Department of Environmental Studies, Satyawati College, University of Delhi, Delhi, 110052, India.
Indian Council of Medical Research, Ansari Nagar, New Delhi, 110029, India.
Environ Pollut. 2022 Sep 15;309:119793. doi: 10.1016/j.envpol.2022.119793. Epub 2022 Jul 18.
Growing evidence recommends that radiofrequency radiations might be a new type of environmental pollutant. The consequences of RFR on the human immune system have gained considerable interest in recent years, not only to examine probable negative effects on health but also to understand if RFR can modulate the immune response positively. Although several studies have been published on the immune effects of RFR but no satisfactory agreement has been reached. Hence this review aims to evaluate the RFR modulating impacts on particular immune cells contributing to various innate or adaptive immune responses. In view of existing pieces of evidence, we have suggested an intracellular signaling cascade responsible for RFR action. The bio-effects of RFR on immune cell morphology, viability, proliferation, genome integrity, and immune functions such as ROS, cytokine secretion, phagocytosis, apoptosis, etc. are discussed. The majority of existing evidence point toward the possible shifts in the activity, number, and/or function of immunocompetent cells, but the outcome of several studies is still contradictory and needs further studies to reach a conclusion. Also, the direct association of experimental studies to human risks might not be helpful as exposure parameters vary in real life. On the basis of recent available literature, we suggest that special experiments should be designed to test each particular signal utilized in communication technologies to rule out the hypothesis that longer exposure to RFR emitting devices would affect the immunity by inducing genotoxic effects in human immune cells.
越来越多的证据表明,射频辐射可能是一种新型的环境污染物。近年来,射频辐射对人类免疫系统的影响引起了相当大的兴趣,不仅要研究对健康的可能负面影响,还要了解射频辐射是否能积极调节免疫反应。尽管已经发表了许多关于射频辐射免疫效应的研究,但尚未达成令人满意的共识。因此,本综述旨在评估射频辐射对参与各种先天或适应性免疫反应的特定免疫细胞的调节作用。鉴于现有证据,我们提出了一个负责射频辐射作用的细胞内信号级联。讨论了射频辐射对免疫细胞形态、活力、增殖、基因组完整性以及免疫功能(如 ROS、细胞因子分泌、吞噬作用、细胞凋亡等)的影响。大多数现有证据表明,免疫活性细胞的活性、数量和/或功能可能发生变化,但一些研究的结果仍然存在矛盾,需要进一步研究才能得出结论。此外,将实验研究与人类风险直接联系起来可能没有帮助,因为实际生活中的暴露参数有所不同。基于最近的可用文献,我们建议设计专门的实验来测试通信技术中使用的每个特定信号,以排除假设,即更长时间地暴露于发射射频辐射的设备会通过在人类免疫细胞中诱导遗传毒性效应来影响免疫。