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非电离电磁场的遗传效应。

Genetic effects of non-ionizing electromagnetic fields.

作者信息

Lai Henry

机构信息

Department of Bioengineering, University of Washington, Seattle, WA, USA.

出版信息

Electromagn Biol Med. 2021 Apr 3;40(2):264-273. doi: 10.1080/15368378.2021.1881866. Epub 2021 Feb 4.

Abstract

This is a review of the research on the genetic effects of non-ionizing electromagnetic field (EMF), mainly on radiofrequency radiation (RFR) and static and extremely low frequency EMF (ELF-EMF). The majority of the studies are on genotoxicity (e.g., DNA damage, chromatin conformation changes, etc.) and gene expression. Genetic effects of EMF depend on various factors, including field parameters and characteristics (frequency, intensity, wave-shape), cell type, and exposure duration. The types of gene expression affected (e.g., genes involved in cell cycle arrest, apoptosis and stress responses, heat-shock proteins) are consistent with the findings that EMF causes genetic damages. Many studies reported effects in cells and animals after exposure to EMF at intensities similar to those in the public and occupational environments. The mechanisms by which effects are induced by EMF are basically unknown. Involvement of free radicals is a likely possibility. EMF also interacts synergistically with different entities on genetic functions. Interactions, particularly with chemotherapeutic compounds, raise the possibility of using EMF as an adjuvant for cancer treatment to increase the efficacy and decrease side effects of traditional chemotherapeutic drugs. Other data, such as adaptive effects and mitotic spindle aberrations after EMF exposure, further support the notion that EMF causes genetic effects in living organisms.

摘要

这是一篇关于非电离电磁场(EMF)遗传效应的研究综述,主要涉及射频辐射(RFR)以及静态和极低频电磁场(ELF-EMF)。大多数研究集中在遗传毒性(如DNA损伤、染色质构象变化等)和基因表达方面。EMF的遗传效应取决于多种因素,包括场参数和特性(频率、强度、波形)、细胞类型以及暴露持续时间。受影响的基因表达类型(如参与细胞周期停滞、凋亡和应激反应的基因、热休克蛋白)与EMF导致遗传损伤的研究结果一致。许多研究报告了在与公众和职业环境中相似强度的EMF暴露后,细胞和动物出现的效应。EMF诱导效应的机制基本未知。自由基的参与是一种可能的情况。EMF还与遗传功能上的不同实体产生协同相互作用。特别是与化疗化合物的相互作用,增加了将EMF用作癌症治疗辅助手段以提高传统化疗药物疗效并降低副作用的可能性。其他数据,如EMF暴露后的适应性效应和有丝分裂纺锤体畸变,进一步支持了EMF在生物体中引起遗传效应的观点。

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