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Single-Cell and Spatial Analysis Reveals Retention of FCRL4⁺ Memory B Cells in Pediatric Tonsillar Hypertrophy

J. Y. Baik, G. W. Park, S. Jin, J. Koh, Y. Moon, H. Seo, H. Y. Shin, C. Kim, T. Gu, M. Kim, D. H. Han, H. J. Kim

PreprintReal-world use

In the authors' words

Pediatric tonsillar hypertrophy is a leading cause of sleep disordered breathing in children, yet the immune mechanisms sustaining tonsillar enlargement remain unclear. Using integrated single cell and spatial profiling of pediatric tonsils in a discovery cohort (n = 45) and independent validation cohort (n = 32), we identify a selective expansion and follicular retention of FCRL4+ memory B cells within the mantle zone of hypertrophic tonsils. These cells exhibit a quiescent, tissue-adapted phenotype characterized by NFATC1 repression and reciprocal RUNX1/RUNX2 regulation. Their accumulation is orchestrated by follicular type 1 regulatory T (Tr1) cells, which engage CTLA-4/CD86 checkpoint interactions to suppress plasma cell differentiation and reinforce a local immune tolerance program. Together, these interactions establish a persistent follicular niche enriched in regulatory FCRL4+ memory B cells. Our findings delineate a mechanistic Tr1/FCRL4+ B cell axis underlying follicular hypertrophy and highlight potential immunomodulatory targets for nonsurgical management of pediatric sleep-disordered breathing.

Main resultThe abstract does not state a limitation.

Appeared: Friday, September 25. bioRxiv. Preprint, not yet peer-reviewed.

DOI: 10.64898/2026.09.18.751603