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Exposure to 900 MHz electromagnetic fields activates the mkp-1/ERK pathway and causes blood-brain barrier damage and cognitive impairment in rats

机译:暴露于900 MHz电磁场会激活mkp-1 / ERK通路并引起大鼠血脑屏障损伤和认知障碍

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With the rapid increase in the number of mobile phone users, the potential adverse effects of the electromagnetic field radiation emitted by a mobile phone has become a serious concern. This study demonstrated, for the first time, the blood-brain barrier and cognitive changes in rats exposed to 900 MHz electromagnetic field (EMF) and aims to elucidate the potential molecular pathway underlying these changes. A total of 108 male Sprague-Dawley rats were exposed to a 900 MHz, 1 mW/cm(2) EMF or sham (unexposed) for 14 or 28 days (3 h per day). The specific energy absorption rate (SAR) varied between 0.016 (whole body) and 2 W/kg (locally in the head). In addition, the Morris water maze test was used to examine spatial memory performance determination. Morphological changes were investigated by examining ultrastructural changes in the hippocampus and cortex, and the Evans Blue assay was used to assess blood brain barrier (BBB) damage. Immunostaining was performed to identify heme oxygenase-1 (HO-1)-positive neurons and albumin extravasation detection. Western blot was used to determine HO-1 expression, phosphorylated ERK expression and the upstream mediator, mkp-1 expression. We found that the frequency of crossing platforms and the percentage of time spent in the target quadrant were lower in rats exposed to EMF for 28 days than in rats exposed to EMF for 14 days and unexposed rats. Moreover, 28 days of EMF exposure induced cellular edema and neuronal cell organelle degeneration in the rat. In addition, damaged BBB permeability, which resulted in albumin and HO-1 extravasation were observed in the hippocampus and cortex. Thus, for the first time, we found that EMF exposure for 28 days induced the expression of mkp-1, resulting in ERK dephosphorylation. Taken together, these results demonstrated that exposure to 900 MHz EMF radiation for 28 days can significantly impair spatial memory and damage BBB permeability in rat by activating the mkp-1/ERK pathway. (C) 2015 Elsevier B.V. All rights reserved.
机译:随着移动电话用户数量的迅速增加,移动电话发射的电磁场辐射的潜在不利影响已成为严重关注的问题。这项研究首次证明了暴露于900 MHz电磁场(EMF)的大鼠的血脑屏障和认知变化,旨在阐明这些变化背后的潜在分子途径。总共108只雄性Sprague-Dawley大鼠暴露于900 MHz,1 mW / cm(2)的EMF或假手术(未暴露)持续14或28天(每天3小时)。比能量吸收率(SAR)在0.016(全身)和2 W / kg(局部在头部)之间变化。此外,莫里斯水迷宫测试用于检查空间记忆性能的确定。通过检查海马和皮层的超微结构变化来研究形态学变化,并使用伊文思蓝分析法评估血脑屏障(BBB)损伤。进行免疫染色以鉴定血红素加氧酶-1(HO-1)阳性神经元和白蛋白外渗检测。用蛋白质印迹法测定HO-1表达,磷酸化ERK表达和上游介体mkp-1表达。我们发现,暴露于EMF 28天的大鼠的交叉平台频率和在目标象限中所花费的时间百分比要低于暴露于EMF 14天和未暴露的大鼠。此外,EMF暴露28天会诱发大鼠细胞水肿和神经元细胞器变性。此外,在海马和皮质中观察到受损的BBB通透性,导致白蛋白和HO-1渗出。因此,我们首次发现暴露28天的EMF诱导了mkp-1的表达,从而导致ERK去磷酸化。综上所述,这些结果表明,暴露于900 MHz EMF辐射28天会通过激活mkp-1 / ERK途径显着削弱大鼠的空间记忆力并损害BBB通透性。 (C)2015 Elsevier B.V.保留所有权利。

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