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首页> 外文期刊>Environmental Science and Pollution Research >Does static electric field from ultra-high voltage direct-current transmission lines affect male reproductive capacity? Evidence from a laboratory study on male mice
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Does static electric field from ultra-high voltage direct-current transmission lines affect male reproductive capacity? Evidence from a laboratory study on male mice

机译:来自超高压直流传输线的静电场是否影响了男性生殖能力? 来自雄性小鼠的实验室研究的证据

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With the development of ultra-high-voltage direct-current (UHVDC) transmission technology and increase in transmission voltage, the issue of environmental static electric field (SEF) pollution is standing out and its possible health effects have caused much public attention. In this study, the effects of chronic exposure to SEF on reproductive capacity of male mice were investigated. Twenty Institute of Cancer Research (ICR) mice were exposed to SEF (56.3 +/- 1.4 kV/m, 49 days) generated by a high-voltage device. Several biological end points related to spermatogenesis and testicular function were evaluated, including reproductive organ coefficients, sperm motility and morphology, serum testosterone level, and testicular histology. No significant differences were found between the SEF-exposed and sham-exposed groups at the end of the exposure period. However, further observation through transmission electron microscopy revealed cristae losses in mitochondria of spermatogenic cells after SEF exposure. Nevertheless, the mitochondria injury did not affect sperm motility, which might be explained from the perspective of energy supply. That is, most of the energy required for sperm movement is generated by glycolysis which occurs in the cytoplasm rather than oxidative phosphorylation which occurs in mitochondria. In conclusion, this study indicates that exposure to SEF (56.3 +/- 1.4 kV/m, 49 days) has limited effects on male reproductive capacity.
机译:随着超高压直流(UHVDC)传输技术的发展和传输电压的增加,环境静电场(SEF)污染的问题突出,其可能的健康效果引起了很多公众的关注。在这项研究中,研究了慢性暴露于SEF对雄性小鼠生殖能力的影响。将二十癌症研究所(ICR)小鼠暴露于高压装置产生的SEF(56.3 +/- 1.4 kV / m,49天)。评估了与精子发生和睾丸功能相关的几个生物终点,包括生殖器官系数,精子运动和形态,血清睾酮水平和睾丸组织学。在暴露期结束时,SEF暴露和假暴露的群体之间没有发现显着差异。然而,通过透射电子显微镜进一步观察,SEF暴露后的心肌细胞线粒体中揭示了嵴损失。然而,线粒体损伤不影响精子运动,这可能会从能量供应的角度解释。也就是说,精子运动所需的大多数能量是通过在细胞质中发生的糖溶解而不是在线粒体中发生的氧化磷酸化。总之,本研究表明,暴露于SEF(56.3 +/- 1.4 kV / m,49天)对男性生殖能力有限。

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