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Fractionated Radiation Exposure of Rat Spinal Cords Leads to Latent Neuro-Inflammation in Brain, Cognitive Deficits, and Alterations in Apurinic Endonuclease 1

Ionizing radiation causes degeneration of myelin, the insulating sheaths of neuronal axons, leading to neurological impairment. As radiation research on the central nervous system has predominantly focused on neurons, with few studies addressing the role of glial cells, we have focused our present r...

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Autores principales: Suresh Kumar, M. A., Peluso, Michael, Chaudhary, Pankaj, Dhawan, Jasbeer, Beheshti, Afshin, Manickam, Krishnan, Thapar, Upasna, Pena, Louis, Natarajan, Mohan, Hlatky, Lynn, Demple, Bruce, Naidu, Mamta
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4514622/
https://www.ncbi.nlm.nih.gov/pubmed/26208353
http://dx.doi.org/10.1371/journal.pone.0133016
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author Suresh Kumar, M. A.
Peluso, Michael
Chaudhary, Pankaj
Dhawan, Jasbeer
Beheshti, Afshin
Manickam, Krishnan
Thapar, Upasna
Pena, Louis
Natarajan, Mohan
Hlatky, Lynn
Demple, Bruce
Naidu, Mamta
author_facet Suresh Kumar, M. A.
Peluso, Michael
Chaudhary, Pankaj
Dhawan, Jasbeer
Beheshti, Afshin
Manickam, Krishnan
Thapar, Upasna
Pena, Louis
Natarajan, Mohan
Hlatky, Lynn
Demple, Bruce
Naidu, Mamta
author_sort Suresh Kumar, M. A.
collection PubMed
description Ionizing radiation causes degeneration of myelin, the insulating sheaths of neuronal axons, leading to neurological impairment. As radiation research on the central nervous system has predominantly focused on neurons, with few studies addressing the role of glial cells, we have focused our present research on identifying the latent effects of single/ fractionated -low dose of low/ high energy radiation on the role of base excision repair protein Apurinic Endonuclease-1, in the rat spinal cords oligodendrocyte progenitor cells’ differentiation. Apurinic endonuclease-1 is predominantly upregulated in response to oxidative stress by low- energy radiation, and previous studies show significant induction of Apurinic Endonuclease-1 in neurons and astrocytes. Our studies show for the first time, that fractionation of protons cause latent damage to spinal cord architecture while fractionation of HZE ((28)Si) induce increase in APE1 with single dose, which then decreased with fractionation. The oligodendrocyte progenitor cells differentiation was skewed with increase in immature oligodendrocytes and astrocytes, which likely cause the observed decrease in white matter, increased neuro-inflammation, together leading to the observed significant cognitive defects.
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spelling pubmed-45146222015-07-29 Fractionated Radiation Exposure of Rat Spinal Cords Leads to Latent Neuro-Inflammation in Brain, Cognitive Deficits, and Alterations in Apurinic Endonuclease 1 Suresh Kumar, M. A. Peluso, Michael Chaudhary, Pankaj Dhawan, Jasbeer Beheshti, Afshin Manickam, Krishnan Thapar, Upasna Pena, Louis Natarajan, Mohan Hlatky, Lynn Demple, Bruce Naidu, Mamta PLoS One Research Article Ionizing radiation causes degeneration of myelin, the insulating sheaths of neuronal axons, leading to neurological impairment. As radiation research on the central nervous system has predominantly focused on neurons, with few studies addressing the role of glial cells, we have focused our present research on identifying the latent effects of single/ fractionated -low dose of low/ high energy radiation on the role of base excision repair protein Apurinic Endonuclease-1, in the rat spinal cords oligodendrocyte progenitor cells’ differentiation. Apurinic endonuclease-1 is predominantly upregulated in response to oxidative stress by low- energy radiation, and previous studies show significant induction of Apurinic Endonuclease-1 in neurons and astrocytes. Our studies show for the first time, that fractionation of protons cause latent damage to spinal cord architecture while fractionation of HZE ((28)Si) induce increase in APE1 with single dose, which then decreased with fractionation. The oligodendrocyte progenitor cells differentiation was skewed with increase in immature oligodendrocytes and astrocytes, which likely cause the observed decrease in white matter, increased neuro-inflammation, together leading to the observed significant cognitive defects. Public Library of Science 2015-07-24 /pmc/articles/PMC4514622/ /pubmed/26208353 http://dx.doi.org/10.1371/journal.pone.0133016 Text en © 2015 Suresh Kumar 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
Suresh Kumar, M. A.
Peluso, Michael
Chaudhary, Pankaj
Dhawan, Jasbeer
Beheshti, Afshin
Manickam, Krishnan
Thapar, Upasna
Pena, Louis
Natarajan, Mohan
Hlatky, Lynn
Demple, Bruce
Naidu, Mamta
Fractionated Radiation Exposure of Rat Spinal Cords Leads to Latent Neuro-Inflammation in Brain, Cognitive Deficits, and Alterations in Apurinic Endonuclease 1
title Fractionated Radiation Exposure of Rat Spinal Cords Leads to Latent Neuro-Inflammation in Brain, Cognitive Deficits, and Alterations in Apurinic Endonuclease 1
title_full Fractionated Radiation Exposure of Rat Spinal Cords Leads to Latent Neuro-Inflammation in Brain, Cognitive Deficits, and Alterations in Apurinic Endonuclease 1
title_fullStr Fractionated Radiation Exposure of Rat Spinal Cords Leads to Latent Neuro-Inflammation in Brain, Cognitive Deficits, and Alterations in Apurinic Endonuclease 1
title_full_unstemmed Fractionated Radiation Exposure of Rat Spinal Cords Leads to Latent Neuro-Inflammation in Brain, Cognitive Deficits, and Alterations in Apurinic Endonuclease 1
title_short Fractionated Radiation Exposure of Rat Spinal Cords Leads to Latent Neuro-Inflammation in Brain, Cognitive Deficits, and Alterations in Apurinic Endonuclease 1
title_sort fractionated radiation exposure of rat spinal cords leads to latent neuro-inflammation in brain, cognitive deficits, and alterations in apurinic endonuclease 1
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4514622/
https://www.ncbi.nlm.nih.gov/pubmed/26208353
http://dx.doi.org/10.1371/journal.pone.0133016
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