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Oxidative stress response in SH-SY5Y cells exposed to short-term 1800 MHz radiofrequency radiation

机译:暴露于短期1800 MHz射频辐射的SH-SY5Y细胞的氧化应激反应

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The exact mechanism that could explain the effects of radiofrequency (RF) radiation exposure at non-thermal level is still unknown. Increasing evidence suggests a possible involvement of reactive oxygen species (ROS) and development of oxidative stress. To test the proposed hypothesis, human neuroblastoma cells (SH-SY5Y) were exposed to 1800MHz short-term RF exposure for 10, 30 and 60 minutes. Electric field strength within Gigahertz Transverse Electromagnetic cell (GTEM) was 30V m(-1) and specific absorption rate (SAR) was calculated to be 1.6W kg(-1). Cellular viability was measured by MTT assay and level of ROS was determined by fluorescent probe 2,7-dichlorofluorescin diacetate. Concentrations of malondialdehyde and protein carbonyls were used to assess lipid and protein oxidative damage and antioxidant activity was evaluated by measuring concentrations of total glutathione (GSH). After radiation exposure, viability of irradiated cells remained within normal physiological values. Significantly higher ROS level was observed for every radiation exposure time. After 60min of exposure, the applied radiation caused significant lipid and protein damage. The highest GSH concentration was detected after 10 minute-exposure. The results of our study showed enhanced susceptibility of SH-SY5Y cells for development of oxidative stress even after short-term RF exposure.
机译:仍然可以解释在非热水平下解释射频(RF)辐射暴露影响的确切机制尚不清楚。越来越多的证据表明活性氧(ROS)可能参与了氧化应激的发展。为了检验所提出的假设,将人类神经母细胞瘤细胞(SH-SY5Y)暴露于1800MHz短期RF暴露10、30和60分钟。千兆赫横向电磁电池(GTEM)内的电场强度为30V m(-1),比吸收率(SAR)计算为1.6W kg(-1)。通过MTT测定法测量细胞存活力,并通过荧光探针2,7-二氯荧光素二乙酸酯测定ROS水平。丙二醛和蛋白质羰基的浓度用于评估脂质和蛋白质的氧化损伤,并通过测量总谷胱甘肽(GSH)的浓度评估抗氧化活性。放射线照射后,被照射细胞的活力保持在正常生理值范围内。在每个辐射暴露时间观察到明显更高的ROS水平。暴露60分钟后,所施加的辐射导致明显的脂质和蛋白质损伤。暴露10分钟后检测到最高GSH浓度。我们的研究结果表明,即使在短期RF暴露后,SH-SY5Y细胞对氧化应激的敏感性也增强了。

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