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October 15, 2025The Journal of Experimental Medicine7 citationsOpen Access

Lung tissue–resident memory T cells optimize protection by IL-10 regulation of innate immunity

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AYAn-Ya YangJDJulia Davis‐PoradaDPDaniel H. Paik

Key Points

  • Lung tissue-resident memory T cells reduce inflammation during secondary infections, optimizing protection.
  • Inhibiting IL-10 signaling led to increased macrophage-mediated inflammation and lung pathology.
  • The study utilized a mouse model of influenza to evaluate the roles of TRM and IL-10.
  • Results indicate a balance between enhancing effector function and limiting inflammation by lung TRM.

Abstract

Respiratory viral infections establish tissue-resident memory T cells (TRM) in the lung, which provide optimal protection against subsequent infections, though the underlying mechanisms are incompletely understood. Here, we demonstrate in a mouse model of heterosubtypic influenza infection that lung TRM attenuate inflammation by macrophages during secondary versus primary responses, in part, through production of the immunoregulatory cytokine IL-10. During secondary infections, lung TRM were the predominant producers of early IL-10; inhibiting early IL-10 signaling resulted in increased macrophage-mediated inflammation, morbidity, and lung pathology. Moreover, lung TRM were shown to directly modulate lung macrophage responses and polarization in depletion experiments. Finally, IL-10 enhanced IFN-γ production by lung memory CD8+ T cells. Human influenza-specific TRM isolated from lungs recapitulated robust IL-10 expression associated with augmented effector responses of murine TRM. These data support a dual role of TRM in coordinating in situ secondary responses—augmenting effector responses for robust viral clearance while dampening inflammation to limit tissue damage.

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Cite This Study

Yang et al. (2025) studied this question.

synapsesocial.com/papers/68efa18f9d05deea71d13d1bhttps://doi.org/10.1084/jem.20242307
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