Zhang Shu-zhi, Yao Geng-dong, Lu De-qiang, Chiang Huai, Xu Zheng-ping
Hangzhou Prevention and Health Protection Department, Hangzhou 310014, China.
Zhonghua Lao Dong Wei Sheng Zhi Ye Bing Za Zhi. 2008 Aug;26(8):449-52.
To investigate the changes of gene expression in rat neuron induced by 1.8 GHz radiofrequency electromagnetic fields (RF EMF) to screen for RF EMF-responsive genes and the effect of different exposure times and modes on the gene expression in neuron.
Total RNA was extracted immediately and purified from the primary culture of neurons after intermittent exposed or sham-exposed to a frequency of 1.8 GHz RF EMF for 24 hours at an average special absorption rate (SAR) of 2 W/kg. Affymetrix Rat Neurobiology U34 array was applied to investigate the changes of gene expression in rat neuron. Differentially expressed genes (Egr-1, Mbp and Plp) were further confirmed by semi-quantitative revere transcription polymerase chain reaction (RT PCR). The expression levels of Egr-1, Mbp and Plp were observed at different exposure times (6, 24 h) and modes (intermittent and continuous exposure).
Among 1200 candidate genes, 24 up-regulated and 10 down-regulated genes were found by using Affymetrix microarray suite software 5.0 which are associated with multiple cellular functions (cytoskeleton, signal transduction pathway, metabolism, etc.) after functional classification. Under 24 h and 6 h intermittent exposure, Egr-1 and Plp in experiment groups showed statistic significance (P < 0.05) compared with the control groups, while expression of Mbp did not change significantly (P > 0.05). After 24 h continuous exposure, Egr-1 and Mbp in experiment groups showed statistic significance (P < 0.05) compared with the control group, while expression of Plp did not change significantly (P > 0.05). Under the same exposure mode 6 h, expression of all the 3 genes did not change significantly. Different times (6, 24 h) and modes (intermittent and continuous exposure) of exposure exerted remarkable different influences on the expression of Egr-1, Mbp, Plp genes (P < 0.01).
The changes of many genes transcription were involved in the effect of 1.8 GHz RF EMF on rat neurons; Down-regulation of Egr-1 and up-regulation of Mbp, Plp indicated the negative effects of RF EMF on neurons; The effect of RF intermittent exposure on gene expression was more obvious than that of continuous exposure; The effect of 24 h RF exposure (both intermittent and continuous) on gene expression was more obvious than that of 6 h (both intermittent and continuous).
研究1.8 GHz射频电磁场(RF EMF)诱导大鼠神经元基因表达的变化,筛选RF EMF反应基因,以及不同暴露时间和模式对神经元基因表达的影响。
将原代培养的神经元以平均比吸收率(SAR)2 W/kg间歇暴露或假暴露于1.8 GHz RF EMF 24小时后,立即提取并纯化总RNA。应用Affymetrix大鼠神经生物学U34芯片研究大鼠神经元基因表达的变化。通过半定量逆转录聚合酶链反应(RT PCR)进一步验证差异表达基因(Egr-1、Mbp和Plp)。观察不同暴露时间(6、24小时)和模式(间歇和连续暴露)下Egr-1、Mbp和Plp的表达水平。
使用Affymetrix微阵列套件软件5.0在1200个候选基因中发现24个上调基因和10个下调基因,功能分类后这些基因与多种细胞功能(细胞骨架、信号转导通路、代谢等)相关。在24小时和6小时间歇暴露下,实验组的Egr-1和Plp与对照组相比有统计学意义(P<0.05),而Mbp的表达无明显变化(P>0.05)。连续暴露24小时后,实验组的Egr-1和Mbp与对照组相比有统计学意义(P<0.05),而Plp的表达无明显变化(P>0.05)。在相同的6小时暴露模式下,这3个基因的表达均无明显变化。不同时间(6、24小时)和模式(间歇和连续暴露)的暴露对Egr-1、Mbp、Plp基因的表达有显著不同的影响(P<0.01)。
1.8 GHz RF EMF对大鼠神经元的影响涉及多个基因转录的变化;Egr-1的下调以及Mbp、Plp的上调表明RF EMF对神经元有负面影响;RF间歇暴露对基因表达的影响比连续暴露更明显;RF暴露24小时(间歇和连续)对基因表达的影响比6小时(间歇和连续)更明显。