Graduate Institute of Biomedical Sciences, China Medical University, Taichung 40402, Taiwan.
Institute of Biotechnology, National Taiwan University, Taipei 10617, Taiwan.
J Reprod Dev. 2021 Dec 14;67(6):392-401. doi: 10.1262/jrd.2021-074. Epub 2021 Oct 23.
Our living environment has been full of electromagnetic radiation (EMR) due to the prevailing electronic devices and equipment. Intermediate frequency electromagnetic field (IF-EMF) or waves constitute a significant part of EMR; therefore, an increasing number of household electrical appliances have become a source of IF-EMF, and concerns about IF-EMF on health are gaining more attention. However, little information is available about its impact on female reproductive traits, such as germ cell viability and early embryonic development, particularly at the cellular and molecular levels. In this study, we used porcine oocytes as a model system to explore the effect of IF-EMF at various intensities on the in vitro maturation (IVM) of oocytes and their subsequent embryonic development. Our results showed that no difference in oocyte maturation rates was detected among groups, but the cleavage and blastocyst rates of parthenotes derived from EMF-treated oocytes decreased with the weaker IF-EMF intensity (25 and 50 Gauss) groups compared to the control group (P < 0.05). For cytoplasmic maturation, the weaker IF-EMF intensity groups also showed a peripheral pattern of mitochondrial distribution resembling that of immature oocytes and increased autophagy activity. No obvious differences in cytoskeletal distribution and total cell numbers of blastocysts were investigated in the four IF-EMF treatments compared to those in the control group. Although the underlying mechanism associated with EMF effects on oocytes and embryos is still elusive, we have demonstrated that low intensity IF-EMF exerts harmful effects on porcine oocytes during the maturation stage, carrying over such effects to their subsequent embryonic development.
由于普遍存在的电子设备和仪器,我们的生活环境充满了电磁辐射(EMR)。中频电磁场(IF-EMF)或波构成了 EMR 的重要组成部分;因此,越来越多的家用电器成为 IF-EMF 的来源,对 IF-EMF 对健康的影响的关注也越来越多。然而,关于其对女性生殖特征的影响,如生殖细胞活力和早期胚胎发育的信息很少,特别是在细胞和分子水平上。在这项研究中,我们使用猪卵母细胞作为模型系统,探讨了不同强度的 IF-EMF 对卵母细胞体外成熟(IVM)及其随后胚胎发育的影响。我们的结果表明,各组卵母细胞成熟率无差异,但 EMF 处理组卵母细胞来源的孤雌激活胚胎的分裂和囊胚率与对照组相比,随着 IF-EMF 强度(25 和 50 高斯)的减弱而降低(P < 0.05)。对于细胞质成熟,较弱的 IF-EMF 强度组也表现出类似于不成熟卵母细胞的外周线粒体分布模式,并增加了自噬活性。与对照组相比,在四个 IF-EMF 处理组中,囊胚的细胞骨架分布和总细胞数没有明显差异。尽管与 EMF 对卵母细胞和胚胎的影响相关的潜在机制仍不清楚,但我们已经证明,低强度 IF-EMF 在成熟阶段对猪卵母细胞产生有害影响,并将这种影响传递到其随后的胚胎发育中。