Age-associated B cells (ABCs) develop from a CNS-localized progenitor pool into a pro-inflammatory phenotype after stroke

Aging and age-related diseases like ischemic stroke induce chronic lymphocyte recruitment into the central nervous system (CNS). Conflicting effects on post-stroke functional recovery, however, are secondary to the differences in responding lymphocyte populations that shift immunophenotype with both ischemic injury and age. To better define CNS-localized B cell subsets, we used flow cytometry, single-cell RNA sequencing, and B cell receptor sequencing on B cells isolated from uninjured and post-stroke brains of aged male and female mice. We identified a novel B1b cell progenitor pool distinct from canonical pleural and peritoneal B1 niches. Trajectory analysis showed B1b progenitors transition into age-associated B cell (ABC) subsets and clonal expansion of IgM + ABCs (ABC/B1b) and plasma cells following ischemic stroke. We also confirmed analogous ABCs and developing B cell populations in post-mortem human brain tissue isolated from aged donors. These studies reveal unique B cell populations that proliferate within the aging CNS and are associated with impaired post-stroke functional recovery in mice. Identification of inflammatory, CNS-resident ABC/B1b cells that are conserved across species is critical as they have the potential to be sequestered from peripheral immunotherapies and/or contribute to age-related neurodegenerative diseases.

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Journal
Journal of Neuroinflammation
Published
2026-09-11
DOI
https://doi.org/10.1186/s12974-026-04044-2
Primary Topic
Neuroinflammation and Neurodegeneration Mechanisms
Type
article
Field-Weighted Citation Impact
0.00

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article

Age-associated B cells (ABCs) develop from a CNS-localized progenitor pool into a pro-inflammatory phenotype after stroke

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Journal of Neuroinflammation
Neuroinflammation and Neurodegeneration Mechanisms
article

Age-associated B cells (ABCs) develop from a CNS-localized progenitor pool into a pro-inflammatory phenotype after stroke

Ann Stowe, Mark P. Goldberg, Salvatore J. Cherra, Jenny Lutshumba, Katherine M. Cotter, Thomas A. Ujas, Daimen R. S. Britsch, Annabel M. McAtee, Edric Winford, Nancy Monson, Jamie L. Sturgill, Loganann Runice, Mary K Colson, Gargi Shah, Connor M.J. Stuart, Dene Betz, Matthew R. Kenwood, Julie Watkins, Jadwiga Turchan-Cholewo, Peter T. Nelson, Mark T. W. Ebbert
article en

Abstract

Aging and age-related diseases like ischemic stroke induce chronic lymphocyte recruitment into the central nervous system (CNS). Conflicting effects on post-stroke functional recovery, however, are secondary to the differences in responding lymphocyte populations that shift immunophenotype with both ischemic injury and age. To better define CNS-localized B cell subsets, we used flow cytometry, single-cell RNA sequencing, and B cell receptor sequencing on B cells isolated from uninjured and post-stroke brains of aged male and female mice. We identified a novel B1b cell progenitor pool distinct from canonical pleural and peritoneal B1 niches. Trajectory analysis showed B1b progenitors transition into age-associated B cell (ABC) subsets and clonal expansion of IgM + ABCs (ABC/B1b) and plasma cells following ischemic stroke. We also confirmed analogous ABCs and developing B cell populations in post-mortem human brain tissue isolated from aged donors. These studies reveal unique B cell populations that proliferate within the aging CNS and are associated with impaired post-stroke functional recovery in mice. Identification of inflammatory, CNS-resident ABC/B1b cells that are conserved across species is critical as they have the potential to be sequestered from peripheral immunotherapies and/or contribute to age-related neurodegenerative diseases.

Journal of Neuroinflammation
University of Kentucky (US), The University of Texas at San Antonio Health Science Center (US), Southwestern Medical Center (US), Lexington Clinic (US), The University of Texas at San Antonio (US), Columbia University (US), The University of Texas Southwestern Medical Center (US)
National Institute on Aging, National Institute of Neurological Disorders and Stroke
Good health and well-being
Openalex Percentile: Top 13%
Neuroinflammation and Neurodegeneration Mechanisms
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