Authors
Mecca B A R Islam, Zhangying Chen, Kacie P Ford, Hiam Abdala Valencia, Matthew Dapas, Booker T Davis, Steven J Schwulst
Published in
Shock (Augusta, Ga.). Aug 28, 2026. Epub Aug 28, 2026.
Abstract
Traumatic brain injury (TBI) is an underrecognized public health threat. Significant long-term complications can occur resulting in motor, cognitive, and behavioral deficits. Trauma occurs predominately in male populations, skewing studies towards men. Creating a critical unmet research need to better understand the pathophysiologic differences in traumatic injury between sexes. Women TBI patients differ in severity and mortality, often suffering from greater long-term neuropsychiatric disorders as compared to men. Sex hormones may account for the observed differences. We hypothesized that microglia would adopt a divergent, sex-dependent, TBI- associated transcriptional profile after TBI.
Young-adult male and female mice underwent a severe TBI via controlled cortical impact or sham injury. Behavioral phenotyping was performed at 30-days post injury to assess anxiety, memory and motor deficits. A second cohort of mice had brains harvested, microglia sorted via flow cytometry, and single- cell RNA sequencing performed.
Female mice demonstrated disinhibition of normal anxiety-like and exploratory behavior in comparison to male mice post TBI. Additionally, female TBI mice had attenuation of memory deficits as compared to male TBI mice. Lastly, we observed a marked divergence in the transcriptional profiles of microglia at baseline and after TBI in female mice as compared to male mice.
Our data showed a significant difference in anxiety and memory deficits after TBI between male and female mice. Which was associated with a marked difference in the transcriptional profile of microglia between male and female mice. These data suggest that sex needs to be an a priori consideration in clinical TBI trials.
PMID:
42664047
Bibliographic data and abstract were imported from PubMed on 29 Aug 2026.
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