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Mice Exposed to Combined Chronic Low-Dose Irradiation and Modeled Microgravity Develop Long-Term Neurological Sequelae

Spaceflight poses many challenges for humans. Ground-based analogs typically focus on single parameters of spaceflight and their associated acute effects. This study assesses the long-term transcriptional effects following single and combination spaceflight analog conditions using the mouse model: s...

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Autores principales: Overbey, Eliah G., Paul, Amber M., da Silveira, Willian A., Tahimic, Candice G.T., Reinsch, Sigrid S., Szewczyk, Nathaniel, Stanbouly, Seta, Wang, Charles, Galazka, Jonathan M., Mao, Xiao Wen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6747492/
https://www.ncbi.nlm.nih.gov/pubmed/31443374
http://dx.doi.org/10.3390/ijms20174094
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author Overbey, Eliah G.
Paul, Amber M.
da Silveira, Willian A.
Tahimic, Candice G.T.
Reinsch, Sigrid S.
Szewczyk, Nathaniel
Stanbouly, Seta
Wang, Charles
Galazka, Jonathan M.
Mao, Xiao Wen
author_facet Overbey, Eliah G.
Paul, Amber M.
da Silveira, Willian A.
Tahimic, Candice G.T.
Reinsch, Sigrid S.
Szewczyk, Nathaniel
Stanbouly, Seta
Wang, Charles
Galazka, Jonathan M.
Mao, Xiao Wen
author_sort Overbey, Eliah G.
collection PubMed
description Spaceflight poses many challenges for humans. Ground-based analogs typically focus on single parameters of spaceflight and their associated acute effects. This study assesses the long-term transcriptional effects following single and combination spaceflight analog conditions using the mouse model: simulated microgravity via hindlimb unloading (HLU) and/or low-dose γ-ray irradiation (LDR) for 21 days, followed by 4 months of readaptation. Changes in gene expression and epigenetic modifications in brain samples during readaptation were analyzed by whole transcriptome shotgun sequencing (RNA-seq) and reduced representation bisulfite sequencing (RRBS). The results showed minimal gene expression and cytosine methylation alterations at 4 months readaptation within single treatment conditions of HLU or LDR. In contrast, following combined HLU+LDR, gene expression and promoter methylation analyses showed multiple altered pathways involved in neurogenesis and neuroplasticity, the regulation of neuropeptides, and cellular signaling. In brief, neurological readaptation following combined chronic LDR and HLU is a dynamic process that involves pathways that regulate neuronal function and structure and may lead to late onset neurological sequelae.
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spelling pubmed-67474922019-09-27 Mice Exposed to Combined Chronic Low-Dose Irradiation and Modeled Microgravity Develop Long-Term Neurological Sequelae Overbey, Eliah G. Paul, Amber M. da Silveira, Willian A. Tahimic, Candice G.T. Reinsch, Sigrid S. Szewczyk, Nathaniel Stanbouly, Seta Wang, Charles Galazka, Jonathan M. Mao, Xiao Wen Int J Mol Sci Article Spaceflight poses many challenges for humans. Ground-based analogs typically focus on single parameters of spaceflight and their associated acute effects. This study assesses the long-term transcriptional effects following single and combination spaceflight analog conditions using the mouse model: simulated microgravity via hindlimb unloading (HLU) and/or low-dose γ-ray irradiation (LDR) for 21 days, followed by 4 months of readaptation. Changes in gene expression and epigenetic modifications in brain samples during readaptation were analyzed by whole transcriptome shotgun sequencing (RNA-seq) and reduced representation bisulfite sequencing (RRBS). The results showed minimal gene expression and cytosine methylation alterations at 4 months readaptation within single treatment conditions of HLU or LDR. In contrast, following combined HLU+LDR, gene expression and promoter methylation analyses showed multiple altered pathways involved in neurogenesis and neuroplasticity, the regulation of neuropeptides, and cellular signaling. In brief, neurological readaptation following combined chronic LDR and HLU is a dynamic process that involves pathways that regulate neuronal function and structure and may lead to late onset neurological sequelae. MDPI 2019-08-22 /pmc/articles/PMC6747492/ /pubmed/31443374 http://dx.doi.org/10.3390/ijms20174094 Text en © 2019 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Overbey, Eliah G.
Paul, Amber M.
da Silveira, Willian A.
Tahimic, Candice G.T.
Reinsch, Sigrid S.
Szewczyk, Nathaniel
Stanbouly, Seta
Wang, Charles
Galazka, Jonathan M.
Mao, Xiao Wen
Mice Exposed to Combined Chronic Low-Dose Irradiation and Modeled Microgravity Develop Long-Term Neurological Sequelae
title Mice Exposed to Combined Chronic Low-Dose Irradiation and Modeled Microgravity Develop Long-Term Neurological Sequelae
title_full Mice Exposed to Combined Chronic Low-Dose Irradiation and Modeled Microgravity Develop Long-Term Neurological Sequelae
title_fullStr Mice Exposed to Combined Chronic Low-Dose Irradiation and Modeled Microgravity Develop Long-Term Neurological Sequelae
title_full_unstemmed Mice Exposed to Combined Chronic Low-Dose Irradiation and Modeled Microgravity Develop Long-Term Neurological Sequelae
title_short Mice Exposed to Combined Chronic Low-Dose Irradiation and Modeled Microgravity Develop Long-Term Neurological Sequelae
title_sort mice exposed to combined chronic low-dose irradiation and modeled microgravity develop long-term neurological sequelae
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6747492/
https://www.ncbi.nlm.nih.gov/pubmed/31443374
http://dx.doi.org/10.3390/ijms20174094
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