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Macroscopic changes in aquaporin-4 underlie blast traumatic brain injury-related impairment in glymphatic function.

Authors :
Braun, Molly
Sevao, Mathew
Keil, Samantha A
Gino, Elizabeth
Wang, Marie X
Lee, Janet
Haveliwala, Mariya A
Klein, Emily
Agarwal, Sanjana
Pedersen, Taylor
Rhodes, C Harker
Jansson, Deidre
Cook, David
Peskind, Elaine
Perl, Daniel P
Piantino, Juan
Schindler, Abigail G
Iliff, Jeffrey J
Source :
Brain: A Journal of Neurology. Jun2024, Vol. 147 Issue 6, p2214-2229. 16p.
Publication Year :
2024

Abstract

Mild traumatic brain injury (mTBI) has emerged as a potential risk factor for the development of neurodegenerative conditions such as Alzheimer's disease and chronic traumatic encephalopathy. Blast mTBI, caused by exposure to a pressure wave from an explosion, is predominantly experienced by military personnel and has increased in prevalence and severity in recent decades. Yet the underlying pathology of blast mTBI is largely unknown. We examined the expression and localization of AQP4 in human post-mortem frontal cortex and observed distinct laminar differences in AQP4 expression following blast exposure. We also observed similar laminar changes in AQP4 expression and localization and delayed impairment of glymphatic function that emerged 28 days following blast injury in a mouse model of repetitive blast mTBI. In a cohort of veterans with blast mTBI, we observed that blast exposure was associated with an increased burden of frontal cortical MRI-visible perivascular spaces, a putative neuroimaging marker of glymphatic perivascular dysfunction. These findings suggest that changes in AQP4 and delayed glymphatic impairment following blast injury may render the post-traumatic brain vulnerable to post-concussive symptoms and chronic neurodegeneration. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00068950
Volume :
147
Issue :
6
Database :
Academic Search Index
Journal :
Brain: A Journal of Neurology
Publication Type :
Academic Journal
Accession number :
177681115
Full Text :
https://doi.org/10.1093/brain/awae065