Cargando…

Genotoxicity Induced by Foetal and Infant Exposure to Magnetic Fields and Modulation of Ionising Radiation Effects

BACKGROUND: Few studies have investigated the toxicity and genotoxicity of extremely low frequency magnetic fields (ELF-MF) during prenatal and neonatal development. These phases of life are characterized by cell proliferation and differentiation, which might make them sensitive to environmental str...

Descripción completa

Detalles Bibliográficos
Autores principales: Udroiu, Ion, Antoccia, Antonio, Tanzarella, Caterina, Giuliani, Livio, Pacchierotti, Francesca, Cordelli, Eugenia, Eleuteri, Patrizia, Villani, Paola, Sgura, Antonella
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4641635/
https://www.ncbi.nlm.nih.gov/pubmed/26559811
http://dx.doi.org/10.1371/journal.pone.0142259
_version_ 1782400228804001792
author Udroiu, Ion
Antoccia, Antonio
Tanzarella, Caterina
Giuliani, Livio
Pacchierotti, Francesca
Cordelli, Eugenia
Eleuteri, Patrizia
Villani, Paola
Sgura, Antonella
author_facet Udroiu, Ion
Antoccia, Antonio
Tanzarella, Caterina
Giuliani, Livio
Pacchierotti, Francesca
Cordelli, Eugenia
Eleuteri, Patrizia
Villani, Paola
Sgura, Antonella
author_sort Udroiu, Ion
collection PubMed
description BACKGROUND: Few studies have investigated the toxicity and genotoxicity of extremely low frequency magnetic fields (ELF-MF) during prenatal and neonatal development. These phases of life are characterized by cell proliferation and differentiation, which might make them sensitive to environmental stressors. Although in vitro evidences suggest that ELF-MF may modify the effects of ionizing radiation, no research has been conducted so far in vivo on the genotoxic effects of ELF-MF combined with X-rays. AIM AND METHODS: Aim of this study was to investigate in somatic and germ cells the effects of chronic ELF-MF exposure from mid gestation until weaning, and any possible modulation produced by ELF-MF exposure on ionizing radiation-induced damage. Mice were exposed to 50 Hz, 65 μT magnetic field, 24 hours/day, for a total of 30 days, starting from 12 days post-conception. Another group was irradiated with 1 Gy X-rays immediately before ELF-MF exposure, other groups were only X-irradiated or sham-exposed. Micronucleus test on blood erythrocytes was performed at multiple times from 1 to 140 days after birth. Additionally, 42 days after birth, genotoxic and cytotoxic effects on male germ cells were assessed by comet assay and flow cytometric analysis. RESULTS: ELF-MF exposure had no teratogenic effect and did not affect survival, growth and development. The micronucleus test indicated that ELF-MF induced a slight genotoxic damage only after the maximum exposure time and that this effect faded away in the months following the end of exposure. ELF-MF had no effects on ionizing radiation (IR)-induced genotoxicity in erythrocytes. Differently, ELF–MF appeared to modulate the response of male germ cells to X-rays with an impact on proliferation/differentiation processes. These results point to the importance of tissue specificity and development on the impact of ELF-MF on the early stages of life and indicate the need of further research on the molecular mechanisms underlying ELF-MF biological effects.
format Online
Article
Text
id pubmed-4641635
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-46416352015-11-18 Genotoxicity Induced by Foetal and Infant Exposure to Magnetic Fields and Modulation of Ionising Radiation Effects Udroiu, Ion Antoccia, Antonio Tanzarella, Caterina Giuliani, Livio Pacchierotti, Francesca Cordelli, Eugenia Eleuteri, Patrizia Villani, Paola Sgura, Antonella PLoS One Research Article BACKGROUND: Few studies have investigated the toxicity and genotoxicity of extremely low frequency magnetic fields (ELF-MF) during prenatal and neonatal development. These phases of life are characterized by cell proliferation and differentiation, which might make them sensitive to environmental stressors. Although in vitro evidences suggest that ELF-MF may modify the effects of ionizing radiation, no research has been conducted so far in vivo on the genotoxic effects of ELF-MF combined with X-rays. AIM AND METHODS: Aim of this study was to investigate in somatic and germ cells the effects of chronic ELF-MF exposure from mid gestation until weaning, and any possible modulation produced by ELF-MF exposure on ionizing radiation-induced damage. Mice were exposed to 50 Hz, 65 μT magnetic field, 24 hours/day, for a total of 30 days, starting from 12 days post-conception. Another group was irradiated with 1 Gy X-rays immediately before ELF-MF exposure, other groups were only X-irradiated or sham-exposed. Micronucleus test on blood erythrocytes was performed at multiple times from 1 to 140 days after birth. Additionally, 42 days after birth, genotoxic and cytotoxic effects on male germ cells were assessed by comet assay and flow cytometric analysis. RESULTS: ELF-MF exposure had no teratogenic effect and did not affect survival, growth and development. The micronucleus test indicated that ELF-MF induced a slight genotoxic damage only after the maximum exposure time and that this effect faded away in the months following the end of exposure. ELF-MF had no effects on ionizing radiation (IR)-induced genotoxicity in erythrocytes. Differently, ELF–MF appeared to modulate the response of male germ cells to X-rays with an impact on proliferation/differentiation processes. These results point to the importance of tissue specificity and development on the impact of ELF-MF on the early stages of life and indicate the need of further research on the molecular mechanisms underlying ELF-MF biological effects. Public Library of Science 2015-11-11 /pmc/articles/PMC4641635/ /pubmed/26559811 http://dx.doi.org/10.1371/journal.pone.0142259 Text en © 2015 Udroiu et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Udroiu, Ion
Antoccia, Antonio
Tanzarella, Caterina
Giuliani, Livio
Pacchierotti, Francesca
Cordelli, Eugenia
Eleuteri, Patrizia
Villani, Paola
Sgura, Antonella
Genotoxicity Induced by Foetal and Infant Exposure to Magnetic Fields and Modulation of Ionising Radiation Effects
title Genotoxicity Induced by Foetal and Infant Exposure to Magnetic Fields and Modulation of Ionising Radiation Effects
title_full Genotoxicity Induced by Foetal and Infant Exposure to Magnetic Fields and Modulation of Ionising Radiation Effects
title_fullStr Genotoxicity Induced by Foetal and Infant Exposure to Magnetic Fields and Modulation of Ionising Radiation Effects
title_full_unstemmed Genotoxicity Induced by Foetal and Infant Exposure to Magnetic Fields and Modulation of Ionising Radiation Effects
title_short Genotoxicity Induced by Foetal and Infant Exposure to Magnetic Fields and Modulation of Ionising Radiation Effects
title_sort genotoxicity induced by foetal and infant exposure to magnetic fields and modulation of ionising radiation effects
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4641635/
https://www.ncbi.nlm.nih.gov/pubmed/26559811
http://dx.doi.org/10.1371/journal.pone.0142259
work_keys_str_mv AT udroiuion genotoxicityinducedbyfoetalandinfantexposuretomagneticfieldsandmodulationofionisingradiationeffects
AT antocciaantonio genotoxicityinducedbyfoetalandinfantexposuretomagneticfieldsandmodulationofionisingradiationeffects
AT tanzarellacaterina genotoxicityinducedbyfoetalandinfantexposuretomagneticfieldsandmodulationofionisingradiationeffects
AT giulianilivio genotoxicityinducedbyfoetalandinfantexposuretomagneticfieldsandmodulationofionisingradiationeffects
AT pacchierottifrancesca genotoxicityinducedbyfoetalandinfantexposuretomagneticfieldsandmodulationofionisingradiationeffects
AT cordellieugenia genotoxicityinducedbyfoetalandinfantexposuretomagneticfieldsandmodulationofionisingradiationeffects
AT eleuteripatrizia genotoxicityinducedbyfoetalandinfantexposuretomagneticfieldsandmodulationofionisingradiationeffects
AT villanipaola genotoxicityinducedbyfoetalandinfantexposuretomagneticfieldsandmodulationofionisingradiationeffects
AT sguraantonella genotoxicityinducedbyfoetalandinfantexposuretomagneticfieldsandmodulationofionisingradiationeffects