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◇ bioRxiv2026-09-22· immunology

Sympathetic neurons control adaptive immunity in response to Streptococcus pneumoniae infection by regulating T cell and B cell effector function

F. Zhu, K. Davis, S. Acharya, R. Pattanashetti, J. Sekar, D. Aguilar, N. Kalpage, O. Akbari, S. Swaminathan, P. Jorth, M. Swidergall, N. Jendzjowsky

原始摘要(英文原文)· Original abstract
Adaptive immunity in the lung must be rapidly mobilized to control bacterial pathogens, yet the neuroimmune signals that shape local B and T cell responses remain poorly defined. Here we identify a sympathetic-immune axis that regulates lung-resident memory B cells, antigen-specific IgG production, and protection against Streptococcus pneumoniae. Lung-targeted chemical sympathectomy reduced norepinephrine availability, diminished Tbet memory and resident-memory B cell populations, and markedly impaired S. pneumoniae-specific IgG, resulting in increased bacterial burden. Mice lacking Adrb1 & Adrb2-adrenergic receptors phenocopied these defects, and adoptive transfer of Adrb1/Adrb2-/- B cells into Ighm-/- hosts was sufficient to reduce IgG and worsen infection. Combined T cell depletion and B cell-intrinsic adrenergic receptor loss further impaired bacterial control and suppressed IFNgamma, indicating that norepinephrine stimulates T cell IFNgamma release and that norepinephrine and IFNgamma together drive optimal B cell IgG production. In vitro, norepinephrine enhanced T cell IFNgamma secretion, and norepinephrine plus IFNgamma synergistically increased IgG. These findings define norepinephrine as a key regulator of lung-resident humoral immunity and reveal a neuroimmune mechanism that promotes antibody-mediated bacterial clearance at the respiratory mucosa.
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Sympathetic neurons control adaptive immunity in response to Streptococcus pneumoniae infection by regulating T cell and B cell effector function — 科研速览 Science Skim