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首页> 外文期刊>Bioelectromagnetics: Journal of the Bioelectromagnetics Society >Effects of exposure to a 1950 MHz radio frequency field on expression of Hsp70 and Hsp27 in human glioma cells.
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Effects of exposure to a 1950 MHz radio frequency field on expression of Hsp70 and Hsp27 in human glioma cells.

机译:暴露于 1950 MHz 射频场对人神经胶质瘤细胞中 Hsp70 和 Hsp27 表达的影响。

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摘要

Human glioma MO54 cells were used to investigate whether radio frequency (RF) field exposure could activate stress response genes. Cells were exposed to continuous wave 1950 MHz or sham conditions for up to 2 h. Specific absorption rates (SARs) were 1, 2, and 10 W/kg. For the cell growth experiment, cell numbers were counted at 0-4 days after exposure. Expression of Hsp27 and Hsp70, as well as the level of phosphorylated Hsp27 ((78)Ser) protein, was determined by Western blotting. It was found that sham exposed and RF exposed cells demonstrated a similar growth pattern up to 4 days after RF field exposure. RF field exposure at both 2 and 10 W/kg did not affect the growth of MO54 cells. In addition, there were no significant differences in protein expression of Hsp27 and Hsp70 between sham exposed and RF exposed cells at a SAR of 1, 2, or 10 W/kg for 1 and 2 h. However, exposure to RF field at a SAR of 10 W/kg for 1 and 2 h decreased the protein level of phosphorylated Hsp27 ((78)Ser) significantly. Ourresults suggest that although exposure to a 1950 MHz RF field has no effect on cell proliferation and expression of Hsp 27 and Hsp70, it may inhibit the phosphorylation of Hsp27 at Serine 78 in MO54 cells. Bioelectromagnetics 26:251-257, 2005. (c) 2005 Wiley-Liss, Inc.
机译:使用人神经胶质瘤 MO54 细胞研究射频 (RF) 场暴露是否可以激活应激反应基因。将细胞暴露于连续波1950 MHz或假条件下长达2小时。比吸收率 (SAR) 分别为 1、2 和 10 W/kg。对于细胞生长实验,在暴露后 0-4 天计数细胞数。通过蛋白质印迹法测定 Hsp27 和 Hsp70 的表达以及磷酸化 Hsp27 ((78)Ser) 蛋白的水平。结果发现,假暴露细胞和射频暴露细胞在射频场暴露后长达 4 天内表现出相似的生长模式。2 W/kg 和 10 W/kg 的射频场暴露不影响 MO54 细胞的生长。此外,在1、2或10 W/kg的SAR下,假暴露细胞和RF暴露细胞之间的Hsp27和Hsp70蛋白表达在1、2或2 h内没有显著差异。然而,暴露于SAR为10 W/kg的RF场1和2小时,磷酸化Hsp27((78)Ser)的蛋白水平显着降低。我们的结果表明,虽然暴露于 1950 MHz 射频场对细胞增殖和 Hsp 27 和 Hsp70 的表达没有影响,但它可能会抑制 MO54 细胞中 Hsp27 在丝氨酸 78 位点的磷酸化。生物电磁学 26:251-257, 2005.(c) 2005 Wiley-Liss, Inc.

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