of various frequencies of electromagnetic fields (EMF) on brain hormones and enzyme activity. In this context, the mechanism underlying the effects of EMF exposure on tissues generally and cellular pathway specifically has been discussed. The cell membrane plays important roles in mediating enzymatic activities as to response and reacts with extracellular environment. Alterations in the calcium signaling pathways in the cell membrane are activated in response to the effects of EMF exposure. Experimental and epidemiological studies have demonstrated that no changes occur in serum prolactin levels in humans following short-term exposure to 900 Mega Hertz (MHz) EMF emitted by mobile phones. The effects of EMF on melatonin and its metabolite, 6-sulfatoxymelatonin, in humans have also been investigated in the clinical studies to show a disturbance in metabolic activity of melatonin. In addition, although 900 MHz EMF effects on NF-κB inflammation, its effects on NF-κB are not clear. : ELF-EMF, extremely low frequency electromagnetic fields; EMF, electromagnetic fields; RF, Radiofrequency; ROS, reactive oxygen species; VGCCs, voltage-gated calcium channels; MAPK, mitogen-activated phosphokinase; NF-κB, nuclear factor kappa B; ERK-1/2, extracellular signal-regulated kinase; GSH-Px, glutathione peroxidase; JNK, Jun N-terminal kinases; SOD, superoxide dismutase; MnSOD, manganese-dependent superoxide dismutase; GLUT1, glucose transporter 1; GSSG-Rd, glutathione reductase MDA malondialdehyde; NO, nitric oxide; LH, luteinizing hormone; FSH, follicle-stimulating hormone.
本综述讨论了不同频率的电磁场(EMF)对脑激素和酶活性的影响。在此背景下,探讨了EMF暴露对组织总体以及特定细胞途径产生影响的潜在机制。细胞膜在介导酶活性以响应细胞外环境并与之反应方面发挥着重要作用。细胞膜中钙信号通路的改变会因EMF暴露的影响而被激活。实验研究和流行病学研究表明,人类短期暴露于手机发出的900兆赫兹(MHz)EMF后,血清催乳素水平未发生变化。临床研究还调查了EMF对人体褪黑素及其代谢物6 - 硫酸氧褪黑素的影响,结果显示褪黑素的代谢活性受到干扰。此外,尽管900 MHz EMF对核因子κB炎症有影响,但其对核因子κB的影响尚不清楚。:ELF - EMF,极低频电磁场;EMF,电磁场;RF,射频;ROS,活性氧;VGCCs,电压门控钙通道;MAPK,丝裂原活化蛋白激酶;NF - κB,核因子κB;ERK - 1/2,细胞外信号调节激酶;GSH - Px,谷胱甘肽过氧化物酶;JNK,Jun氨基末端激酶;SOD,超氧化物歧化酶;MnSOD,锰依赖性超氧化物歧化酶;GLUT1,葡萄糖转运蛋白1;GSSG - Rd,谷胱甘肽还原酶;MDA,丙二醛;NO,一氧化氮;LH,黄体生成素;FSH,卵泡刺激素。
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