Hasanzadeh Hadi, Rezaie-Tavirani Mostafa, Seyyedi Samaneh Sadat, Zali Hakimeh, Heydari Keshel Saeid, Jadidi Majid, Abedelahi Ali
Dept. of Medical Physics, Semnan University of Medical Sciences, Semnan, Iran.
Proteomics Research Center, Shahid Beheshti University of Medical Sciences, Tehran, Iran.
Iran J Cancer Prev. 2014 Winter;7(1):22-7.
Extremely low frequency electromagnetic fields (ELF-EMF) have been common in daily life all over the world. They have produced by power lines and electrical appliances, but higher levels of them have raised a lot of concerns about their carcinogenesis. Both epidemiological and laboratory studies have suggested that EMFs might increase cancer incidence, including acute childhood leukemia, brain and breast cancer.
In the present study, SH-SY5Y human neuroblastoma cell line has exposed to 2mT, 50 Hz magnetic field for 3 h. Next, effect of this exposure on protein expression including over-expression or under-expression has assessed by proteomics.
Bioinformatics and statistical analysis using progenesis same spot software on the obtained 2D electrophoresis has shown that expression of 189 proteins in exposed group has changed relative to control. Besides, PCA analysis has verified results of clustering, and has shown that protein data has clustered according to experimental conditions.
The results of this study have shown that ELF-EMF changes cell morphology via altering protein expression, but more profound studies have needed to determine the kind of proteins altered.
极低频电磁场(ELF - EMF)在世界各地的日常生活中都很常见。它们由电力线和电器产生,但较高水平的极低频电磁场引发了人们对其致癌性的诸多担忧。流行病学和实验室研究均表明,电磁场可能会增加癌症发病率,包括儿童急性白血病、脑癌和乳腺癌。
在本研究中,SH - SY5Y人神经母细胞瘤细胞系暴露于2mT、50Hz的磁场中3小时。接下来,通过蛋白质组学评估这种暴露对蛋白质表达的影响,包括过表达或低表达。
使用progenesis same spot软件对获得的二维电泳进行生物信息学和统计分析表明,暴露组中189种蛋白质的表达相对于对照组发生了变化。此外,主成分分析(PCA)验证了聚类结果,并表明蛋白质数据根据实验条件进行了聚类。
本研究结果表明,极低频电磁场通过改变蛋白质表达来改变细胞形态,但需要更深入的研究来确定所改变蛋白质的种类。