暴露于 900 MHz 射频的未成熟雄性大鼠发育迟缓

Raphaël Bodin, Franck Robidel, Stéphanie Rodrigues, A. Lecomte, A. Villégier
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摘要

人们暴露在 900 MHz 移动电话电磁场中已有约 30 年时间。关于 900 MHz 非热射频(RF)连续波暴露在生物发育过程中的潜在影响,未成熟啮齿动物实验仍未得出结论。在此,我们测试了一个假设,即母鼠暴露在国际非电离辐射防护委员会为人类规定的职业(Oc)限值(0.4 W/kg)的全身特定吸收率(wbSAR)下,会出现发育障碍,而暴露在公共(Pu)限值(0.08 W/kg)下则影响较小。估计的 wbSAR 值为 0.4 W/kg,以模拟工作母亲(OcM 暴露)和 0.08 W/kg,以模拟非工作母亲,即公众(PuM 暴露)。这项产前和产后研究首次比较了公共和职业暴露限值对大鼠幼崽身体发育的影响。研究人员定期记录幼鼠出生后的体重和身长,同时记录发育标志物的年龄。在 OcM 组和 PuM 组中,雄性新生仔鼠的耳廓较早脱落,眼睛较早睁开,但只有 PuM 组的门牙较早萌出。暴露于 OcM 的雄性幼鼠直到青春期的体重都较低。暴露于 OcM 和 PuM 的雌性后代的羽耳脱落和眼睛睁开的时间较早,但体重相近。这些数据表明,当母鼠每天接受900兆赫的连续电波时,工人和非工人(公众)的后代大鼠的发育时间会发生变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Delayed Growth in Immature Male Rats Exposed to 900 MHz Radiofrequency
People have been exposed to the 900 MHz mobile phone electromagnetic field for approximately 30 years. There is still no conclusion from immature rodent experiments regarding the potential effects of nonthermal radiofrequency (RF) 900 MHz continuous wave exposure during biological development. Here, we test the hypothesis that mother rats exposed at a whole-body specific absorption rate (wbSAR) occupational (Oc) limit of the International Commission on Non-Ionizing Radiation Protection for humans (0.4 W/kg) will show impairments in development, with less effect at the public (Pu) limit (0.08 W/kg). The wbSAR was estimated at 0.4 W/kg to mimic working mothers (OcM exposure) and 0.08 W/kg for non-working mothers, i.e., public (PuM exposure). This pre- and postnatal study is the first to compare public and occupational exposure limits on rat pup physical development. Litter endpoints and the descendants’ body weights and lengths were recorded regularly from birth concomitantly with the age of developmental landmarks. Male neonates showed earlier pinna ear detachment and earlier eye opening in both the OcM and PuM groups, but earlier incisor eruption only in the PuM group. The OcM-exposed males showed lower body weight as juveniles until adolescence. The OcM- and PuM-exposed descendant females showed earlier pinna ear detachment and eye opening with similar body weight. These data suggest variations in the development time of descendant rats when the mother rats received daily 900 MHz continuous waves at human limits for workers and non-workers (public).
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