Eghlidospour M, Mortazavi S M J, Yousefi F, Mortazavi S A R
Medical Physics and Medical Engineering Department, School of Medicine, Shiraz University of Medical Sciences, Shiraz, Iran.
Medical Physics and Medical Engineering Department, School of Medicine, Shiraz University of Medical Sciences, Shiraz, Iran ; Ionizing and Non-ionizing Radiation Protection Research Center (INIRPRC), Shiraz University of Medical Sciences, Shiraz, Iran.
J Biomed Phys Eng. 2015 Sep 1;5(3):95-104. eCollection 2015 Sep.
Mobile phone use and wireless communication technology have grown explosively over the past decades. This rapid growth has caused widespread global concern about the potential detrimental effects of this technology on human health. Stem cells generate specialized cell types of the tissue in which they reside through normal differentiation pathways. Considering the undeniable importance of stem cells in modern medicine, numerous studies have been performed on the effects of ionizing and non-ionizing radiation on cellular processes such as: proliferation, differentiation, cell cycle and DNA repair processes. We have conducted extensive studies on beneficial (stimulatory) or detrimental biological effects of exposure to different sources of electromagnetic fields such as mobile phones, mobile phone base stations, mobile phone jammers, radar systems, magnetic resonance imaging (MRI) systems and dentistry cavitrons over the past years. In this article, recent studies on the biological effects of non-ionizing electromagnetic radiation in the range of radiofrequency (RF) on some important features of stem cells such as their proliferation and differentiation are reviewed. Studies reviewed in this paper indicate that the stimulatory or inhibitory effects of RF radiation on the proliferation and differentiation of stem cells depend on various factors such as the biological systems, experiment conditions, the frequency and intensity of RF and the duration of exposure.
在过去几十年中,手机使用和无线通信技术呈爆炸式增长。这种快速发展引发了全球对该技术可能对人类健康产生有害影响的广泛关注。干细胞通过正常分化途径生成其所在组织的特化细胞类型。鉴于干细胞在现代医学中不可否认的重要性,人们已经针对电离辐射和非电离辐射对细胞过程(如增殖、分化、细胞周期和DNA修复过程)的影响进行了大量研究。在过去几年里,我们对暴露于不同电磁场源(如手机、手机基站、手机信号干扰器、雷达系统、磁共振成像(MRI)系统和牙科超音波治疗仪)所产生的有益(刺激)或有害生物效应进行了广泛研究。本文综述了近年来关于射频(RF)范围内非电离电磁辐射对干细胞某些重要特性(如增殖和分化)的生物效应的研究。本文所综述的研究表明,射频辐射对干细胞增殖和分化的刺激或抑制作用取决于多种因素,如生物系统、实验条件、射频的频率和强度以及暴露持续时间。