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Effects of electromagnetic fields exposure on the antioxidant defense system

Technological devices have become essential components of daily life. However, their deleterious effects on the body, particularly on the nervous system, are well known. Electromagnetic fields (EMF) have various chemical effects, including causing deterioration in large molecules in cells and imbala...

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Autores principales: Kıvrak, Elfide Gizem, Yurt, Kıymet Kübra, Kaplan, Arife Ahsen, Alkan, Işınsu, Altun, Gamze
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Medknow Publications & Media Pvt Ltd 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6025786/
https://www.ncbi.nlm.nih.gov/pubmed/30023251
http://dx.doi.org/10.1016/j.jmau.2017.07.003
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author Kıvrak, Elfide Gizem
Yurt, Kıymet Kübra
Kaplan, Arife Ahsen
Alkan, Işınsu
Altun, Gamze
author_facet Kıvrak, Elfide Gizem
Yurt, Kıymet Kübra
Kaplan, Arife Ahsen
Alkan, Işınsu
Altun, Gamze
author_sort Kıvrak, Elfide Gizem
collection PubMed
description Technological devices have become essential components of daily life. However, their deleterious effects on the body, particularly on the nervous system, are well known. Electromagnetic fields (EMF) have various chemical effects, including causing deterioration in large molecules in cells and imbalance in ionic equilibrium. Despite being essential for life, oxygen molecules can lead to the generation of hazardous by-products, known as reactive oxygen species (ROS), during biological reactions. These reactive oxygen species can damage cellular components such as proteins, lipids and DNA. Antioxidant defense systems exist in order to keep free radical formation under control and to prevent their harmful effects on the biological system. Free radical formation can take place in various ways, including ultraviolet light, drugs, lipid oxidation, immunological reactions, radiation, stress, smoking, alcohol and biochemical redox reactions. Oxidative stress occurs if the antioxidant defense system is unable to prevent the harmful effects of free radicals. Several studies have reported that exposure to EMF results in oxidative stress in many tissues of the body. Exposure to EMF is known to increase free radical concentrations and traceability and can affect the radical couple recombination. The purpose of this review was to highlight the impact of oxidative stress on antioxidant systems. Abbreviations: EMF, electromagnetic fields; RF, radiofrequency; ROS, reactive oxygen species; GSH, glutathione; GPx, glutathione peroxidase; GR, glutathione reductase; GST, glutathione S-transferase; CAT, catalase; SOD, superoxide dismutase; HSP, heat shock protein; EMF/RFR, electromagnetic frequency and radiofrequency exposures; ELF-EMFs, exposure to extremely low frequency; MEL, melatonin; FA, folic acid; MDA, malondialdehyde.
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spelling pubmed-60257862018-07-18 Effects of electromagnetic fields exposure on the antioxidant defense system Kıvrak, Elfide Gizem Yurt, Kıymet Kübra Kaplan, Arife Ahsen Alkan, Işınsu Altun, Gamze J Microsc Ultrastruct Review Technological devices have become essential components of daily life. However, their deleterious effects on the body, particularly on the nervous system, are well known. Electromagnetic fields (EMF) have various chemical effects, including causing deterioration in large molecules in cells and imbalance in ionic equilibrium. Despite being essential for life, oxygen molecules can lead to the generation of hazardous by-products, known as reactive oxygen species (ROS), during biological reactions. These reactive oxygen species can damage cellular components such as proteins, lipids and DNA. Antioxidant defense systems exist in order to keep free radical formation under control and to prevent their harmful effects on the biological system. Free radical formation can take place in various ways, including ultraviolet light, drugs, lipid oxidation, immunological reactions, radiation, stress, smoking, alcohol and biochemical redox reactions. Oxidative stress occurs if the antioxidant defense system is unable to prevent the harmful effects of free radicals. Several studies have reported that exposure to EMF results in oxidative stress in many tissues of the body. Exposure to EMF is known to increase free radical concentrations and traceability and can affect the radical couple recombination. The purpose of this review was to highlight the impact of oxidative stress on antioxidant systems. Abbreviations: EMF, electromagnetic fields; RF, radiofrequency; ROS, reactive oxygen species; GSH, glutathione; GPx, glutathione peroxidase; GR, glutathione reductase; GST, glutathione S-transferase; CAT, catalase; SOD, superoxide dismutase; HSP, heat shock protein; EMF/RFR, electromagnetic frequency and radiofrequency exposures; ELF-EMFs, exposure to extremely low frequency; MEL, melatonin; FA, folic acid; MDA, malondialdehyde. Medknow Publications & Media Pvt Ltd 2017 2017-08-02 /pmc/articles/PMC6025786/ /pubmed/30023251 http://dx.doi.org/10.1016/j.jmau.2017.07.003 Text en Copyright: © 2017 Saudi Society of Microscopes http://creativecommons.org/licenses/by-nc-nd/4.0 This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Review
Kıvrak, Elfide Gizem
Yurt, Kıymet Kübra
Kaplan, Arife Ahsen
Alkan, Işınsu
Altun, Gamze
Effects of electromagnetic fields exposure on the antioxidant defense system
title Effects of electromagnetic fields exposure on the antioxidant defense system
title_full Effects of electromagnetic fields exposure on the antioxidant defense system
title_fullStr Effects of electromagnetic fields exposure on the antioxidant defense system
title_full_unstemmed Effects of electromagnetic fields exposure on the antioxidant defense system
title_short Effects of electromagnetic fields exposure on the antioxidant defense system
title_sort effects of electromagnetic fields exposure on the antioxidant defense system
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6025786/
https://www.ncbi.nlm.nih.gov/pubmed/30023251
http://dx.doi.org/10.1016/j.jmau.2017.07.003
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