Kim Ju Hwan, Lee Jin-Koo, Kim Hyung-Gun, Kim Kyu-Bong, Kim Hak Rim
Department of Pharmacology, College of Medicine, Dankook University, Cheonan 31116, Republic of Korea.
Department of Pharmacy, College of Pharmacy, Dankook University, Cheonan 31116, Republic of Korea.
Biomol Ther (Seoul). 2019 May 1;27(3):265-275. doi: 10.4062/biomolther.2018.152.
Technological advances of mankind, through the development of electrical and communication technologies, have resulted in the exposure to artificial electromagnetic fields (EMF). Technological growth is expected to continue; as such, the amount of EMF exposure will continue to increase steadily. In particular, the use-time of smart phones, that have become a necessity for modern people, is steadily increasing. Social concerns and interest in the impact on the cranial nervous system are increased when considering the area where the mobile phone is used. However, before discussing possible effects of radiofrequency-electromagnetic field (RF-EMF) on the human body, several factors must be investigated about the influence of EMFs at the level of research using or animal models. Scientific studies on the mechanism of biological effects are also required. It has been found that RF-EMF can induce changes in central nervous system nerve cells, including neuronal cell apoptosis, changes in the function of the nerve myelin and ion channels; furthermore, RF-EMF act as a stress source in living creatures. The possible biological effects of RF-EMF exposure have not yet been proven, and there are insufficient data on biological hazards to provide a clear answer to possible health risks. Therefore, it is necessary to study the biological response to RF-EMF in consideration of the comprehensive exposure with regard to the use of various devices by individuals. In this review, we summarize the possible biological effects of RF-EMF exposure.
人类的技术进步通过电气和通信技术的发展,导致了对人工电磁场(EMF)的暴露。预计技术将持续发展;因此,EMF暴露量将继续稳步增加。特别是,已成为现代人生活必需品的智能手机的使用时间正在稳步增加。考虑到手机的使用部位,社会对其对颅神经系统影响的关注和兴趣也在增加。然而,在讨论射频电磁场(RF-EMF)对人体可能产生的影响之前,必须在使用动物模型的研究层面上,对EMF的影响进行若干因素的调查。还需要对生物效应机制进行科学研究。已经发现,RF-EMF可诱导中枢神经系统神经细胞发生变化,包括神经元细胞凋亡、神经髓鞘和离子通道功能的改变;此外,RF-EMF在生物体内充当应激源。RF-EMF暴露可能产生的生物效应尚未得到证实,关于生物危害的数据也不足以明确回答可能的健康风险。因此,有必要考虑个体使用各种设备的综合暴露情况,研究对RF-EMF的生物反应。在本综述中,我们总结了RF-EMF暴露可能产生的生物效应。