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首页> 外文期刊>Bioelectromagnetics. >Exposure of rat brain to 915 MHz GSM microwaves induces changes in gene expression but not double stranded DNA breaks or effects on chromatin conformation.
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Exposure of rat brain to 915 MHz GSM microwaves induces changes in gene expression but not double stranded DNA breaks or effects on chromatin conformation.

机译:将大鼠大脑暴露于915 MHz GSM微波中会诱导基因表达发生变化,但不会引起双链DNA断裂或对染色质构象的影响。

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摘要

We investigated whether exposure of rat brain to microwaves (MWs) of global system for mobile communication (GSM) induces DNA breaks, changes in chromatin conformation and in gene expression. An exposure installation was used based on a test mobile phone employing a GSM signal at 915 MHz, all standard modulations included, output power level in pulses 2 W, specific absorption rate (SAR) 0.4 mW/g. Rats were exposed or sham exposed to MWs during 2 h. After exposure, cell suspensions were prepared from brain samples, as well as from spleen and thymus. For analysis of gene expression patterns, total RNA was extracted from cerebellum. Changes in chromatin conformation, which are indicative of stress response and genotoxic effects, were measured by the method of anomalous viscosity time dependencies (AVTD). DNA double strand breaks (DSBs) were analyzed by pulsed-field gel electrophoresis (PFGE). Effects of MW exposure were observed on neither conformation of chromatin nor DNA DSBs. Gene expression profiles were obtained by Affymetrix U34 GeneChips representing 8800 rat genes and analyzed with the Affymetrix Microarray Suite (MAS) 5.0 software. In cerebellum from all exposed animals, 11 genes were upregulated in a range of 1.34-2.74 fold and one gene was downregulated 0.48-fold (P < .0025). The induced genes encode proteins with diverse functions including neurotransmitter regulation, blood-brain barrier (BBB), and melatonin production. The data shows that GSM MWs at 915 MHz did not induce PFGE-detectable DNA double stranded breaks or changes in chromatin conformation, but affected expression of genes in rat brain cells.
机译:我们调查了大鼠大脑暴露于全球移动通信系统(GSM)的微波(MWs)中是否会诱导DNA断裂,染色质构象和基因表达改变。使用基于915 MHz GSM信号的测试移动电话的曝光设备,包括所有标准调制,脉冲输出功率2 W,比吸收率(SAR)0.4 mW / g。大鼠在2小时内暴露于MWs或假接触MWs。暴露后,从脑样本以及脾和胸腺制备细胞悬液。为了分析基因表达模式,从小脑提取总RNA。染色质构象变化指示应激反应和遗传毒性效应,是通过异常粘度时间依赖性(AVTD)方法进行测量的。 DNA双链断裂(DSBs)通过脉冲场凝胶电泳(PFGE)分析。观察到MW暴露对染色质构象和DNA DSB均没有影响。基因表达谱通过代表8800个大鼠基因的Affymetrix U34 GeneChips获得,并使用Affymetrix Microarray Suite(MAS)5.0软件进行分析。在所有暴露动物的小脑中,有11个基因被上调至1.34-2.74倍,一个基因被下调了0.48倍(P <.0025)。诱导的基因编码具有多种功能的蛋白质,包括神经递质调节,血脑屏障(BBB)和褪黑激素产生。数据显示,GSM MW在915 MHz时并未诱导PFGE可检测的DNA双链断裂或染色质构象改变,但影响了大鼠脑细胞中基因的表达。

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