首页> 外文期刊>Journal of chemical neuroanatomy >Maternal exposure to a continuous 900-MHz electromagnetic field provokes neuronal loss and pathological changes in cerebellum of 32-day-old female rat offspring
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Maternal exposure to a continuous 900-MHz electromagnetic field provokes neuronal loss and pathological changes in cerebellum of 32-day-old female rat offspring

机译:孕妇暴露于连续的900MHz电磁场会引起32日龄雌性大鼠后代小脑的神经元丢失和病理变化

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Large numbers of people are unknowingly exposed to electromagnetic fields (EMF) from wireless devices. Evidence exists for altered cerebellar development in association with prenatal exposure to EMF. However, insufficient information is still available regarding the effects of exposure to 900 megahertz (MHz) EMF during the prenatal period on subsequent postnatal cerebellar development. This study was planned to investigate the 32-day-old female rat pup cerebellum following exposure to 900 MHz EMF during the prenatal period using stereological and histopathological evaluation methods. Pregnant rats were divided into control, sham and EMF groups. Pregnant EMF group (PEMFG) rats were exposed to 900 MHz EMF for 1 h inside an EMF cage during days 13-21 of pregnancy. Pregnant sham group (PSG) rats were also placed inside the EMF cage during days 13-21 of pregnancy for 1 h, but were not exposed to any EMF. No procedure was performed on the pregnant control group (PCG) rats. Newborn control group (CG) rats were obtained from the PCG mothers, newborn sham group (SG) rats from the PSG and newborn EMF group (EMFG) rats from the PEMFG rats. The cerebellums of the newborn female rats were extracted on postnatal day 32. The number of Purkinje cells was estimated stereologically, and histopathological evaluations were also performed on cerebellar sections. Total Purkinje cell numbers calculated using stereological analysis were significantly lower in EMFG compared to CG (p < 0.05) and SG (p < 0.05). Additionally, some pathological changes such as pyknotic neurons with dark cytoplasm were observed in EMFG sections under light microscopy. In conclusion, our study results show that prenatal exposure to EMF affects the development of Purkinje cells in the female rat cerebellum and that the consequences of this pathological effect persist after the postnatal period. (C) 2015 Elsevier B.V. All rights reserved.
机译:大量的人在不知不觉中暴露于无线设备的电磁场(EMF)。有证据表明小脑发育与产前暴露于EMF有关。但是,关于产前暴露于900兆赫兹(MHz)的EMF对随后的产后小脑发育的影响,仍然缺乏足够的信息。这项研究计划使用体视学和组织病理学评估方法,对产前暴露于900 MHz EMF后的32日龄雌性大鼠小脑进行调查。将怀孕的大鼠分为对照组,假组和EMF组。在怀孕的第13-21天,将怀孕的EMF组(PEMFG)大鼠在EMF笼子内暴露于900 MHz EMF 1小时。在怀孕的第13-21天,还将假假组(PSG)大鼠置于EMF笼中1小时,但未暴露于任何EMF。怀孕对照组(PCG)大鼠未进行任何手术。从PCG母亲中获得新生对照组(CG),从PSG中获得新生假组(SG),从PEMFG中获得新生EMF组(EMFG)。在出生后第32天抽取新生雌性大鼠的小脑。从体视学上评估Purkinje细胞的数量,并在小脑切片上进行组织病理学评估。与CG(p <0.05)和SG(p <0.05)相比,EMFG中通过立体分析计算得出的总Purkinje细胞数明显更低。另外,在光学显微镜下,在EMFG切片中观察到一些病理变化,例如具有深色细胞质的致密性神经元。总之,我们的研究结果表明,产前暴露于EMF会影响雌性大鼠小脑Purkinje细胞的发育,并且这种病理效应的后果在产后一直持续。 (C)2015 Elsevier B.V.保留所有权利。

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