bioRxiv · 10.64898/2026.03.02.709112
CNS-resident B cells develop locally into a pro-inflammatory age-associated phenotype during aging and after stroke
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 parenchymal tissue isolated from aged brain 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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McAtee, A., Kenwood, M., Ujas, T., Colson, M. K., Watkins, J., Winford, E., Cotter, K., Britsch, D., Betz, D., Turchan-Cholewo, J., Lutshumba, J., Stuart, C., Shah, G., Runice, L., Ebbert, M., Cherra, S. J., Nelson, P., Sturgill, J. L., Monson, N., Goldberg, M. P., Stowe, A. M.. 2026-03-04. CNS-resident B cells develop locally into a pro-inflammatory age-associated phenotype during aging and after stroke. https://doi.org/10.64898/2026.03.02.709112
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