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Updated: Sep 23, 2026

Interrogating Individual Autoreactive Germinal Centers by Photoactivation in a Mixed Chimeric Model of Autoimmunity
Published on: April 11, 2019
A two-step model of age-associated autoreactivity: B cell-intrinsic aging meets inflammaging
1Graduate Institute of Biomedical Sciences, China Medical University, No. 91, Xueshi Road, North District, 404, Taichung, Taiwan. moncef.zouali@wanadoo.fr.
Abstract:
Aging is associated with declining protective immunity and increased autoreactivity, yet the mechanisms linking these processes remain incompletely understood. B lymphocytes are central to this paradox because they integrate antigen recognition, innate signaling, and differentiation under tightly regulated tolerance checkpoints. This review advances the hypothesis that aging appears to drive a progressive, B cell-intrinsic relaxation of central and peripheral tolerance, leading to the accumulation of autoreactive clones. These defects are reinforced by transcriptional, epigenetic, metabolic, and signaling remodeling that durably reshapes B-cell responsiveness. In parallel, chronic low-grade inflammation (inflammaging) acts as a selective pressure that preferentially expands inflammation-adapted B-cell subsets, including age-associated B cells (ABCs) and related DN2 populations, rather than uniformly activating the B-cell compartment. This synergy promotes extrafollicular differentiation while bypassing key germinal-center tolerance checkpoints, thereby enriching for autoreactive B-cell states. A unifying model is proposed in which intrinsic aging establishes susceptibility, whereas inflammaging amplifies pathogenic B-cell programs, linking immune senescence to autoimmunity and highlighting potential targets for selective therapeutic intervention.
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