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首页> 外文期刊>Journal of chemical neuroanatomy >A histopathological and biochemical evaluation of oxidative injury in the sciatic nerves of male rats exposed to a continuous 900-megahertz electromagnetic field throughout all periods of adolescence
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A histopathological and biochemical evaluation of oxidative injury in the sciatic nerves of male rats exposed to a continuous 900-megahertz electromagnetic field throughout all periods of adolescence

机译:在整个青春期整个时期暴露于连续900兆赫电磁场的雄性大鼠坐骨神经中甲酰损伤的组织病理学和生化评价

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摘要

The effects on human health of the electromagnetic field (EMF) emitted by mobile phones, used by approximately 7 billion people worldwide, have become an important subject for scientific research. Studies have suggested that the EMF emitted by mobile phones can cause oxidative stress in different tissues and age groups. Young people in adolescence, a time period when risky behaviors and dependences increase, use mobile phones more than adults. The EMF emitted by mobile phones, which are generally carried in the pocket or in bags when not in use, will very probably affect the sciatic nerve. No previous study has investigated the effect of mobile phone use in adolescence on peripheral nerve. This study was planned accordingly. Twenty-four male Sprague Dawley rats aged 21 days were divided equally into control (CGr), Sham (SGr) and EMF (EMFGr) groups. No procedure was performed on CGr rats. EMFGr were exposed to the effect of a 900-megahertz (MHz) EMF for 1 h at the same time every day between postnatal days 21-59 (the entire adolescent period) inside a cage in the EMF apparatus. SGr rats were placed inside the cage for 1 h every day without being exposed to EMF. All rats were sacrificed at the end of the study period, and 1 cm sections of sciatic nerve were extracted. Malondialdehyde (MDA), glutathione, catalase (CAT) superoxide dismutase (SOD) values were investigated biochemically in half of the right sciatic nerve tissues. The other halves of the nerve tissues were subjected to routine histopathological tissue procedures, sectioned and stained with hematoxylin and eosin (H&E) and Masson's trichrome. Histopathological evaluation of slides stained with Masson's "trichrome and H&E revealed a normal appearance in Schwann cells and axons in all groups. However, there was marked thickening in the epineurium of sciatic nerves from EMFGr rats. MDA, SOD and CAT levels were higher in EMFGr than in CGr and SGr at biochemical analyses. Apoptotic index (AI) analysis revealed a significant increase in the number of TUNEL (+) cells when EMFGr was compared with CGr and SGr. In conclusion, our study results suggest that continuous exposure to a 900-MHz EMF for 1 h throughout adolescence can cause oxidative injury and thickening in the epineurium in the sciatic nerve in male rats.
机译:移动电话发出的电磁场(EMF)对人类健康的影响已成为全球约70亿人,已成为科研的重要主题。研究表明,手机发出的EMF可导致不同组织和年龄组中的氧化应激。青春期的青少年,风险行为和依赖的时间段增加,使用移动电话比成年人更多。由移动电话发出的EMF,通常在口袋或袋中不使用时,将极其可能影响坐骨神经。没有先前的研究已经调查了移动电话在白周期对周围神经的影响。该研究是相应的。 24岁24岁的男性Sprague Dawley大鼠同等地分为对照(CGR),假(SGR)和EMF(EMFGR)组。在CGR大鼠上没有进行程序。 EMFGR在后期21-59(整个青少年)之间的每天在EMF装置中的笼内的同时暴露于900兆赫(MHz)EMF的效果。每天将SGR大鼠置于笼内1小时,而不会暴露于EMF。在研究期结束时处死所有大鼠,并提取1cm的坐骨神经部分。丙二醛(MDA),谷胱甘肽,过氧化氢酶(CAT)超氧化物歧化酶(SOD)值在右侧坐姿神经组织的一半中进行了生物化学。神经组织的其他一半进行常规组织病理组织程序,用苏木精和曙红(H&E)和Masson的richrome染色。用Masson的“richrome和H&E染色的载玻片的组织病理学评估显示了施曼细胞和所有组中的轴突中的正常外观。然而,来自Emfgr大鼠的坐骨神经坐落片中标记为增厚。EMFGR的MDA,SOD和猫水平较高比在生化分析中的cgr和sgr。凋亡指数(ai)分析显示出EMFGR与CGR和SGR将EMFGR进行的TUNEL(+)细胞数量显着增加。总之,我们的研究结果表明,连续接触900在整个青春期的-MHz EMF持续1小时可导致雄性大鼠坐骨神经中的氧化性损伤和增厚。

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