Panagopoulos Dimitris J, Yakymenko Igor, De Iuliis Geoffry N, Chrousos George P
Choremeion Research Laboratory, 1st Department of Paediatrics, Medical School, National and Kapodistrian University of Athens, Athens, Greece.
Electromagnetic Field-Biophysics Research Laboratory, Athens, Greece.
Front Public Health. 2025 Jun 4;13:1585441. doi: 10.3389/fpubh.2025.1585441. eCollection 2025.
Exposure to anthropogenic electromagnetic fields (EMFs), especially those of wireless communications (WC) has increased tremendously. This is an unprecedented phenomenon throughout biological evolution because, all anthropogenic EMFs, being fully polarized, coherent, and, especially WC EMFs, highly variable, differ substantially from the natural EMFs. WC EMFs consist of Microwave (MW) carrier waves, modulated, by Extremely Low Frequency (ELF) signals, and included in on/off pulses repeated at various ELF rates. Moreover, they exhibit intense random variability, mainly in the Ultra Low Frequency (ULF) band. Thus, WC EMFs are a combination of MW and ELF/ULF EMFs. The combination of polarization/coherence and intense low-frequency (ELF/ULF) variability seems to be the key to EMF-bioactivity. Epidemiological and laboratory studies highlight a connection between ELF or WC EMF exposure and cancer, infertility, electro-hypersensitivity, and various other pathologies. Studies also find DNA damage and Oxidative Stress (OS) which explain these pathologies. While man-made EMFs cannot directly ionize molecules, they are capable of doing this indirectly in biological tissue, by triggering the biosynthesis of Reactive Oxygen Species (ROS) which can damage biomolecules, including DNA. The (over)production of ROS and the consequent OS are triggered by irregular gating of Voltage-Gated Ion Channels (VGICs) in the cell membranes as described by the Ion Forced Oscillation (IFO)-VGIC mechanism: Mobile ions within VGICs forced to oscillate by the applied ELF/ULF EMFs exert forces on the voltage sensors of the VGICs, similar to or greater than the forces that physiologically gate those channels, resulting in their irregular gating (dysfunction). Dysfunction of ion channels disrupts intracellular ionic concentrations. This triggers ROS overproduction and OS by the ROS-generating systems/enzymes in the cells, such as the electron transport chain (ETC) in the mitochondria, or the NADPH/NADH oxidases (NOXs), the Nitric Oxide synthases (NOS), etc. The IFO-VGIC mechanism and the consequent OS constitute a comprehensive mechanism that explains all known adverse biological and health effects reported to be induced by anthropogenic EMFs.
接触人为电磁场(EMF),尤其是无线通信(WC)产生的电磁场,已大幅增加。这在整个生物进化过程中是前所未有的现象,因为所有人为电磁场都是完全极化、相干的,特别是WC电磁场高度可变,与自然电磁场有很大不同。WC电磁场由微波(MW)载波组成,由极低频(ELF)信号调制,并包含以各种ELF速率重复的开/关脉冲。此外,它们在超低频(ULF)频段表现出强烈的随机变异性。因此,WC电磁场是MW和ELF/ULF电磁场的组合。极化/相干性与强烈的低频(ELF/ULF)变异性的结合似乎是EMF生物活性的关键。流行病学和实验室研究强调了ELF或WC电磁场暴露与癌症、不孕、电磁超敏反应以及各种其他病症之间的联系。研究还发现了DNA损伤和氧化应激(OS),这解释了这些病症。虽然人造电磁场不能直接使分子电离,但它们能够在生物组织中通过触发活性氧物种(ROS)的生物合成来间接做到这一点,ROS会损害包括DNA在内的生物分子。如离子强迫振荡(IFO)-电压门控离子通道(VGIC)机制所述,细胞膜中电压门控离子通道(VGIC)的不规则门控会引发ROS的(过度)产生以及随之而来的OS:VGIC内的移动离子被施加的ELF/ULF电磁场强迫振荡,对VGIC的电压传感器施加的力与生理上使这些通道门控的力相似或更大,导致其不规则门控(功能障碍)。离子通道功能障碍会破坏细胞内离子浓度。这会触发细胞内ROS产生系统/酶(如线粒体中的电子传递链(ETC)、NADPH/NADH氧化酶(NOXs)、一氧化氮合酶(NOS)等)产生过量ROS和OS。IFO-VGIC机制以及随之而来的OS构成了一种综合机制,解释了据报道由人为电磁场诱导的所有已知不良生物和健康影响。