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Effects of universal mobile telecommunications system (UMTS) electromagnetic fields on the blood-brain barrier in vitro

机译:通用移动通信系统(UMTS)电磁场对体外血脑屏障的影响

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The extensive use of mobile phone communication has raised public concerns about adverse health effects of radio-frequency (RF) electromagnetic fields (EMFs) in recent years. A central issue in this discussion is the question whether EMFs enhance the permeability of the blood-brain barrier (BBB). Here we report an investigation on the influence of a generic UNITS (Universal Mobile Telecommunications System) signal on barrier tightness, transport processes and the morphology of porcine brain microvascular endothelial cell cultures (PBEC) serving as an in vitro model of the BBB. An exposure device with integrated online monitoring system was developed for simultaneous exposure and measuring of transendothelial electrical resistance (TEER) to determine the tightness of the BBB. PBEC were exposed continuously for up to 84 h at an average electric-field strength of 3.4-34 V/m (maximum 1.8 W/kg) ensuring athermal conditions. We did not find any evidence of RF-field-induced disturbance of the function of the BBB. After and during exposure, the tightness of the BBB quantified by C-14-sucrose and serum albumin permeation as well as by TEER remained unchanged compared to sham-exposed cultures. Permeation of transporter substrates at the BBB as well as the localization and integrity of the tight-junction proteins occludin and ZO1 were not affected either. (c) 2005 by Radiation Research Society.
机译:近年来,移动电话通信的广泛使用引起了公众对射频(RF)电磁场(EMF)的不利健康影响的关注。讨论中的核心问题是EMF是否会增强血脑屏障(BBB)的渗透性。在这里,我们报告了有关通用UNITS(通用移动电信系统)信号对屏障紧密性,运输过程以及用作BBB体外模型的猪脑微血管内皮细胞培养物(PBEC)形态的影响的调查。开发了带有集成在线监控系统的曝光设备,用于同时曝光和测量跨内皮电阻(TEER)以确定BBB的密封性。 PBEC在平均电场强度为3.4-34 V / m(最大1.8 W / kg)下连续暴露长达84 h,以确保无热条件。我们没有发现任何证据表明射频场引起的血脑屏障功能紊乱。暴露后和暴露期间,与假暴露培养相比,通过C-14蔗糖和血清白蛋白渗透以及TEER量化的BBB的紧密度保持不变。 BBB转运蛋白底物的渗透以及紧密连接蛋白occludin和ZO1的定位和完整性也不受影响。 (c)辐射研究学会,2005年。

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