Martínez María Antonia, Úbeda Alejandro, Cid María Antonia, Trillo María Ángeles
Servicio de Investigación-BEM, Hospital Ramón y Cajal - IRYCIS, Madrid, Spain.
Cell Physiol Biochem. 2012;29(5-6):675-86. doi: 10.1159/000178457. Epub 2012 May 11.
A number of studies have reported that extremely low frequency magnetic fields (ELF-MF) can modulate proliferative processes in vitro; however, the transduction mechanisms implicated in such phenomena remain to be identified. The present study was aimed to determine whether a 50 Hz, 100 μT MF can induce cell proliferation in the human neuroblastoma line NB69, and whether the signaling pathway MAPK-ERK1/2 (Mitogen-Activated Protein Kinase - Extracellular-Signal-Regulated Kinase 1 and 2) is involved in that proliferative response. The cultures were exposed intermittently or continuously to the MF for a 63-hour duration. The continuous treatment did not induce significant changes in cell proliferation. In contrast, intermittent exposure caused statistically significant increase in the percent of cells in phase S of the cell cycle, followed by a significant increase in cell number. The intermittent treatment also induced an early, transient and repetitive activation of ERK1/2 that could be involved in the proliferative effects. In fact, both the proliferative response and the repeated activation of ERK1/2 were blocked by PD98059, the specific inhibitor of MEK (ERK kinases 1 and 2). Taken together, the described results indicate that a 50 Hz, 100 μT MF can stimulate proliferation in NB69 cells by triggering MAPK-ERK1/ 2 signaling at each of the "On" periods of an intermittent exposure.
多项研究报告称,极低频磁场(ELF-MF)可在体外调节增殖过程;然而,与此类现象相关的转导机制仍有待确定。本研究旨在确定50Hz、100μT的磁场是否能诱导人神经母细胞瘤细胞系NB69增殖,以及丝裂原活化蛋白激酶-细胞外信号调节激酶1/2(MAPK-ERK1/2)信号通路是否参与该增殖反应。将细胞培养物间歇性或连续性暴露于该磁场中63小时。连续处理未引起细胞增殖的显著变化。相反,间歇性暴露导致细胞周期S期细胞百分比出现统计学上的显著增加,随后细胞数量显著增加。间歇性处理还诱导了ERK1/2的早期、短暂且重复性激活,这可能与增殖效应有关。事实上,增殖反应和ERK1/2的重复性激活均被MEK(ERK激酶1和2)的特异性抑制剂PD98059阻断。综上所述,上述结果表明,50Hz、100μT的磁场可通过在间歇性暴露的每个“开启”时段触发MAPK-ERK1/2信号传导来刺激NB69细胞增殖。