Destefanis Michele, Viano Marta, Leo Christian, Gervino Gianpiero, Ponzetto Antonio, Silvagno Francesca
a Department of Oncology , University of Torino , Torino , Italy ;
b Department of Medical Sciences , University of Torino , Torino , Italy ;
Int J Radiat Biol. 2015;91(12):964-72. doi: 10.3109/09553002.2015.1101648. Epub 2015 Nov 17.
To date, the effects of electromagnetic fields on cell metabolism have been overlooked. The objective of the present study was to investigate the influence of extremely low frequency electromagnetic fields (ELF-EMF) over mitochondrial metabolism and the consequent impact on cancer cell growth.
The effects of ELF-EMF on cancer growth were investigated in several human cancer cell lines by crystal violet assay. The modulation of mitochondrial activity was assessed by cytofluorimetric evaluation of membrane potential and by real-time quantification of mitochondrial transcription. Moreover the expression of several mitochondrial proteins and their levels in the organelle were evaluated.
The long-term exposure to ELF-EMF reduced the proliferation of several cancer cell lines and the effect was associated to an increased mitochondrial activity without evident changes in ATP levels. The results of our experiments excluded a transcriptional modulation of mitochondrial respiratory complexes, rather suggesting that ELF-EMF increased the energy demand. The altered mitochondrial metabolism led to changes in mitochondrial protein profile. In fact we found a downregulated expression of mitochondrial phospho-ERK, p53 and cytochrome c.
The results of the present study indicate that ELF-EMF can negatively modulate cancer cell growth increasing respiratory activity of cells and altering mitochondrial protein expression.
迄今为止,电磁场对细胞代谢的影响一直被忽视。本研究的目的是探讨极低频电磁场(ELF-EMF)对线粒体代谢的影响以及对癌细胞生长的后续影响。
通过结晶紫测定法研究了ELF-EMF对几种人类癌细胞系中癌症生长的影响。通过细胞膜电位的细胞荧光分析和线粒体转录的实时定量评估线粒体活性的调节。此外,还评估了几种线粒体蛋白的表达及其在细胞器中的水平。
长期暴露于ELF-EMF可降低几种癌细胞系的增殖,且该效应与线粒体活性增加相关,而ATP水平无明显变化。我们的实验结果排除了线粒体呼吸复合物的转录调节,而是表明ELF-EMF增加了能量需求。线粒体代谢的改变导致线粒体蛋白质谱的变化。事实上,我们发现线粒体磷酸化ERK、p53和细胞色素c的表达下调。
本研究结果表明,ELF-EMF可通过增加细胞呼吸活性和改变线粒体蛋白表达来负面调节癌细胞生长。