Gustavino Bianca, Carboni Giovanni, Petrillo Roberto, Paoluzzi Giovanni, Santovetti Emanuele, Rizzoni Marco
Department of Physics, University of Rome Tor Vergata, Via della Ricerca Scientifica 1, 00133, Rome, Italy.
Mutagenesis. 2016 Mar;31(2):187-92. doi: 10.1093/mutage/gev071. Epub 2015 Oct 17.
The increasing use of mobile phones and wireless networks raised a great debate about the real carcinogenic potential of radiofrequency-electromagnetic field (RF-EMF) exposure associated with these devices. Conflicting results are reported by the great majority of in vivo and in vitro studies on the capability of RF-EMF exposure to induce DNA damage and mutations in mammalian systems. Aimed at understanding whether less ambiguous responses to RF-EMF exposure might be evidenced in plant systems with respect to mammalian ones, in the present work the mutagenic effect of RF-EMF has been studied through the micronucleus (MN) test in secondary roots of Vicia faba seedlings exposed to mobile phone transmission in controlled conditions, inside a transverse electro magnetic (TEM) cell. Exposure of roots was carried out for 72h using a continuous wave (CW) of 915 MHz radiation at three values of equivalent plane wave power densities (23, 35 and 46W/m(2)). The specific absorption rate (SAR) was measured with a calorimetric method and the corresponding values were found to fall in the range of 0.4-1.5W/kg. Results of three independent experiments show the induction of a significant increase of MN frequency after exposure, ranging from a 2.3-fold increase above the sham value, at the lowest SAR level, up to a 7-fold increase at the highest SAR. These findings are in agreement with the limited number of data on cytogenetic effects detected in other plant systems exposed to mobile phone RF-EMF frequencies and clearly show the capability of radiofrequency exposure to induce DNA damage in this eukaryotic cell system.
手机和无线网络使用的日益增加引发了一场关于与这些设备相关的射频电磁场(RF-EMF)暴露的实际致癌潜力的激烈辩论。绝大多数关于RF-EMF暴露在哺乳动物系统中诱导DNA损伤和突变能力的体内和体外研究报告了相互矛盾的结果。为了了解在植物系统中是否可能比在哺乳动物系统中更明确地证明对RF-EMF暴露的反应,在本研究中,通过微核(MN)试验,在可控条件下,在横向电磁(TEM)细胞内,对暴露于手机传输的蚕豆幼苗次生根中RF-EMF的诱变作用进行了研究。使用915 MHz辐射的连续波(CW),在三个等效平面波功率密度值(23、35和46W/m²)下,对根进行72小时的暴露。用热量测定法测量比吸收率(SAR),发现相应值落在0.4-1.5W/kg范围内。三个独立实验的结果表明,暴露后微核频率显著增加,在最低SAR水平下,比假处理值增加2.3倍,在最高SAR水平下增加7倍。这些发现与在暴露于手机RF-EMF频率的其他植物系统中检测到的细胞遗传学效应的有限数据一致,并清楚地表明射频暴露在这个真核细胞系统中诱导DNA损伤的能力。