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Airway-resident memory CD4 T cell activation accelerates antigen presentation and T cell priming in draining lymph nodes
Caroline M. Finn, Kunal Dhume, Eugene Baffoe, Lauren A. Kimball, Tara M. Strutt, K. Kai McKinstry
Caroline M. Finn, Kunal Dhume, Eugene Baffoe, Lauren A. Kimball, Tara M. Strutt, K. Kai McKinstry
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Research Article Immunology Inflammation

Airway-resident memory CD4 T cell activation accelerates antigen presentation and T cell priming in draining lymph nodes

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Abstract

Specialized memory CD4 T cells that reside long-term within tissues are critical components of immunity at portals of pathogen entry. In the lung, such tissue-resident memory (Trm) cells are activated rapidly after infection and promote local inflammation to control pathogen levels before circulating T cells can respond. However, optimal clearance of Influenza A virus can require Trm and responses by other virus-specific T cells that reach the lung only several days after their activation in secondary lymphoid organs. Whether local CD4 Trm sentinel activity can affect the efficiency of T cell activation in secondary lymphoid organs is not clear. Here, we found that recognition of antigen by influenza-primed Trm in the airways promoted more rapid migration of highly activated antigen-bearing DC to the draining lymph nodes. This in turn accelerated the priming of naive T cells recognizing the same antigen, resulting in newly activated effector T cells reaching the lungs earlier than in mice not harboring Trm. Our findings, thus, reveal a circuit linking local and regional immunity whereby antigen recognition by Trm improves effector T cell recruitment to the site of infection though enhancing the efficiency of antigen presentation in the draining lymph node.

Authors

Caroline M. Finn, Kunal Dhume, Eugene Baffoe, Lauren A. Kimball, Tara M. Strutt, K. Kai McKinstry

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Figure 3

Rapid activation of lung DC presenting cognate antigen by CD4 Trm.

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Rapid activation of lung DC presenting cognate antigen by CD4 Trm.
IAV-p...
IAV-primed mice harboring OT-II Trm or unprimed control mice were given 50 μg of FITC-OVA or FITC-BSA i.n. at 45 dpi. (A–C) The ratio of DC2/DC1 within FITC+ APC (A), the number of total FITC+ DC in the lungs of stated mice 6 hours after antigen administration (B), and MFI analysis of CD40, CD80, and CD86 expression by FITC+ lung DC in stated groups (C); n =8/group; pooled from 2 experiments. (D and E) The number of FITC+ lung DC and their expression of CD40, CD80, and CD86 6 hours after FITC-OVA administration to IAV-primed mice treated with isotype or CD4-depleting Ab; n = 6/group; results pooled from 2 experiments. One-way ANOVA with Tukey’s multiple-comparison test was used in E in A–C; Student’s t test was used for pairwise comparison in D and E. *P < 0.05, **P < 0.01, ***P < 0.001.

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