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Radiation exposure prior to traumatic brain injury induces responses that differ as a function of animal age

PURPOSE: Uncontrolled radiation exposure due to radiological terrorism, industrial accidents or military circumstances is a continuing threat for the civilian population. Age plays a major role in the susceptibility to radiation; younger children are at higher risk of developing cognitive deteriorat...

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Autores principales: Allen, Antiño R., Eilertson, Kirsten, Chakraborti, Ayanabha, Sharma, Sourabh, Baure, Jennifer, Habdank-Kolaczkowski, Julian, Allen, Barrett, Rosi, Susanna, Raber, Jacob, Fike, John R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Informa Healthcare 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3971762/
https://www.ncbi.nlm.nih.gov/pubmed/24164494
http://dx.doi.org/10.3109/09553002.2014.859761
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author Allen, Antiño R.
Eilertson, Kirsten
Chakraborti, Ayanabha
Sharma, Sourabh
Baure, Jennifer
Habdank-Kolaczkowski, Julian
Allen, Barrett
Rosi, Susanna
Raber, Jacob
Fike, John R.
author_facet Allen, Antiño R.
Eilertson, Kirsten
Chakraborti, Ayanabha
Sharma, Sourabh
Baure, Jennifer
Habdank-Kolaczkowski, Julian
Allen, Barrett
Rosi, Susanna
Raber, Jacob
Fike, John R.
author_sort Allen, Antiño R.
collection PubMed
description PURPOSE: Uncontrolled radiation exposure due to radiological terrorism, industrial accidents or military circumstances is a continuing threat for the civilian population. Age plays a major role in the susceptibility to radiation; younger children are at higher risk of developing cognitive deterioration when compared to adults. Our objective was to determine if an exposure to radiation affected the vulnerability of the juvenile hippocampus to a subsequent moderate traumatic injury. MATERIALS AND METHODS: Three-week-old (juvenile) and eight-week-old young adult C57BL/J6 male mice received whole body cesium-137 ((137)Cs) irradiation with 4 gray (Gy). One month later, unilateral traumatic brain injury was induced using a controlled cortical impact system. Two months post-irradiation, animals were tested for hippocampus-dependent cognitive performance in the Morris water-maze. After cognitive testing, animals were euthanized and their brains frozen for immunohistochemical assessment of activated microglia and neurogenesis in the hippocampal dentate gyrus. RESULTS: All animals were able to learn the water maze task; however, treatment effects were seen when spatial memory retention was assessed. Animals that received irradiation as juveniles followed by a moderate traumatic brain injury one month later did not show spatial memory retention, i.e., were cognitively impaired. In contrast, all groups of animals that were treated as adults showed spatial memory retention in the probe trials. CONCLUSION: Although the mechanisms involved are not clear, our results suggest that irradiation enhanced a young animal's vulnerability to develop cognitive injury following a subsequent traumatic injury.
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spelling pubmed-39717622014-04-07 Radiation exposure prior to traumatic brain injury induces responses that differ as a function of animal age Allen, Antiño R. Eilertson, Kirsten Chakraborti, Ayanabha Sharma, Sourabh Baure, Jennifer Habdank-Kolaczkowski, Julian Allen, Barrett Rosi, Susanna Raber, Jacob Fike, John R. Int J Radiat Biol Effects of Radiation Exposure on Response to Traumatic Brain Injury PURPOSE: Uncontrolled radiation exposure due to radiological terrorism, industrial accidents or military circumstances is a continuing threat for the civilian population. Age plays a major role in the susceptibility to radiation; younger children are at higher risk of developing cognitive deterioration when compared to adults. Our objective was to determine if an exposure to radiation affected the vulnerability of the juvenile hippocampus to a subsequent moderate traumatic injury. MATERIALS AND METHODS: Three-week-old (juvenile) and eight-week-old young adult C57BL/J6 male mice received whole body cesium-137 ((137)Cs) irradiation with 4 gray (Gy). One month later, unilateral traumatic brain injury was induced using a controlled cortical impact system. Two months post-irradiation, animals were tested for hippocampus-dependent cognitive performance in the Morris water-maze. After cognitive testing, animals were euthanized and their brains frozen for immunohistochemical assessment of activated microglia and neurogenesis in the hippocampal dentate gyrus. RESULTS: All animals were able to learn the water maze task; however, treatment effects were seen when spatial memory retention was assessed. Animals that received irradiation as juveniles followed by a moderate traumatic brain injury one month later did not show spatial memory retention, i.e., were cognitively impaired. In contrast, all groups of animals that were treated as adults showed spatial memory retention in the probe trials. CONCLUSION: Although the mechanisms involved are not clear, our results suggest that irradiation enhanced a young animal's vulnerability to develop cognitive injury following a subsequent traumatic injury. Informa Healthcare 2014-03 2013-10-29 /pmc/articles/PMC3971762/ /pubmed/24164494 http://dx.doi.org/10.3109/09553002.2014.859761 Text en © 2014 Informa UK, Ltd. http://creativecommons.org/licenses/by-nc/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution Noncommercial License which permits any noncommercial use, distribution, and reproduction in any medium, provided the source is credited.
spellingShingle Effects of Radiation Exposure on Response to Traumatic Brain Injury
Allen, Antiño R.
Eilertson, Kirsten
Chakraborti, Ayanabha
Sharma, Sourabh
Baure, Jennifer
Habdank-Kolaczkowski, Julian
Allen, Barrett
Rosi, Susanna
Raber, Jacob
Fike, John R.
Radiation exposure prior to traumatic brain injury induces responses that differ as a function of animal age
title Radiation exposure prior to traumatic brain injury induces responses that differ as a function of animal age
title_full Radiation exposure prior to traumatic brain injury induces responses that differ as a function of animal age
title_fullStr Radiation exposure prior to traumatic brain injury induces responses that differ as a function of animal age
title_full_unstemmed Radiation exposure prior to traumatic brain injury induces responses that differ as a function of animal age
title_short Radiation exposure prior to traumatic brain injury induces responses that differ as a function of animal age
title_sort radiation exposure prior to traumatic brain injury induces responses that differ as a function of animal age
topic Effects of Radiation Exposure on Response to Traumatic Brain Injury
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3971762/
https://www.ncbi.nlm.nih.gov/pubmed/24164494
http://dx.doi.org/10.3109/09553002.2014.859761
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