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Therapeutic and space radiation exposure of mouse brain causes impaired DNA repair response and premature senescence by chronic oxidant production

Despite recent epidemiological evidences linking radiation exposure and a number of human ailments including cancer, mechanistic understanding of how radiation inflicts long-term changes in cerebral cortex, which regulates important neuronal functions, remains obscure. The current study dissects mol...

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Autores principales: Suman, Shubhankar, Rodriguez, Olga C., Winters, Thomas A., Fornace, Albert J., Albanese, Chris, Datta, Kamal
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3796214/
https://www.ncbi.nlm.nih.gov/pubmed/23928451
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author Suman, Shubhankar
Rodriguez, Olga C.
Winters, Thomas A.
Fornace, Albert J.
Albanese, Chris
Datta, Kamal
author_facet Suman, Shubhankar
Rodriguez, Olga C.
Winters, Thomas A.
Fornace, Albert J.
Albanese, Chris
Datta, Kamal
author_sort Suman, Shubhankar
collection PubMed
description Despite recent epidemiological evidences linking radiation exposure and a number of human ailments including cancer, mechanistic understanding of how radiation inflicts long-term changes in cerebral cortex, which regulates important neuronal functions, remains obscure. The current study dissects molecular events relevant to pathology in cerebral cortex of 6 to 8 weeks old female C57BL/6J mice two and twelve months after exposure to a γ radiation dose (2 Gy) commonly employed in fractionated radiotherapy. For a comparative study, effects of 1.6 Gy heavy ion(56)Fe radiation on cerebral cortex were also investigated, which has implications for space exploration. Radiation exposure was associated with increased chronic oxidative stress, oxidative DNA damage, lipid peroxidation, and apoptosis. These results when considered with decreased cortical thickness, activation of cell-cycle arrest pathway, and inhibition of DNA double strand break repair factors led us to conclude to our knowledge for the first time that radiation caused aging-like pathology in cerebral cortical cells and changes after heavy ion radiation were more pronounced than γ radiation.
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spelling pubmed-37962142013-10-15 Therapeutic and space radiation exposure of mouse brain causes impaired DNA repair response and premature senescence by chronic oxidant production Suman, Shubhankar Rodriguez, Olga C. Winters, Thomas A. Fornace, Albert J. Albanese, Chris Datta, Kamal Aging (Albany NY) Research Paper Despite recent epidemiological evidences linking radiation exposure and a number of human ailments including cancer, mechanistic understanding of how radiation inflicts long-term changes in cerebral cortex, which regulates important neuronal functions, remains obscure. The current study dissects molecular events relevant to pathology in cerebral cortex of 6 to 8 weeks old female C57BL/6J mice two and twelve months after exposure to a γ radiation dose (2 Gy) commonly employed in fractionated radiotherapy. For a comparative study, effects of 1.6 Gy heavy ion(56)Fe radiation on cerebral cortex were also investigated, which has implications for space exploration. Radiation exposure was associated with increased chronic oxidative stress, oxidative DNA damage, lipid peroxidation, and apoptosis. These results when considered with decreased cortical thickness, activation of cell-cycle arrest pathway, and inhibition of DNA double strand break repair factors led us to conclude to our knowledge for the first time that radiation caused aging-like pathology in cerebral cortical cells and changes after heavy ion radiation were more pronounced than γ radiation. Impact Journals LLC 2013-08-06 /pmc/articles/PMC3796214/ /pubmed/23928451 Text en Copyright: © 2013 Suman et al. http://creativecommons.org/licenses/by/2.5/ 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 credited
spellingShingle Research Paper
Suman, Shubhankar
Rodriguez, Olga C.
Winters, Thomas A.
Fornace, Albert J.
Albanese, Chris
Datta, Kamal
Therapeutic and space radiation exposure of mouse brain causes impaired DNA repair response and premature senescence by chronic oxidant production
title Therapeutic and space radiation exposure of mouse brain causes impaired DNA repair response and premature senescence by chronic oxidant production
title_full Therapeutic and space radiation exposure of mouse brain causes impaired DNA repair response and premature senescence by chronic oxidant production
title_fullStr Therapeutic and space radiation exposure of mouse brain causes impaired DNA repair response and premature senescence by chronic oxidant production
title_full_unstemmed Therapeutic and space radiation exposure of mouse brain causes impaired DNA repair response and premature senescence by chronic oxidant production
title_short Therapeutic and space radiation exposure of mouse brain causes impaired DNA repair response and premature senescence by chronic oxidant production
title_sort therapeutic and space radiation exposure of mouse brain causes impaired dna repair response and premature senescence by chronic oxidant production
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3796214/
https://www.ncbi.nlm.nih.gov/pubmed/23928451
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