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电磁场对神经元离子通道的影响:系统评价。

Effects of electromagnetic fields on neuronal ion channels: a systematic review.

机构信息

Leverhulme Quantum Biology Doctoral Training Centre, University of Surrey, Guildford, Surrey, UK.

School of Veterinary Medicine, Faculty of Health and Medical Sciences, University of Surrey, Guildford, Surrey, UK.

出版信息

Ann N Y Acad Sci. 2021 Sep;1499(1):82-103. doi: 10.1111/nyas.14597. Epub 2021 May 4.

DOI:10.1111/nyas.14597
PMID:33945157
Abstract

Many aspects of chemistry and biology are mediated by electromagnetic field (EMF) interactions. The central nervous system (CNS) is particularly sensitive to EMF stimuli. Studies have explored the direct effect of different EMFs on the electrical properties of neurons in the last two decades, particularly focusing on the role of voltage-gated ion channels (VGCs). This work aims to systematically review published evidence in the last two decades detailing the effects of EMFs on neuronal ion channels as per the PRISM guidelines. Following a predetermined exclusion and inclusion criteria, 22 papers were included after searches on three online databases. Changes in calcium homeostasis, attributable to the voltage-gated calcium channels, were found to be the most commonly reported result of EMF exposure. EMF effects on the neuronal landscape appear to be diverse and greatly dependent on parameters, such as the field's frequency, exposure time, and intrinsic properties of the irradiated tissue, such as the expression of VGCs. Here, we systematically clarify how neuronal ion channels are particularly affected and differentially modulated by EMFs at multiple levels, such as gating dynamics, ion conductance, concentration in the membrane, and gene and protein expression. Ion channels represent a major transducer for EMF-related effects on the CNS.

摘要

许多化学和生物学方面都受到电磁场(EMF)相互作用的影响。中枢神经系统(CNS)对 EMF 刺激特别敏感。在过去的二十年中,研究已经探讨了不同 EMF 对神经元电特性的直接影响,特别是侧重于电压门控离子通道(VGC)的作用。这项工作旨在按照 PRISM 指南,系统地回顾过去二十年中发表的关于 EMF 对神经元离子通道影响的证据。通过在三个在线数据库上进行预先确定的排除和纳入标准搜索,在搜索后共纳入了 22 篇论文。发现钙稳态的变化,归因于电压门控钙通道,是 EMF 暴露最常报道的结果。EMF 对神经元景观的影响似乎多种多样,并且极大地取决于参数,例如场的频率、暴露时间以及照射组织的固有特性,例如 VGC 的表达。在这里,我们系统地阐明了神经元离子通道如何在多个水平上特别受到 EMF 的影响并被其调节,例如门控动力学、离子电导、膜中的浓度以及基因和蛋白质表达。离子通道是 CNS 中与 EMF 相关的效应的主要转换器。

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