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Original

EXPOSURE TO 50 HZ ELECTROMAGNETIC FIELDS INDUCES THE PHOSPHORYLATION AND ACTIVITY OF STRESS-ACTIVATED PROTEIN KINASE IN CULTURED CELLS

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Pages 415-423 | Published online: 07 Jul 2009

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María Antonia Martínez, Alejandro Úbeda & María Ángeles Trillo. (2021) Role of NADPH oxidase in MAPK signaling activation by a 50 Hz magnetic field in human neuroblastoma cells. Electromagnetic Biology and Medicine 40:1, pages 103-116.
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Jinhong Wei, Junqing Sun, Hao Xu, Liang Shi, Lijun Sun & Jianbao Zhang. (2015) Effects of extremely low frequency electromagnetic fields on intracellular calcium transients in cardiomyocytes. Electromagnetic Biology and Medicine 34:1, pages 77-84.
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X. Q. Ke, W. J. Sun, D. Q. Lu, Y. T. Fu & H. Chiang. (2008) 50-Hz magnetic field induces EGF-receptor clustering and activates RAS. International Journal of Radiation Biology 84:5, pages 413-420.
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Articles from other publishers (10)

Soo Jeong Kim, Ye Won Jang, Kyung Eun Hyung, Da Kyoung Lee, Kee Hyeob Hyun, Seung Hwarn Jeong, Kyung Hoon Min, Wonku Kang, Ji Hoon Jeong, So-Young Park & Kwang Woo Hwang. (2017) Extremely low-frequency electromagnetic field exposure enhances inflammatory response and inhibits effect of antioxidant in RAW 264.7 cells. Bioelectromagnetics 38:5, pages 374-385.
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Claudine Seeliger, Karsten Falldorf, Jens Sachtleben & Martijn van Griensven. (2014) Low-frequency pulsed electromagnetic fields significantly improve time of closure and proliferation of human tendon fibroblasts. European Journal of Medical Research 19:1.
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Dong‐Dong Liu, Zhen Ren, Guang Yang, Qian‐Ru Zhao & Yan‐Ai Mei. (2014) Melatonin protects rat cerebellar granule cells against electromagnetic field‐induced increases in Na + currents through intracellular Ca 2+ release . Journal of Cellular and Molecular Medicine 18:6, pages 1060-1070.
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Yuqing Duan, Zhigao Wang, Haihui Zhang, Yuanqing He, Rong Fan, Yanxiang Cheng, Guibo Sun & Xiaobo Sun. (2014) Extremely low frequency electromagnetic field exposure causes cognitive impairment associated with alteration of the glutamate level, MAPK pathway activation and decreased CREB phosphorylation in mice hippocampus: reversal by procyanidins extracted from the lotus seedpod. Food & Function 5:9, pages 2289.
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Henrietta Nittby, Arne Brun, Susanne Strömblad, Mehri Kaviani Moghadam, Wenjun Sun, Lars Malmgren, Jacob Eberhardt, Bertil R. Persson & Leif G. Salford. (2011) Nonthermal GSM RF and ELF EMF effects upon rat BBB permeability. The Environmentalist 31:2, pages 140-148.
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Michal Cifra, Jeremy Z. Fields & Ashkan Farhadi. (2011) Electromagnetic cellular interactions. Progress in Biophysics and Molecular Biology 105:3, pages 223-246.
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J.F. Meyer, B. Wolf & G.W. Gross. (2009) Magnetic Stimulation and Depression of Mammalian Networks in Primary Neuronal Cell Cultures. IEEE Transactions on Biomedical Engineering 56:5, pages 1512-1523.
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A H Lacchini, M L Everington, A T Augousti & A J Walker. (2007) Use of C. Elegans as a model organism for sensing the effects of ELF-EMFs . Journal of Physics: Conference Series 76, pages 012027.
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Qunli Zeng, Xueqin Ke, Xiangwei Gao, Yiti Fu, Deqiang Lu, Huai Chiang & Zhengping Xu. (2006) Noise magnetic fields abolish the gap junction intercellular communication suppression induced by 50 hz magnetic fields. Bioelectromagnetics 27:4, pages 274-279.
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Jiliang Zhou, Gengdong Yao, Jingsong Zhang & Zongliang Chang. (2002) CREB DNA binding activation by a 50-Hz magnetic field in HL60 cells is dependent on extra- and intracellular Ca2+ but not PKA, PKC, ERK, or p38 MAPK. Biochemical and Biophysical Research Communications 296:4, pages 1013-1018.
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