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The effects of radiofrequency electromagnetic radiation on sperm function

机译:射频电磁辐射对精子功能的影响

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摘要

Mobile phone usage has become an integral part of our lives. However, the effects of the radiofrequency electromagnetic radiation (RF-EMR) emitted by these devices on biological systems and specifically the reproductive systems are currently under active debate. A fundamental hindrance to the current debate is that there is no clear mechanism of how such non-ionising radiation influences biological systems. Therefore, we explored the documented impacts of RF-EMR on the male reproductive system and considered any common observations that could provide insights on a potential mechanism. Among a total of 27 studies investigating the effects of RF-EMR on the male reproductive system, negative consequences of exposure were reported in 21. Within these 21 studies, 11 of the 15 that investigated sperm motility reported significant declines, 7 of 7 that measured the production of reactive oxygen species documented elevated levels and 4 of 5 studies that probed for DNA damage highlighted increased damage, due to RF-EMR exposure. Associated with this, RF-EMR treatment reduced antioxidant levels in 6 of 6 studies that studied this phenomenon, while consequences of RF-EMR were successfully ameliorated with the supplementation of antioxidants in all 3 studies that carried out these experiments. In light of this, we envisage a two-step mechanism whereby RF-EMR is able to induce mitochondrial dysfunction leading to elevated ROS production. A continued focus on research which aims to shed light on the biological effects of RF-EMR will allow us to test and assess this proposed mechanism in a variety of cell types.
机译:使用手机已成为我们生活中不可或缺的一部分。但是,目前正在积极讨论这些设备发出的射频电磁辐射(RF-EMR)对生物系统,特别是生殖系统的影响。当前辩论的一个根本障碍是,尚无明确的机制说明这种非电离辐射如何影响生物系统。因此,我们探讨了RF-EMR对男性生殖系统的文献记载的影响,并考虑了任何可能为潜在机制提供见解的常见观察结果。在调查RF-EMR对男性生殖系统影响的27项研究中,有21项报告了暴露的负面影响。在这21项研究中,研究的15项精子运动性研究中有11项显着下降,其中7项测量了7项。活性氧物质的产生表明其水平升高,而探究DNA损伤的5项研究中有4项强调了由于RF-EMR暴露而导致的损伤增加。与此相关的是,RF-EMR处理降低了研究该现象的6项研究中的6项研究中的6项,而在进行这些实验的所有3项研究中,补充抗氧化剂均成功改善了RF-EMR的后果。有鉴于此,我们设想了一种两步机制,其中RF-EMR能够诱导线粒体功能障碍,从而导致ROS产生增加。继续专注于旨在揭示RF-EMR生物学效应的研究将使我们能够在各种细胞类型中测试和评估这种拟议的机制。

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