Environmental Toxicology Unit, Centro Nacional de Sanidad Ambiental (CNSA), Instituto de Salud Carlos III (ISCIII), Ctra. Majadahonda-Pozuelo Km. 2,2., Majadahonda, Madrid 28220, Spain.
Radio Frequency Laboratory, Telecommunications General Secretary and Audiovisual Communication Services Ordenation, Madrid, Spain.
Sci Total Environ. 2024 Mar 10;915:169475. doi: 10.1016/j.scitotenv.2023.169475. Epub 2024 Jan 9.
Telecommunications industries are rapidly deploying the fifth generation (5G) spectrum and there is public concern about the safety and health impacts of this type of Radio Frequency Radiation (RFR), in part because of the lack of comparable scientific evidence. In this study we have used a validated commercially available setting producing a uniform field to expose zebrafish embryos (ZFe) to unmodulated 700 and 3500 MHz frequencies. We have combined a battery of toxicity, developmental and behavioral assays to further explore potential RFR effects. Our neurobehavioral profiles include a tail coiling assay, a light/dark activity assay, two thigmotaxis anxiety assays (auditory and visual stimuli), and a startle response - habituation assay in response to auditory stimuli. ZFe were exposed for 1 and 4 h during the blastula period of development and endpoints evaluated up to 120 hours post fertilization (hpf). Our results show no effects on mortality, hatching or body length. However, we have demonstrated specific organ morphological effects, and behavioral effects in activity, anxiety-like behavior, and habituation that lasted in larvae exposed during the early embryonic period. A decrease in acetylcholinesterase activity was also observed and could explain some of the observed behavioral alterations. Interestingly, effects were more pronounced in ZFe exposed to the 700 MHz frequency, and especially for the 4 h exposure period. In addition, we have demonstrated that our exposure setup is robust, flexible with regard to frequency and power testing, and highly comparable. Future work will include exposure of ZFe to 5G modulated signals for different time periods to better understand the potential health effects of novel 5G RFR.
电信行业正在迅速部署第五代(5G)频谱,公众对这种射频辐射(RFR)的安全性和健康影响感到担忧,部分原因是缺乏可比的科学证据。在这项研究中,我们使用了一种经过验证的商用设置来产生均匀场,使斑马鱼胚胎(ZFe)暴露于未调制的 700MHz 和 3500MHz 频率下。我们结合了一系列毒性、发育和行为测定,以进一步探索潜在的 RFR 影响。我们的神经行为特征包括尾巴卷曲测定、明暗活动测定、两种触须回避焦虑测定(听觉和视觉刺激)以及对听觉刺激的惊跳反应-习惯化测定。ZFe 在胚胎期发育的囊胚期暴露 1 小时和 4 小时,并在受精后 120 小时(hpf)评估终点。我们的结果显示死亡率、孵化率或体长没有影响。然而,我们已经证明了特定的器官形态效应,以及在活动、焦虑样行为和听觉刺激引起的习惯化方面的行为效应,这些效应在早期胚胎期暴露的幼虫中持续存在。还观察到乙酰胆碱酯酶活性的降低,这可以解释一些观察到的行为改变。有趣的是,在暴露于 700MHz 频率的 ZFe 中观察到更明显的影响,特别是在 4 小时暴露期。此外,我们已经证明我们的暴露设置是稳健的,在频率和功率测试方面具有灵活性,并且高度可比。未来的工作将包括使 ZFe 暴露于 5G 调制信号不同时间段,以更好地了解新型 5G RFR 的潜在健康影响。