Suppr超能文献

[射频电磁场对哺乳动物精子发生的影响]

[Effects of radiofrequency electromagnetic fields on mammalian spermatogenesis].

作者信息

Susa Martina, Pavicić Ivan

机构信息

Institut za medicinska istraZivanja i medicinu rada, Zagreb.

出版信息

Arh Hig Rada Toksikol. 2007 Dec;58(4):449-59. doi: 10.2478/v10004-007-0038-y.

Abstract

This article reviews studies about the effects of radiofrequency electromagnetic (RF EM) fields on male reproductive system and reproductive health in mammals. According to current data, there are almost 4 million active mobile phone lines in Croatia while this number has risen to 2 billion in the world. Increased use of mobile technology raises scientific and public concern about possible hazardous effects of RF fields on human health. The effects of radiofrequencies on reproductive health and consequences for the offspring are still mainly unknown. A number of in vivo and in vitro studies indicated that RF fields could interact with charged intracellular macromolecular structures. Results of several laboratory studies on animal models showed how the RF fields could affect the mammalian reproductive system and sperm cells. Inasmuch as, in normal physiological conditions spermatogenesis is a balanced process of division, maturation and storage of cells, it is particularly vulnerable to the chemical and physical environmental stimuli. Especially sensitive could be the cytoskeleton, composed of charged proteins; actin, intermedial filaments and microtubules. Cytoskeleton is a functional and structural part of the cell that has important role in the sperm motility, and is actively involved in the morphologic changes that occur during mammalian spermiogenesis.

摘要

本文综述了关于射频电磁场(RF EM)对哺乳动物雄性生殖系统和生殖健康影响的研究。根据目前的数据,克罗地亚有近400万条活跃的移动电话线路,而全球这一数字已增至20亿。移动技术使用的增加引发了科学界和公众对射频场可能对人类健康产生有害影响的关注。射频对生殖健康的影响以及对后代的后果仍主要未知。一些体内和体外研究表明,射频场可能与细胞内带电的大分子结构相互作用。多项针对动物模型的实验室研究结果显示了射频场如何影响哺乳动物的生殖系统和精子细胞。由于在正常生理条件下,精子发生是细胞分裂、成熟和储存的平衡过程,它特别容易受到化学和物理环境刺激的影响。由带电蛋白质、肌动蛋白、中间丝和微管组成的细胞骨架可能尤为敏感。细胞骨架是细胞的功能和结构组成部分,在精子运动中起重要作用,并积极参与哺乳动物精子发生过程中发生的形态变化。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验