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Exploring How Low Oxygen Post Conditioning Improves Stroke-Induced Cognitive Impairment: A Consideration of Amyloid-Beta Loading and Other Mechanisms

Cognitive impairment is a common and disruptive outcome for stroke survivors, which is recognized to be notoriously difficult to treat. Previously, we have shown that low oxygen post-conditioning (LOPC) improves motor function and limits secondary neuronal loss in the thalamus after experimental str...

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Autores principales: Zhao, Zidan, Hood, Rebecca J., Ong, Lin Kooi, Pietrogrande, Giovanni, Sanchez Bezanilla, Sonia, Warren, Kirby E., Ilicic, Marina, Kluge, Murielle G., TeBay, Clifford, Ottersen, Ole P., Johnson, Sarah J., Nilsson, Michael, Walker, Frederick R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8024636/
https://www.ncbi.nlm.nih.gov/pubmed/33841293
http://dx.doi.org/10.3389/fneur.2021.585189
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author Zhao, Zidan
Hood, Rebecca J.
Ong, Lin Kooi
Pietrogrande, Giovanni
Sanchez Bezanilla, Sonia
Warren, Kirby E.
Ilicic, Marina
Kluge, Murielle G.
TeBay, Clifford
Ottersen, Ole P.
Johnson, Sarah J.
Nilsson, Michael
Walker, Frederick R.
author_facet Zhao, Zidan
Hood, Rebecca J.
Ong, Lin Kooi
Pietrogrande, Giovanni
Sanchez Bezanilla, Sonia
Warren, Kirby E.
Ilicic, Marina
Kluge, Murielle G.
TeBay, Clifford
Ottersen, Ole P.
Johnson, Sarah J.
Nilsson, Michael
Walker, Frederick R.
author_sort Zhao, Zidan
collection PubMed
description Cognitive impairment is a common and disruptive outcome for stroke survivors, which is recognized to be notoriously difficult to treat. Previously, we have shown that low oxygen post-conditioning (LOPC) improves motor function and limits secondary neuronal loss in the thalamus after experimental stroke. There is also emerging evidence that LOPC may improve cognitive function post-stroke. In the current study we aimed to explore how exposure to LOPC may improve cognition post-stroke. Experimental stroke was induced using photothrombotic occlusion in adult, male C57BL/6 mice. At 72 h post-stroke animals were randomly assigned to either normal atmospheric air or to one of two low oxygen (11% O(2)) exposure groups (either 8 or 24 h/day for 14 days). Cognition was assessed during the treatment phase using a touchscreen based paired-associate learning assessment. At the end of treatment (17 days post-stroke) mice were euthanized and tissue was collected for subsequent histology and biochemical analysis. LOPC (both 8 and 24 h) enhanced learning and memory in the 2nd week post-stroke when compared with stroke animals exposed to atmospheric air. Additionally we observed LOPC was associated with lower levels of neuronal loss, the restoration of several vascular deficits, as well as a reduction in the severity of the amyloid-beta (Aβ) burden. These findings provide further insight into the pro-cognitive benefits of LOPC.
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spelling pubmed-80246362021-04-08 Exploring How Low Oxygen Post Conditioning Improves Stroke-Induced Cognitive Impairment: A Consideration of Amyloid-Beta Loading and Other Mechanisms Zhao, Zidan Hood, Rebecca J. Ong, Lin Kooi Pietrogrande, Giovanni Sanchez Bezanilla, Sonia Warren, Kirby E. Ilicic, Marina Kluge, Murielle G. TeBay, Clifford Ottersen, Ole P. Johnson, Sarah J. Nilsson, Michael Walker, Frederick R. Front Neurol Neurology Cognitive impairment is a common and disruptive outcome for stroke survivors, which is recognized to be notoriously difficult to treat. Previously, we have shown that low oxygen post-conditioning (LOPC) improves motor function and limits secondary neuronal loss in the thalamus after experimental stroke. There is also emerging evidence that LOPC may improve cognitive function post-stroke. In the current study we aimed to explore how exposure to LOPC may improve cognition post-stroke. Experimental stroke was induced using photothrombotic occlusion in adult, male C57BL/6 mice. At 72 h post-stroke animals were randomly assigned to either normal atmospheric air or to one of two low oxygen (11% O(2)) exposure groups (either 8 or 24 h/day for 14 days). Cognition was assessed during the treatment phase using a touchscreen based paired-associate learning assessment. At the end of treatment (17 days post-stroke) mice were euthanized and tissue was collected for subsequent histology and biochemical analysis. LOPC (both 8 and 24 h) enhanced learning and memory in the 2nd week post-stroke when compared with stroke animals exposed to atmospheric air. Additionally we observed LOPC was associated with lower levels of neuronal loss, the restoration of several vascular deficits, as well as a reduction in the severity of the amyloid-beta (Aβ) burden. These findings provide further insight into the pro-cognitive benefits of LOPC. Frontiers Media S.A. 2021-03-24 /pmc/articles/PMC8024636/ /pubmed/33841293 http://dx.doi.org/10.3389/fneur.2021.585189 Text en Copyright © 2021 Zhao, Hood, Ong, Pietrogrande, Sanchez Bezanilla, Warren, Ilicic, Kluge, TeBay, Ottersen, Johnson, Nilsson and Walker. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Neurology
Zhao, Zidan
Hood, Rebecca J.
Ong, Lin Kooi
Pietrogrande, Giovanni
Sanchez Bezanilla, Sonia
Warren, Kirby E.
Ilicic, Marina
Kluge, Murielle G.
TeBay, Clifford
Ottersen, Ole P.
Johnson, Sarah J.
Nilsson, Michael
Walker, Frederick R.
Exploring How Low Oxygen Post Conditioning Improves Stroke-Induced Cognitive Impairment: A Consideration of Amyloid-Beta Loading and Other Mechanisms
title Exploring How Low Oxygen Post Conditioning Improves Stroke-Induced Cognitive Impairment: A Consideration of Amyloid-Beta Loading and Other Mechanisms
title_full Exploring How Low Oxygen Post Conditioning Improves Stroke-Induced Cognitive Impairment: A Consideration of Amyloid-Beta Loading and Other Mechanisms
title_fullStr Exploring How Low Oxygen Post Conditioning Improves Stroke-Induced Cognitive Impairment: A Consideration of Amyloid-Beta Loading and Other Mechanisms
title_full_unstemmed Exploring How Low Oxygen Post Conditioning Improves Stroke-Induced Cognitive Impairment: A Consideration of Amyloid-Beta Loading and Other Mechanisms
title_short Exploring How Low Oxygen Post Conditioning Improves Stroke-Induced Cognitive Impairment: A Consideration of Amyloid-Beta Loading and Other Mechanisms
title_sort exploring how low oxygen post conditioning improves stroke-induced cognitive impairment: a consideration of amyloid-beta loading and other mechanisms
topic Neurology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8024636/
https://www.ncbi.nlm.nih.gov/pubmed/33841293
http://dx.doi.org/10.3389/fneur.2021.585189
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