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Updated: Mar 29, 2026

Flow Cytometric Characterization of Murine B Cell Development
Published on: January 22, 2021
Early-life B cell memory is archived in the mouse B-1 cell compartment and drives chronic lymphocytic leukemia-like
Niklas Segrén1, Stefano Vergani1, Joan Escrivà-Font2
1Developmental Immunology Unit, Division of Molecular Hematology, Department of Laboratory Medicine, Lund Stem Cell Center, Lund University, Lund 22242, Sweden.
The adult B cell pool is a mosaic comprising short-lived naive B cells and long-lived memory. Using genetic time stamping, we have previously shown that early-life-origin (ELO) B cells contribute substantially to the adult mouse immune system. Here, we show that they share a memory-like signature, with ELO B-1 cells being enriched for the PD-L2/CD80 double-positive (DP) immunophenotype. Indeed, microbial antigen exposure in neonates expands distinct specificities within the DP B-1 cell compartment, identifying it as a reservoir of immunoglobulin (Ig)M memory. B cell chronic lymphocytic leukemia (CLL) is a disease marked by the accumulation of memory-like cells. By applying time stamping to a mouse model of unmutated CLL, we demonstrate that leukemic expansion is driven by B-1 clones that arise prior to postnatal day 10. Importantly, B-1 cells in mice and humans share molecular features with unmutated CLL, altogether supporting a potential contribution of ELO B cells to this disease.
The adult B cell pool is a mosaic comprising short-lived naive B cells and long-lived memory. Using genetic time stamping, we have previously shown that early-life-origin (ELO) B cells contribute substantially to the adult mouse immune system. Here, we show that they share a memory-like signature, with ELO B-1 cells being enriched for the PD-L2/CD80 double-positive (DP) immunophenotype. Indeed, microbial antigen exposure in neonates expands distinct specificities within the DP B-1 cell compartment, identifying it as a reservoir of immunoglobulin (Ig)M memory. B cell chronic lymphocytic leukemia (CLL) is a disease marked by the accumulation of memory-like cells. By applying time stamping to a mouse model of unmutated CLL, we demonstrate that leukemic expansion is driven by B-1 clones that arise prior to postnatal day 10. Importantly, B-1 cells in mice and humans share molecular features with unmutated CLL, altogether supporting a potential contribution of ELO B cells to this disease.
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