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电磁场暴露后分子和基因组改变的后果综述:神经网络重塑和认知变化。

A review on the consequences of molecular and genomic alterations following exposure to electromagnetic fields: Remodeling of neuronal network and cognitive changes.

机构信息

Neuroscience Research Center, School of Medicine, Shahid Beheshti University of Medical Sciences, Tehran, Iran.

Laboratory of Biophysics and Molecular Biology, Departments of Biophysics, Institute of Biochemistry and Biophysics, University of Tehran, Tehran, Iran.

出版信息

Brain Res Bull. 2024 Oct 15;217:111090. doi: 10.1016/j.brainresbull.2024.111090. Epub 2024 Sep 29.

Abstract

The use of electromagnetic fields (EMFs) is essential in daily life. Since 1970, concerns have grown about potential health hazards from EMF. Exposure to EMF can stimulate nerves and affect the central nervous system, leading to neurological and cognitive changes. However, current research results are often vague and contradictory. These effects include changes in memory and learning through changes in neuronal plasticity in the hippocampus, synapses and hippocampal neuritis, and changes in metabolism and neurotransmitter levels. Prenatal exposure to EMFs has negative effects on memory and learning, as well as changes in hippocampal neuron density and histomorphology of hippocampus. EMF exposure also affects the structure and function of glial cells, affecting gate dynamics, ion conduction, membrane concentration, and protein expression. EMF exposure affects gene expression and may change epigenetic regulation through effects on DNA methylation, histone modification, and microRNA biogenesis, and potentially leading to biological changes. Therefore, exposure to EMFs possibly leads to changes in cellular and molecular mechanisms in central nervous system and alter cognitive function.

摘要

电磁场(EMF)的应用在日常生活中至关重要。自 1970 年以来,人们对 EMF 潜在的健康危害的担忧日益增加。接触 EMF 会刺激神经并影响中枢神经系统,导致神经和认知变化。然而,目前的研究结果往往模糊且相互矛盾。这些影响包括通过海马体、突触和海马神经炎中的神经元可塑性变化引起的记忆和学习变化,以及代谢和神经递质水平的变化。产前暴露于 EMF 会对记忆和学习产生负面影响,并改变海马神经元密度和海马体的组织形态学。EMF 暴露还会影响神经胶质细胞的结构和功能,影响门控动力学、离子传导、膜浓度和蛋白质表达。EMF 暴露会影响基因表达,并可能通过对 DNA 甲基化、组蛋白修饰和 miRNA 生物发生的影响改变表观遗传调控,从而导致生物学变化。因此,暴露于 EMF 可能导致中枢神经系统中细胞和分子机制发生变化,并改变认知功能。

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