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Influenza-induced activation of recruited alveolar macrophages during the early inflammatory phase drives lung injury and lethality

Koch, C. M.; Anekalla, K.; Hu, J. Y.-S.; Ciesielski, M.; Gadhvi, G.; Chen, S.; Turner, M.; Cheng, Y.; Coates, B.; Abdala-Valencia, H.; Reyfman, P. A.; Misharin, A.; Budinger, G. S.; Winter, D. R.; Ridge, K. M.

2020-06-09 immunology
10.1101/2020.06.08.141309 bioRxiv
Show abstract

Severe respiratory virus infections initiate a robust host immune response that contributes to disease severity. Immunomodulatory strategies that limit virus-initiated inflammation are of critical importance. In this study, we compared the host response to influenza A virus (IAV) infection in susceptible animals (wild-type, WT) to resilient mice (Vimentin-/- mice). We identified distinct gene expression patterns in recruited monocyte-derived alveolar macrophages (MoAMs) associated with three phases (Infiltrating, Early Inflammatory, Late Inflammatory) that evolve in sequence over the course of IAV infection. We report a core set of pro-inflammatory genes involved in the WT MoAM Early Inflammatory response that is suppressed in Vim-/- MoAMs. Moreover, we identify CEBPB, Jun-AP1, and IRF transcriptions factors as regulators of this attenuated inflammatory response. We performed causal experiments using bone-marrow chimeras to credential that Vim-/- MoAMs with suppressed pro-inflammatory genes confer protection from influenza-induced mortality in WT susceptible mice. Taken together, these data support the notion that vimentin plays a causal role in determining the pro-inflammatory function of recruited MoAMs and drives IAV-induced lung injury.

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