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首页> 外文期刊>Oxidative Medicine and Cellular Longevity >Role of Mitochondria in the Oxidative Stress Induced by Electromagnetic Fields: Focus on Reproductive Systems
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Role of Mitochondria in the Oxidative Stress Induced by Electromagnetic Fields: Focus on Reproductive Systems

机译:线粒体在电磁场诱导氧化应激中的作用:专注于生殖系统

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Modern technologies relying on wireless communication systems have brought increasing levels of electromagnetic field (EMF) exposure. This increased research interest in the effects of these radiations on human health. There is compelling evidence that EMFs affect cell physiology by altering redox-related processes. Considering the importance of redox milieu in the biological competence of oocyte and sperm, we reviewed the existing literature regarding the effects of EMFs on reproductive systems. Given the role of mitochondria as the main source of reactive oxygen species (ROS), we focused on the hypothesis of a mitochondrial basis of EMF-induced reproductive toxicity. MEDLINE, Web of Science, and Scopus database were examined for peer-reviewed original articles by searching for the following keywords “extremely low frequency electromagnetic fields (ELF-EMFs),” “radiofrequency (RF),” “microwaves,” “Wi-Fi,” “mobile phone,” “oxidative stress,” “mitochondria,” “fertility,” “sperm,” “testis,” “oocyte,” “ovarian follicle,” and “embryo.” These keywords were combined with other search phrases relevant to the topic. Although we reported contradictory data due to lack of uniformity in the experimental designs, a growing body of evidence suggests that EMF exposure during spermatogenesis induces increased ROS production associated with decreased ROS scavenging activity. Numerous studies revealed the detrimental effects of EMFs from mobile phones, laptops, and other electric devices on sperm quality and provide evidence for extensive electron leakage from the mitochondrial electron transport chain as the main cause of EMF damage. In female reproductive systems, the contribution of oxidative stress to EMF-induced damages and the evidence of mitochondrial origin of ROS overproduction are reported, as well. In conclusion, mitochondria seem to play an important role as source of ROS in both male and female reproductive systems under EMF exposure. Future and more standardized studies are required for a better understanding of molecular mechanisms underlying EMF potential challenge to our reproductive system in order to improve preventive strategies.
机译:依赖无线通信系统的现代技术带来了越来越多的电磁场(EMF)曝光。这对这些辐射对人体健康影响的研究兴趣增加。有引人注目的证据表明EMF通过改变氧化还原相关过程来影响细胞生理学。考虑到氧化还原环境在卵母细胞和精子生物能力的重要性,我们审查了关于EMFS对生殖系统影响的现有文献。鉴于线粒体的作用作为反应性氧物质(ROS)的主要来源,我们专注于EMF诱导的繁殖毒性的线粒体基础的假设。通过搜索以下关键词“极低频率电磁场(ELF-EMF)”,“射频(RF)”,查看了对同伴审查的原始文章进行了查看的原始文章的Medline,Scopus数据库。“微波”,“微波” FI,“手机”,“氧化应激”“线粒体,”生育“,”精子,“”睾丸“,”卵巢,“卵巢卵泡,”和“胚胎”。这些关键字与与主题相关的其他搜索短语组合。虽然我们报告了由于实验设计中缺乏均匀性的矛盾数据,但越来越多的证据表明精子发生过程中的EMF暴露会诱导罗斯清除活动减少相关的ROS生产。众多研究揭示了EMF对移动电话,笔记本电脑和其他电气设备对精子质量的不利影响,并提供了线粒体电子传输链广泛电子泄漏作为EMF损伤的主要原因。在女性生殖系统中,还报告了氧化应激对EMF诱导的损害的贡献以及ROS生产力的线粒体来源的证据。总之,线粒体似乎在EMF暴露下作为雄性和女性生殖系统中的ROS来源发挥重要作用。未来和更标准化的研究是为了更好地理解潜在的EMF潜在挑战的分子机制,以改善预防策略。

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