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Articles

Effects of extremely low-frequency pulsed electromagnetic fields on morphological and biochemical properties of human breast carcinoma cells (T47D)

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Pages 425-435 | Published online: 07 Jun 2012

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Guangzhou An, Meilun Shen, Juan Guo, Xia Miao, Yuntao Jing, Keying Zhang, Ling Guo & Junling Xing. (2021) Effects of pulsed electromagnetic fields on tumor cell viability: a meta-analysis of in vitro randomized controlled experiments. Electromagnetic Biology and Medicine 40:4, pages 467-474.
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Henry Lai. (2019) Exposure to Static and Extremely-Low Frequency Electromagnetic Fields and Cellular Free Radicals. Electromagnetic Biology and Medicine 38:4, pages 231-248.
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Anna Koziorowska, Maria Romerowicz-Misielak, Przemysław Sołek & Marek Koziorowski. (2018) Extremely low frequency variable electromagnetic fields affect cancer and noncancerous cells in vitro differently: Preliminary study. Electromagnetic Biology and Medicine 37:1, pages 35-42.
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Henry C. Lai, Ho Wing Chan & Narendra P. Singh. (2016) Effects of radiation from a radiofrequency identification (RFID) microchip on human cancer cells. International Journal of Radiation Biology 92:3, pages 156-161.
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Hongen Lei, Yongde Xu, Ruili Guan, Meng Li, Yu Hui, Zhezhu Gao, Bicheng Yang & Zhongcheng Xin. (2015) Effect of gyromagnetic fields on human prostatic adenocarcinoma cells. OncoTargets and Therapy 8, pages 3489-3497.
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Michele Destefanis, Marta Viano, Christian Leo, Gianpiero Gervino, Antonio Ponzetto & Francesca Silvagno. (2015) Extremely low frequency electromagnetic fields affect proliferation and mitochondrial activity of human cancer cell lines. International Journal of Radiation Biology 91:12, pages 964-972.
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Shashank Hambarde, Jeanne M. Manalo, David S. Baskin, Martyn A. Sharpe & Santosh A. Helekar. (2023) Spinning magnetic field patterns that cause oncolysis by oxidative stress in glioma cells. Scientific Reports 13:1.
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Ge Zhang, Xinli Liu, Yali Liu, Shilong Zhang, Tongyao Yu, Xiaoxia Chai, Jinliang He, Dachuan Yin & Chenyan Zhang. (2023) The effect of magnetic fields on tumor occurrence and progression: Recent advances. Progress in Biophysics and Molecular Biology 179, pages 38-50.
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Maria Elexpuru-Zabaleta, Raffaella Lazzarini, Maria Fiorella Tartaglione, Francesco Piva, Veronica Ciarapica, Elena Marinelli Busilacchi, Antonella Poloni, Matteo Valentino, Lory Santarelli & Massimo Bracci. (2022) A 50 Hz magnetic field influences the viability of breast cancer cells 96 h after exposure. Molecular Biology Reports 50:2, pages 1005-1017.
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Mengqian Huang, Parker Li, Feng Chen, Zehao Cai, Shoubo Yang, Xiaohong Zheng & Wenbin Li. (2022) Is extremely low frequency pulsed electromagnetic fields applicable to gliomas? A literature review of the underlying mechanisms and application of extremely low frequency pulsed electromagnetic fields. Cancer Medicine 12:3, pages 2187-2198.
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Hadi Zadeh-Haghighi & Christoph Simon. (2022) Magnetic field effects in biology from the perspective of the radical pair mechanism. Journal of The Royal Society Interface 19:193.
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Diana I. Aparicio‐Bautista, Daniel Chávez‐Valenzuela, Giovanni Ambriz‐Álvarez, Teodoro Córdova‐Fraga, Juan P. Reyes‐Grajeda, Óscar Medina‐Contreras, Fanny Rodríguez‐Cruz, Francisco García‐Sierra, Patricia Zúñiga‐Sánchez, Antonio M. Gutiérrez‐Gutiérrez, Jaime Arellanes‐Robledo & Gustavo Basurto‐Islas. (2022) An Extremely Low‐Frequency Vortex Magnetic Field Modifies Protein Expression, Rearranges the Cytoskeleton, and Induces Apoptosis of a Human Neuroblastoma Cell Line. Bioelectromagnetics 43:4, pages 225-244.
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Mike Y. Chen, Jing Li, Nianli Zhang, Erik I. Waldorff, James T. Ryaby, Philip Fedor, Yongsheng Jia & Yujun Wang. (2022) In Vitro and in Vivo Study of the Effect of Osteogenic Pulsed Electromagnetic Fields on Breast and Lung Cancer Cells. Technology in Cancer Research & Treatment 21, pages 153303382211246.
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Mahsa Mansourian & Ahmad Shanei. (2021) Evaluation of Pulsed Electromagnetic Field Effects: A Systematic Review and Meta-Analysis on Highlights of Two Decades of Research In Vitro Studies. BioMed Research International 2021, pages 1-22.
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Aoshu Xu, Qian Wang & Tingting Lin. (2020) Low-Frequency Magnetic Fields (LF-MFs) Inhibit Proliferation by Triggering Apoptosis and Altering Cell Cycle Distribution in Breast Cancer Cells. International Journal of Molecular Sciences 21:8, pages 2952.
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Loredana Bergandi, Umberto Lucia, Giulia Grisolia, Riccarda Granata, Iacopo Gesmundo, Antonio Ponzetto, Emilio Paolucci, Romano Borchiellini, Ezio Ghigo & Francesca Silvagno. (2019) The extremely low frequency electromagnetic stimulation selective for cancer cells elicits growth arrest through a metabolic shift. Biochimica et Biophysica Acta (BBA) - Molecular Cell Research 1866:9, pages 1389-1397.
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Somoshree Sengupta & Vamsi K. Balla. (2018) A review on the use of magnetic fields and ultrasound for non-invasive cancer treatment. Journal of Advanced Research 14, pages 97-111.
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Huizhen Wang & Xin Zhang. (2017) Magnetic Fields and Reactive Oxygen Species. International Journal of Molecular Sciences 18:10, pages 2175.
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P.R. Doyon & O. Johansson. (2017) Electromagnetic fields may act via calcineurin inhibition to suppress immunity, thereby increasing risk for opportunistic infection: Conceivable mechanisms of action. Medical Hypotheses 106, pages 71-87.
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Umberto Lucia, Giulia Grisolia, Antonio Ponzetto & Francesca Silvagno. (2017) An engineering thermodynamic approach to select the electromagnetic wave effective on cell growth. Journal of Theoretical Biology 429, pages 181-189.
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Maria Vadalà, Julio Cesar Morales‐Medina, Annamaria Vallelunga, Beniamino Palmieri, Carmen Laurino & Tommaso Iannitti. (2016) Mechanisms and therapeutic effectiveness of pulsed electromagnetic field therapy in oncology. Cancer Medicine 5:11, pages 3128-3139.
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Carly A. Buckner, Alison L. Buckner, Stan A. Koren, Michael A. Persinger & Robert M. Lafrenie. (2015) Inhibition of Cancer Cell Growth by Exposure to a Specific Time-Varying Electromagnetic Field Involves T-Type Calcium Channels. PLOS ONE 10:4, pages e0124136.
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Ibrahim Alsaeed, Faisal Al‐Somali, Lama Sakhnini, Omar S. Aljarallah, Rayan M.M. Hamdan, Saleh A. Bubishate, Ziyab Khan Sarfaraz & Amer Kamal. (2014) Autism‐relevant social abnormalities in mice exposed perinatally to extremely low frequency electromagnetic fields. International Journal of Developmental Neuroscience 37:1, pages 58-64.
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