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首页> 外文期刊>Cell biology international. >An in vitro study of the effects of exposure to a GSM signal in two human cell lines: monocytic U937 and neuroblastoma SK-N-SH.
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An in vitro study of the effects of exposure to a GSM signal in two human cell lines: monocytic U937 and neuroblastoma SK-N-SH.

机译:暴露于两种人细胞系中的GSM信号的影响的体外研究:单核U937和神经母细胞瘤SK-N-SH。

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摘要

The use of mobile phones is increasing, which also increases the population's exposure to global system of mobile communications (GSM) signals. Questions of safety and possible biological effects are of concern and to date, remain largely unanswered. In order to examine possible biological effects of a GSM-like signal at a cellular level, we exposed two human cell lines (one of neuronal (SK-N-SH) and the other of monocytoid (U937) origin) to a 900 MHz RF signal, pulsed at 217 Hz, producing a specific absorption rate (SAR) of 0.2 W/kg. Putative effects were assessed by comparing radiofrequency-exposed cells to sham-exposed cells using a variety of assay techniques. For the cell line SK-N-SH, effects were specifically assessed by gene microarray, followed by real-time PCR of the genes of interest, Western blot analysis was used to measure heat shock protein levels, and flow cytometry to measure cell cycle distributions and apoptosis. Effects of radiofrequency on the cell line U937 were assessed by cell viability and cell cycle analysis. From our study of these two cell lines, we found no significant difference between sham-exposed versus radiofrequency-exposed cells in any of the assays or conditions examined.
机译:移动电话的使用在增加,这也增加了人们对全球移动通信(GSM)信号系统的接触。安全性和可能的​​生物效应问题是令人关注的问题,迄今为止,仍未得到解答。为了在细胞水平上检查类似GSM信号的可能的生物学效应,我们将两种人类细胞系(一种是神经元(SK-N-SH),另一种是单核细胞(U937))暴露于900 MHz RF信号以217 Hz脉冲,产生0.2 W / kg的比吸收率(SAR)。通过使用多种分析技术将暴露于射频下的细胞与暴露于深处的细胞进行比较,评估了推定的效果。对于细胞系SK-N-SH,通过基因芯片专门评估效果,然后对目的基因进行实时PCR,Western印迹分析用于测量热休克蛋白水平,流式细胞仪用于测量细胞周期分布和凋亡。通过细胞活力和细胞周期分析评估了射频对细胞系U937的影响。从我们对这两种细胞系的研究中,我们发现,在任何检测的方法或条件下,假暴露与射频暴露细胞之间均无显着差异。

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