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极低频磁场对细胞增殖和基因表达的影响。

Effect of extremely low frequency magnetic fields on cell proliferation and gene expression.

作者信息

Lee Hyung Chul, Hong Mi-Na, Jung Seung Hee, Kim Bong Cho, Suh Young Ju, Ko Young-Gyu, Lee Yun-Sil, Lee Byeong-Yoon, Cho Yeun-Gyu, Myung Sung-Ho, Lee Jae-Seon

机构信息

Department of Biomedical Sciences, College of Medicine, Inha University, Incheon, Korea.

Research Center for Radio-Senescence, Korea Institute of Radiological and Medical Sciences, Seoul, Korea.

出版信息

Bioelectromagnetics. 2015 Oct;36(7):506-16. doi: 10.1002/bem.21932. Epub 2015 Aug 2.

Abstract

Owing to concerns regarding possible effects of extremely low frequency magnetic fields (ELF-MF) on human health, many studies have been conducted to elucidate whether ELF-MF can induce modifications in biological processes. Despite this, controversies regarding effects of ELF-MF are still rife. In this study, we investigated biological effects of ELF-MF on MCF10A, MCF7, Jurkat, and NIH3T3 cell lines. ELF-MF with a magnetic flux density of 1 mT at 60 Hz was employed to stimulate cells for 4 or 16 h, after which the effects of ELF-MF on cell proliferation, cell death, cell viability, and DNA synthesis rates were assessed. Whereas Jurkat and NIH3T3 cells showed no consistent variation in cell number, cell viability, and DNA synthesis rate, MCF10A and MCF7 cells showed consistent and significant decreases in cell number, cell viability, and DNA synthesis rates. However, there was no effect of ELF-MF on cell death in any of tested cell lines. Next, to investigate the effect of ELF-MF on gene expression, we exposed MCF7 cells to 2 mT at 60 Hz for 16 h and examined transcriptional responses by using gene expression array. We found a gene, PMAIP1, that exhibited statistically significant variation using two-fold cut-off criteria and certified its expression change by using semi-quantitative and quantitative reverse transcription polymerase chain reaction. From these results, we concluded that ELF-MF could induce the delay of cell cycle progression in MCF7 and MCF10A cells in a cell context-specific manner and could up-regulate PMAIP1 in MCF7 cells.

摘要

由于担心极低频磁场(ELF-MF)对人体健康可能产生的影响,人们进行了许多研究以阐明ELF-MF是否会引起生物过程的改变。尽管如此,关于ELF-MF影响的争议仍然普遍存在。在本研究中,我们调查了ELF-MF对MCF10A、MCF7、Jurkat和NIH3T3细胞系的生物学效应。采用磁通密度为1 mT、频率为60 Hz的ELF-MF刺激细胞4或16小时,之后评估ELF-MF对细胞增殖、细胞死亡、细胞活力和DNA合成速率的影响。Jurkat和NIH3T3细胞的细胞数量、细胞活力和DNA合成速率没有一致的变化,而MCF10A和MCF7细胞的细胞数量、细胞活力和DNA合成速率则出现了一致且显著的下降。然而,ELF-MF对任何测试细胞系的细胞死亡均无影响。接下来,为了研究ELF-MF对基因表达的影响,我们将MCF7细胞暴露于2 mT、60 Hz的环境中16小时,并使用基因表达阵列检测转录反应。我们发现一个名为PMAIP1的基因,其表达在采用两倍标准时呈现出具有统计学意义的变化,并通过半定量和定量逆转录聚合酶链反应验证了其表达变化。从这些结果中,我们得出结论,ELF-MF能够以细胞背景特异性的方式诱导MCF7和MCF10A细胞的细胞周期进程延迟,并能上调MCF7细胞中PMAIP1的表达。

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