Biophysics Dept., Cerrahpasa Medical Faculty, Istanbul University, Istanbul, Turkey.
Biophysics Dept., Faculty of Medicine, Istanbul Aydın University, Istanbul, Turkey.
J Trace Elem Med Biol. 2018 Dec;50:572-579. doi: 10.1016/j.jtemb.2018.04.008. Epub 2018 Apr 13.
There is a widespread use of 2.4 GHz electromagnetic radiation emitting devices especially in communication and education. Recent studies show the adverse effects of electromagnetic fields (EMF) such as oxidative stress, cellular damage and apoptosis on tissues. Selenium (Se) has an antioxidant properties by inhibiting oxidative damage being within the structure of antioxidant enzymes like glutathione peroxidase (GSH-Px) and it has also regulatory function for cell cycle and apoptosis. The aim of this study was to investigate the effect of Se on 2.4 GHz frequency EMF exposed human embryonic kidney cells (HEK293) by means of alterations in apoptotic and oxidative stress parameters. Our study was planned as control, EMF, 100 nM Se + EMF, 200 nM Se + EMF groups. EMF groups were exposed to 2.4 GHz EMF for 1 h, element groups were incubated with two different doses of Se added cell culture medium for 48 h before EMF exposure. MDA levels were significantly higher whereas SOD and GSH-Px activities were significantly lower in EMF compared to control. 100 and 200 nM Se + EMF application decreased MDA levels, increased SOD and GSH-Px activities than EMF. Apoptosis and caspase-3 were statistically significantly higher but bcl-2 was lower in EMF than control. Apoptosis and caspase-3 were lower in 100 and 200 nM Se + EMF, although bcl-2 were higher than EMF. In conclusion, Se has protective effects against 2.4 GHz EMF-induced oxidative stress by reducing lipid peroxidation, regulating SOD and GSH-Px activity. Also, Se has inhibitory effect on 2.4 GHz EMF induced apoptosis by increasing the expression of anti-apoptotic protein bcl-2 and suppressing apoptosis regulatory protein caspase-3.
目前,2.4GHz 电磁辐射发射装置在通讯和教育领域得到了广泛应用。最近的研究表明,电磁场(EMF)会对组织产生氧化应激、细胞损伤和细胞凋亡等不良影响。硒(Se)作为一种抗氧化剂,可通过抑制氧化损伤来发挥作用,其结构存在于谷胱甘肽过氧化物酶(GSH-Px)等抗氧化酶中,还具有调节细胞周期和细胞凋亡的功能。本研究旨在通过改变凋亡和氧化应激参数,来探讨 Se 对 2.4GHz 频率 EMF 暴露的人胚肾细胞(HEK293)的影响。本研究分为对照组、EMF 组、100nM Se+EMF 组和 200nM Se+EMF 组。EMF 组接受 2.4GHz EMF 照射 1 小时,元素组在 EMF 暴露前 48 小时将两种不同剂量的 Se 加入细胞培养基中孵育。与对照组相比,EMF 组 MDA 水平显著升高,SOD 和 GSH-Px 活性显著降低。与 EMF 组相比,100nM 和 200nM Se+EMF 应用可降低 MDA 水平,增加 SOD 和 GSH-Px 活性。与对照组相比,EMF 组细胞凋亡和 caspase-3 水平显著升高,但 bcl-2 水平显著降低。与 EMF 组相比,100nM 和 200nM Se+EMF 组细胞凋亡和 caspase-3 水平降低,bcl-2 水平升高。总之,Se 通过降低脂质过氧化、调节 SOD 和 GSH-Px 活性,对 2.4GHz EMF 诱导的氧化应激具有保护作用。此外,Se 通过增加抗凋亡蛋白 bcl-2 的表达和抑制凋亡调节蛋白 caspase-3,对 2.4GHz EMF 诱导的细胞凋亡具有抑制作用。