Gerhards Luca, Deser Andreas, Kattnig Daniel R, Matysik Jörg, Solov'yov Ilia A
Institute of Physics, Carl von Ossietzky Universität Oldenburg, Carl-von-Ossietzky Str. 9-11, 26129 Oldenburg, Germany.
Competence Center for Electromagnetic Fields, Federal Office for Radiation Protection, Karl-Liebknecht-Straße 33, 03046 Cottbus, Germany.
Chem Rev. 2025 Sep 10;125(17):8051-8088. doi: 10.1021/acs.chemrev.5c00178. Epub 2025 Jul 14.
The widespread use of radiofrequency (RF) communication has increased the exposure of organisms to electromagnetic fields, sparking a debate over the potential health effects of weak RF electromagnetic fields. While some experimental studies suggest that low-amplitude RF radiation may influence cellular metabolism or sleep patterns or even promote cancer, these claims remain controversial due to limited theoretical plausibility. Central to this debate is the radical pair mechanism (RPM), a quantum-mechanical framework proposed to mediate RF effects. Despite its role in magnetoreception and various magnetic field effects on chemical reactions, the RPM often fails to align with observations at low, nonthermal RF field strengths. This review examines these contrasting perspectives by discussing experimental findings and theoretical models that aim to explain putative biological effects of RF magnetic fields. Emphasis is placed on the challenges of reconciling theoretical predictions with empirical data, particularly in the context of weak RF exposure. Additionally, an overview of the theoretical framework used in current modeling efforts highlights the complexity of applying the RPM to biological systems and underscores the importance of critical interpretation. The goal is to clarify the state of understanding and inform future research on RPM-mediated biological effects under weak RF exposure.
射频(RF)通信的广泛使用增加了生物体暴露于电磁场的程度,引发了一场关于弱射频电磁场潜在健康影响的辩论。虽然一些实验研究表明低振幅射频辐射可能影响细胞代谢或睡眠模式,甚至促进癌症,但由于理论合理性有限,这些说法仍存在争议。这场辩论的核心是自由基对机制(RPM),这是一个被提议用于介导射频效应的量子力学框架。尽管它在磁感受以及各种磁场对化学反应的影响中发挥作用,但在低强度、非热射频场强下,自由基对机制往往与观测结果不一致。本综述通过讨论旨在解释射频磁场假定生物效应的实验结果和理论模型,审视了这些相互矛盾的观点。重点在于协调理论预测与经验数据所面临的挑战,特别是在弱射频暴露的背景下。此外,对当前建模工作中使用的理论框架的概述突出了将自由基对机制应用于生物系统的复杂性,并强调了批判性解释的重要性。目的是阐明理解现状,并为未来关于弱射频暴露下自由基对机制介导的生物效应的研究提供信息。