Eskandani Ramin, Zibaii Mohammad Ismail
Laser and Plasma Research Institute, Shahid Beheshti University, Tehran 19839-69411, Iran.
Institute for Cognitive and Brain Sciences, Shahid Beheshti University, Tehran 19839-69411, Iran.
Bioimpacts. 2024;14(4):30064. doi: 10.34172/bi.2023.30064. Epub 2023 Dec 30.
Radiofrequency electromagnetic radiation (RF-EMR) and extremely low-frequency electromagnetic fields (ELF-EMF) have emerged as noteworthy sources of environmental pollution in the contemporary era. The potential biological impacts of RF-EMR and ELF-EMF exposure on human organs, particularly the central nervous system (CNS), have garnered considerable attention in numerous research studies.
This article presents a comprehensive yet summarized review of the research on the explicit/implicit effects of RF-EMR and ELF-EMF exposure on CNS performance.
Exposure to RF-EMR can potentially exert adverse effects on the performance of CNS by inducing changes in the permeability of the blood-brain barrier (BBB), neurotransmitter levels, calcium channel regulation, myelin protein structure, the antioxidant defense system, and metabolic processes. However, it is noteworthy that certain reports have suggested that RF-EMR exposure may confer cognitive benefits for various conditions and disorders. ELF-EMF exposure has been associated with the enhancement of CNS performance, marked by improved memory retention, enhanced learning ability, and potential mitigation of neurodegenerative diseases. Nevertheless, it is essential to acknowledge that ELF-EMF exposure has also been linked to the induction of anxiety states, oxidative stress, and alterations in hormonal regulation. Moreover, ELF-EMR exposure alters hippocampal function, notch signaling pathways, the antioxidant defense system, and synaptic activities.
The RF-EMR and ELF-EMF exposures exhibit both beneficial and adverse effects. Nevertheless, the precise conditions and circumstances under which detrimental or beneficial effects manifest (either individually or simultaneously) remain uncertain.
在当代,射频电磁辐射(RF-EMR)和极低频电磁场(ELF-EMF)已成为值得关注的环境污染源。RF-EMR和ELF-EMF暴露对人体器官,尤其是中枢神经系统(CNS)的潜在生物学影响,在众多研究中受到了相当大的关注。
本文对RF-EMR和ELF-EMF暴露对CNS性能的显性/隐性影响的研究进行了全面而简要的综述。
暴露于RF-EMR可能会对CNS性能产生不利影响,其方式包括诱导血脑屏障(BBB)通透性变化、神经递质水平变化、钙通道调节、髓磷脂蛋白结构变化、抗氧化防御系统变化以及代谢过程变化。然而,值得注意的是,某些报告表明,RF-EMR暴露可能对各种病症和疾病具有认知益处。ELF-EMF暴露与CNS性能的增强有关,表现为记忆保持改善、学习能力增强以及对神经退行性疾病的潜在缓解作用。然而,必须承认,ELF-EMF暴露也与焦虑状态的诱导、氧化应激以及激素调节的改变有关。此外,ELF-EMR暴露会改变海马体功能、Notch信号通路、抗氧化防御系统和突触活动。
RF-EMR和ELF-EMF暴露既显示出有益影响,也显示出不利影响。然而,有害或有益影响显现(单独或同时)的确切条件和情况仍不确定。