Literature DB >> 27001710

Effect of extremely low-frequency electromagnetic fields on antioxidant activity in the human keratinocyte cell line NCTC 2544.

Cinzia Calcabrini1, Umberto Mancini1, Roberta De Bellis1, Anna Rita Diaz1, Maddalena Martinelli1, Luigi Cucchiarini1, Piero Sestili1, Vilberto Stocchi1, Lucia Potenza1.   

Abstract

Some epidemiological studies have suggested possible associations between exposure to extremely low-frequency electromagnetic fields (ELF-EMFs) and various diseases. Recently, ELF-EMF has been considered as a therapeutic agent. To support ELF-EMF use in regenerative medicine, in particular in the treatment of skin injuries, we investigated whether significant cell damage occurs after ELF-EMF exposure. Reactive oxygen species (ROS) production was evaluated in the human keratinocyte exposed for 1 H to 50 Hz ELF-EMF in a range of field strengths from 0.25 to 2 G. Significant ROS increases resulted at 0.5 and 1 G and under these flux densities ROS production, glutathione content, antioxidant defense activity, and lipid peroxidation markers were assessed for different lengths of time. Analyzed parameters of antioxidant defense and membrane integrity showed a different trend at two selected magnetic fluxes, with a greater sensitivity of the cells exposed to 0.5 G, especially after 1 H. All significant alterations observed in the first 4 H of exposure reverted to controls 24 H after suggesting that under these conditions, ELF-EMF induces a slight oxidative stress that does not overwhelm the metabolic capacity of the cells or have a cytotoxic effect.
© 2016 International Union of Biochemistry and Molecular Biology, Inc.

Entities:  

Keywords:  antioxidant enzymes; extremely low-frequency electromagnetic fields; keratinocyte; lipid peroxidation; reactive oxygen species

Mesh:

Substances:

Year:  2016        PMID: 27001710     DOI: 10.1002/bab.1495

Source DB:  PubMed          Journal:  Biotechnol Appl Biochem        ISSN: 0885-4513            Impact factor:   2.431


  11 in total

Review 1.  DNMT1 and miRNAs: possible epigenetics footprints in electromagnetic fields utilization in oncology.

Authors:  Mohadeseh Shayeghan; Flora Forouzesh; Alireza Madjid Ansari; Mohammad Amin Javidi
Journal:  Med Oncol       Date:  2021-09-08       Impact factor: 3.064

2.  Cardiac Cell Exposure to Electromagnetic Fields: Focus on Oxdative Stress and Apoptosis.

Authors:  Ilenia Martinelli; Mathieu Cinato; Sokhna Keita; Dimitri Marsal; Valentin Antoszewski; Junwu Tao; Oksana Kunduzova
Journal:  Biomedicines       Date:  2022-04-19

Review 3.  Magnetic Fields and Reactive Oxygen Species.

Authors:  Huizhen Wang; Xin Zhang
Journal:  Int J Mol Sci       Date:  2017-10-18       Impact factor: 5.923

Review 4.  Effects of electromagnetic fields exposure on the antioxidant defense system.

Authors:  Elfide Gizem Kıvrak; Kıymet Kübra Yurt; Arife Ahsen Kaplan; Işınsu Alkan; Gamze Altun
Journal:  J Microsc Ultrastruct       Date:  2017-08-02

Review 5.  Role of Mitochondria in the Oxidative Stress Induced by Electromagnetic Fields: Focus on Reproductive Systems.

Authors:  Silvano Junior Santini; Valeria Cordone; Stefano Falone; Mahmut Mijit; Carla Tatone; Fernanda Amicarelli; Giovanna Di Emidio
Journal:  Oxid Med Cell Longev       Date:  2018-11-08       Impact factor: 6.543

Review 6.  Extremely Low-Frequency Magnetic Field as a Stress Factor-Really Detrimental?-Insight into Literature from the Last Decade.

Authors:  Angelika Klimek; Justyna Rogalska
Journal:  Brain Sci       Date:  2021-01-31

Review 7.  Magnetic Fields and Cancer: Epidemiology, Cellular Biology, and Theranostics.

Authors:  Massimo E Maffei
Journal:  Int J Mol Sci       Date:  2022-01-25       Impact factor: 5.923

Review 8.  Magnetic field effects in biology from the perspective of the radical pair mechanism.

Authors:  Hadi Zadeh-Haghighi; Christoph Simon
Journal:  J R Soc Interface       Date:  2022-08-03       Impact factor: 4.293

9.  Extremely low frequency pulsed electromagnetic fields cause antioxidative defense mechanisms in human osteoblasts via induction of •O2- and H2O2.

Authors:  Sabrina Ehnert; Anne-Kristin Fentz; Anna Schreiner; Johannes Birk; Benjamin Wilbrand; Patrick Ziegler; Marie K Reumann; Hongbo Wang; Karsten Falldorf; Andreas K Nussler
Journal:  Sci Rep       Date:  2017-11-06       Impact factor: 4.379

10.  Power frequency magnetic field promotes a more malignant phenotype in neuroblastoma cells via redox-related mechanisms.

Authors:  S Falone; S Santini; V Cordone; P Cesare; A Bonfigli; M Grannonico; G Di Emidio; C Tatone; M Cacchio; F Amicarelli
Journal:  Sci Rep       Date:  2017-09-13       Impact factor: 4.379

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