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Effect of 900-MHz Electromagnetic Field on the Cerebellum: A Histopathological Investigation

OBJECTIVES: The currently widely used technological devices give rise to electromagnetic fields (EMFs) at various frequencies. Recent studies have reported that EMFs damage the central nervous system. The cerebellum is of considerable importance to human life due to its involvement in motor control,...

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Autores principales: Mercantepe, Tolga, Tümkaya, Levent, Gökçe, Mehmet Fatih, Topal, Zehra Suzan, Esmer, Erva
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Kare Publishing 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7315063/
https://www.ncbi.nlm.nih.gov/pubmed/32595386
http://dx.doi.org/10.14744/SEMB.2018.42275
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author Mercantepe, Tolga
Tümkaya, Levent
Gökçe, Mehmet Fatih
Topal, Zehra Suzan
Esmer, Erva
author_facet Mercantepe, Tolga
Tümkaya, Levent
Gökçe, Mehmet Fatih
Topal, Zehra Suzan
Esmer, Erva
author_sort Mercantepe, Tolga
collection PubMed
description OBJECTIVES: The currently widely used technological devices give rise to electromagnetic fields (EMFs) at various frequencies. Recent studies have reported that EMFs damage the central nervous system. The cerebellum is of considerable importance to human life due to its involvement in motor control, language, and cognitive-sensory functions. Damage occurring in the histological layers of the cerebellar cortex causes various neurological and psychiatric diseases, such as paralysis, tumor, autism, and schizophrenia. Our study involved a histopathological evaluation of the effects of communication systems’ standard 900-MHz EMF on the cerebellum. METHODS: Sprague–Dawley rats were assigned into two groups containing six animals each: control and EMF. The EMF group was exposed to a 24-h 900-MHz radiofrequency EMF over 20 days with a digital modulation signal generator installed in the middle of their cage. Ten days after EMF application, the rats were sacrificed by cervical dislocation under anesthesia induced with 50 mg/kg ketamine hydrochloride and 10 mg/kg intraperitoneal xylazine HC1. RESULTS: Intense caspase-3 expression was seen in the Purkinje cells and granular cells exposed to a 900-MHz frequency EMF (p<0.05). Pyknotic nuclei were notable in the Purkinje and granular cells exposed to a 900-MHz EMF. We also observed a decrease in the cytoplasm of the Purkinje and granular cells. Specimens from the EMF group exhibited decreases in the thickness of the molecular cell layer, Purkinje cell layer, and granular cell layer compared with those from the control group. However, the difference was not statistically significant (p>0.05). CONCLUSION: A 900-MHz EMF causes deleterious effects on the cerebellum by giving rise to apoptosis accompanied by caspase-3 expression in the Purkinje and granular cells in particular.
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spelling pubmed-73150632020-06-25 Effect of 900-MHz Electromagnetic Field on the Cerebellum: A Histopathological Investigation Mercantepe, Tolga Tümkaya, Levent Gökçe, Mehmet Fatih Topal, Zehra Suzan Esmer, Erva Sisli Etfal Hastan Tip Bul Original Research OBJECTIVES: The currently widely used technological devices give rise to electromagnetic fields (EMFs) at various frequencies. Recent studies have reported that EMFs damage the central nervous system. The cerebellum is of considerable importance to human life due to its involvement in motor control, language, and cognitive-sensory functions. Damage occurring in the histological layers of the cerebellar cortex causes various neurological and psychiatric diseases, such as paralysis, tumor, autism, and schizophrenia. Our study involved a histopathological evaluation of the effects of communication systems’ standard 900-MHz EMF on the cerebellum. METHODS: Sprague–Dawley rats were assigned into two groups containing six animals each: control and EMF. The EMF group was exposed to a 24-h 900-MHz radiofrequency EMF over 20 days with a digital modulation signal generator installed in the middle of their cage. Ten days after EMF application, the rats were sacrificed by cervical dislocation under anesthesia induced with 50 mg/kg ketamine hydrochloride and 10 mg/kg intraperitoneal xylazine HC1. RESULTS: Intense caspase-3 expression was seen in the Purkinje cells and granular cells exposed to a 900-MHz frequency EMF (p<0.05). Pyknotic nuclei were notable in the Purkinje and granular cells exposed to a 900-MHz EMF. We also observed a decrease in the cytoplasm of the Purkinje and granular cells. Specimens from the EMF group exhibited decreases in the thickness of the molecular cell layer, Purkinje cell layer, and granular cell layer compared with those from the control group. However, the difference was not statistically significant (p>0.05). CONCLUSION: A 900-MHz EMF causes deleterious effects on the cerebellum by giving rise to apoptosis accompanied by caspase-3 expression in the Purkinje and granular cells in particular. Kare Publishing 2018-06-01 /pmc/articles/PMC7315063/ /pubmed/32595386 http://dx.doi.org/10.14744/SEMB.2018.42275 Text en Copyright: © 2018 by The Medical Bulletin of Sisli Etfal Hospital http://creativecommons.org/licenses/by-nc/4.0/ This is an open access article under the CC BY-NC license (http://creativecommons.org/licenses/by-nc/4.0/).
spellingShingle Original Research
Mercantepe, Tolga
Tümkaya, Levent
Gökçe, Mehmet Fatih
Topal, Zehra Suzan
Esmer, Erva
Effect of 900-MHz Electromagnetic Field on the Cerebellum: A Histopathological Investigation
title Effect of 900-MHz Electromagnetic Field on the Cerebellum: A Histopathological Investigation
title_full Effect of 900-MHz Electromagnetic Field on the Cerebellum: A Histopathological Investigation
title_fullStr Effect of 900-MHz Electromagnetic Field on the Cerebellum: A Histopathological Investigation
title_full_unstemmed Effect of 900-MHz Electromagnetic Field on the Cerebellum: A Histopathological Investigation
title_short Effect of 900-MHz Electromagnetic Field on the Cerebellum: A Histopathological Investigation
title_sort effect of 900-mhz electromagnetic field on the cerebellum: a histopathological investigation
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7315063/
https://www.ncbi.nlm.nih.gov/pubmed/32595386
http://dx.doi.org/10.14744/SEMB.2018.42275
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