Cellular Physiology Lab, Center for Research on Ageing, Department of Basic and Applied Medical Sciences, University G. d'Annunzio of Chieti-Pescara, 66013 Chieti, Italy.
Free Radic Biol Med. 2010 Feb 15;48(4):579-89. doi: 10.1016/j.freeradbiomed.2009.12.005. Epub 2009 Dec 11.
The biological effects of electric and magnetic fields, which are ubiquitous in modern society, remain poorly understood. Here, we applied a single-cell approach to study the effects of short-term exposure to extremely low frequency electromagnetic fields (ELF-EMFs) on muscle cell differentiation and function using C2C12 cells as an in vitro model of the skeletal muscle phenotype. Our focus was on markers of oxidative stress and calcium (Ca(2+)) handling, two interrelated cellular processes previously shown to be affected by such radiation in other cell models. Collectively, our data reveal that ELF-EMFs (1) induced reactive oxygen species production in myoblasts and myotubes with a concomitant decrease in mitochondrial membrane potential; (2) activated the cellular detoxification system, increasing catalase and glutathione peroxidase activities; and (3) altered intracellular Ca(2+)homeostasis, increasing the spontaneous activity of myotubes and enhancing cellular reactivity to a depolarizing agent (KCl) or an agonist (caffeine) of intracellular store Ca(2+)channels. In conclusion, our data support a possible link between exposure to ELF-EMFs and modification of the cellular redox state, which could, in turn, increase the level of intracellular Ca(2+)and thus modulate the metabolic activity of C2C12 cells.
电磁场在现代社会中无处不在,但其生物效应仍知之甚少。在这里,我们应用单细胞方法,使用 C2C12 细胞作为骨骼肌表型的体外模型,研究短期暴露于极低频电磁场(ELF-EMF)对肌肉细胞分化和功能的影响。我们的重点是氧化应激和钙(Ca(2+))处理的标志物,这两个相互关联的细胞过程先前在其他细胞模型中已显示受到此类辐射的影响。总的来说,我们的数据表明,ELF-EMF(1)在成肌细胞和肌管中诱导活性氧的产生,同时降低线粒体膜电位;(2)激活细胞解毒系统,增加过氧化氢酶和谷胱甘肽过氧化物酶的活性;(3)改变细胞内 Ca(2+)稳态,增加肌管的自发性活动,并增强细胞对去极化剂(KCl)或细胞内储存 Ca(2+)通道激动剂(咖啡因)的反应性。总之,我们的数据支持接触 ELF-EMF 与细胞氧化还原状态改变之间可能存在联系,这反过来又可能增加细胞内 Ca(2+)的水平,从而调节 C2C12 细胞的代谢活性。