Gut microbial dysbiosis after traumatic brain injury modulates the immune response and impairs neurogenesis

Author:

Celorrio Marta,Abellanas Miguel A.,Rhodes James,Goodwin Victoria,Moritz Jennie,Vadivelu Sangeetha,Wang Leran,Rodgers Rachel,Xiao Sophia,Anabayan Ilakkia,Payne Camryn,Perry Alexandra M.,Baldridge Megan T.,Aymerich Maria S.,Steed Ashley,Friess Stuart H.ORCID

Abstract

AbstractThe influence of the gut microbiota on traumatic brain injury (TBI) is presently unknown. This knowledge gap is of paramount clinical significance as TBI patients are highly susceptible to alterations in the gut microbiota by antibiotic exposure. Antibiotic-induced gut microbial dysbiosis established prior to TBI significantly worsened neuronal loss and reduced microglia activation in the injured hippocampus with concomitant changes in fear memory response. Importantly, antibiotic exposure for 1 week after TBI reduced cortical infiltration of Ly6Chigh monocytes, increased microglial pro-inflammatory markers, and decreased T lymphocyte infiltration, which persisted through 1 month post-injury. Moreover, microbial dysbiosis was associated with reduced neurogenesis in the dentate gyrus 1 week after TBI. By 3 months after injury (11 weeks after discontinuation of the antibiotics), we observed increased microglial proliferation, increased hippocampal neuronal loss, and modulation of fear memory response. These data demonstrate that antibiotic-induced gut microbial dysbiosis after TBI impacts neuroinflammation, neurogenesis, and fear memory and implicate gut microbial modulation as a potential therapeutic intervention for TBI.

Funder

National Institute of Neurological Disorders and Stroke

Boehringer Ingelheim Fonds

Publisher

Springer Science and Business Media LLC

Subject

Cellular and Molecular Neuroscience,Clinical Neurology,Pathology and Forensic Medicine

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