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Exposure to Blast Overpressure Impairs Cerebral Microvascular Responses and Alters Vascular and Astrocytic Structure

Exposure to blast overpressure may result in cerebrovascular impairment, including cerebral vasospasm. The mechanisms contributing to this vascular response are unclear. The aim of this study was to evaluate the relationship between blast and functional alterations of the cerebral microcirculation a...

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Autores principales: Abutarboush, Rania, Gu, Ming, Kawoos, Usmah, Mullah, Saad H., Chen, Ye, Goodrich, Samantha Y., Lashof-Sullivan, Margaret, McCarron, Richard M., Statz, Jonathan K., Bell, Randy S., Stone, James R., Ahlers, Stephen T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Mary Ann Liebert, Inc., publishers 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6818492/
https://www.ncbi.nlm.nih.gov/pubmed/31210096
http://dx.doi.org/10.1089/neu.2019.6423
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author Abutarboush, Rania
Gu, Ming
Kawoos, Usmah
Mullah, Saad H.
Chen, Ye
Goodrich, Samantha Y.
Lashof-Sullivan, Margaret
McCarron, Richard M.
Statz, Jonathan K.
Bell, Randy S.
Stone, James R.
Ahlers, Stephen T.
author_facet Abutarboush, Rania
Gu, Ming
Kawoos, Usmah
Mullah, Saad H.
Chen, Ye
Goodrich, Samantha Y.
Lashof-Sullivan, Margaret
McCarron, Richard M.
Statz, Jonathan K.
Bell, Randy S.
Stone, James R.
Ahlers, Stephen T.
author_sort Abutarboush, Rania
collection PubMed
description Exposure to blast overpressure may result in cerebrovascular impairment, including cerebral vasospasm. The mechanisms contributing to this vascular response are unclear. The aim of this study was to evaluate the relationship between blast and functional alterations of the cerebral microcirculation and to investigate potential underlying changes in vascular microstructure. Cerebrovascular responses were assessed in sham- and blast-exposed male rats at multiple time points from 2 h through 28 days after a single 130-kPa (18.9-psi) exposure. Pial microcirculation was assessed through a cranial window created in the parietal bone of anesthetized rats. Pial arteriolar reactivity was evaluated in vivo using hypercapnia, barium chloride, and serotonin. We found that exposure to blast leads to impairment of arteriolar reactivity >24 h after blast exposure, suggesting delayed injury mechanisms that are not simply attributed to direct mechanical deformation. Observed vascular impairment included a reduction in hypercapnia-induced vasodilation, increase in barium-induced constriction, and reversal of the serotonin effect from constriction to dilation. A reduction in vascular smooth muscle contractile proteins consistent with vascular wall proliferation was observed, as well as delayed reduction in nitric oxide synthase and increase in endothelin-1 B receptors, mainly in astrocytes. Collectively, the data show that exposure to blast results in delayed and prolonged alterations in cerebrovascular reactivity that are associated with changes in the microarchitecture of the vessel wall and astrocytes. These changes may contribute to long-term pathologies involving dysfunction of the neurovascular unit, including cerebral vasospasm.
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spelling pubmed-68184922019-10-29 Exposure to Blast Overpressure Impairs Cerebral Microvascular Responses and Alters Vascular and Astrocytic Structure Abutarboush, Rania Gu, Ming Kawoos, Usmah Mullah, Saad H. Chen, Ye Goodrich, Samantha Y. Lashof-Sullivan, Margaret McCarron, Richard M. Statz, Jonathan K. Bell, Randy S. Stone, James R. Ahlers, Stephen T. J Neurotrauma Original Articles Exposure to blast overpressure may result in cerebrovascular impairment, including cerebral vasospasm. The mechanisms contributing to this vascular response are unclear. The aim of this study was to evaluate the relationship between blast and functional alterations of the cerebral microcirculation and to investigate potential underlying changes in vascular microstructure. Cerebrovascular responses were assessed in sham- and blast-exposed male rats at multiple time points from 2 h through 28 days after a single 130-kPa (18.9-psi) exposure. Pial microcirculation was assessed through a cranial window created in the parietal bone of anesthetized rats. Pial arteriolar reactivity was evaluated in vivo using hypercapnia, barium chloride, and serotonin. We found that exposure to blast leads to impairment of arteriolar reactivity >24 h after blast exposure, suggesting delayed injury mechanisms that are not simply attributed to direct mechanical deformation. Observed vascular impairment included a reduction in hypercapnia-induced vasodilation, increase in barium-induced constriction, and reversal of the serotonin effect from constriction to dilation. A reduction in vascular smooth muscle contractile proteins consistent with vascular wall proliferation was observed, as well as delayed reduction in nitric oxide synthase and increase in endothelin-1 B receptors, mainly in astrocytes. Collectively, the data show that exposure to blast results in delayed and prolonged alterations in cerebrovascular reactivity that are associated with changes in the microarchitecture of the vessel wall and astrocytes. These changes may contribute to long-term pathologies involving dysfunction of the neurovascular unit, including cerebral vasospasm. Mary Ann Liebert, Inc., publishers 2019-11-15 2019-10-23 /pmc/articles/PMC6818492/ /pubmed/31210096 http://dx.doi.org/10.1089/neu.2019.6423 Text en © Rania Abutarboush et al., 2019; Published by Mary Ann Liebert, Inc. This Open Access article is distributed under the terms of the Creative Commons Attribution Noncommercial License (http://creativecommons.org/licenses/by-nc/4.0/) which permits any noncommercial use, distribution, and reproduction in any medium, provided the original author(s) and the source are credited.
spellingShingle Original Articles
Abutarboush, Rania
Gu, Ming
Kawoos, Usmah
Mullah, Saad H.
Chen, Ye
Goodrich, Samantha Y.
Lashof-Sullivan, Margaret
McCarron, Richard M.
Statz, Jonathan K.
Bell, Randy S.
Stone, James R.
Ahlers, Stephen T.
Exposure to Blast Overpressure Impairs Cerebral Microvascular Responses and Alters Vascular and Astrocytic Structure
title Exposure to Blast Overpressure Impairs Cerebral Microvascular Responses and Alters Vascular and Astrocytic Structure
title_full Exposure to Blast Overpressure Impairs Cerebral Microvascular Responses and Alters Vascular and Astrocytic Structure
title_fullStr Exposure to Blast Overpressure Impairs Cerebral Microvascular Responses and Alters Vascular and Astrocytic Structure
title_full_unstemmed Exposure to Blast Overpressure Impairs Cerebral Microvascular Responses and Alters Vascular and Astrocytic Structure
title_short Exposure to Blast Overpressure Impairs Cerebral Microvascular Responses and Alters Vascular and Astrocytic Structure
title_sort exposure to blast overpressure impairs cerebral microvascular responses and alters vascular and astrocytic structure
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6818492/
https://www.ncbi.nlm.nih.gov/pubmed/31210096
http://dx.doi.org/10.1089/neu.2019.6423
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