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SARS-CoV-2 infection produces an IL-33–dependent chronic eosinophilic pneumonia and muco-inflammatory airways disease in Scnn1b-Tg mice
Padraig E. Hawkins, Sarah R. Leist, Hong Dang, Minako Saito, Lisa C. Morton, Jesse B. Hines, Rodney C. Gilmore, Stephen A. Schworer, Ella F. Burns, Jason R. Rock, Robert S. Hagan, James J. Pestka, Alexandra Schäfer, Kenichi Okuda, Lauren K. Heine, Jack R. Harkema, Wanda K. O’Neal, Alessandra Livraghi-Butrico, Raymond J. Pickles, Ralph S. Baric, Richard C. Boucher
Padraig E. Hawkins, Sarah R. Leist, Hong Dang, Minako Saito, Lisa C. Morton, Jesse B. Hines, Rodney C. Gilmore, Stephen A. Schworer, Ella F. Burns, Jason R. Rock, Robert S. Hagan, James J. Pestka, Alexandra Schäfer, Kenichi Okuda, Lauren K. Heine, Jack R. Harkema, Wanda K. O’Neal, Alessandra Livraghi-Butrico, Raymond J. Pickles, Ralph S. Baric, Richard C. Boucher
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Research Article Immunology Pulmonology Virology

SARS-CoV-2 infection produces an IL-33–dependent chronic eosinophilic pneumonia and muco-inflammatory airways disease in Scnn1b-Tg mice

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Abstract

Post-acute sequelae of SARS-CoV-2 (PASC) occurs in subsets of individuals, including those with preexisting lung disease. To investigate PASC pathogenesis and therapeutics in a chronic bronchitis mouse model (Scnn1b-Tg), Scnn1b-Tg and WT mice were inoculated with a mouse-adapted SARS-CoV-2 virus (SARS-CoV-2 MA10) and followed for 60 days. Viral titer, histology, immunohistochemistry, single-cell RNA sequencing, RNA in situ hybridization, and spatial transcriptomic profiling characterized disease pathologies. Scnn1b-Tg mice inoculated with SARS-CoV-2 MA10 exhibited lower viral titers and less weight loss than WT mice. Airway epithelia of Scnn1b-Tg mice were less infected than epithelia of WT mice, reflecting increased airway mucus and enhanced epithelial antiviral activities in Scnn1b-Tg mice. However, Scnn1b-Tg mice subsequently exhibited heterogeneous airway and parenchymal disease with elevated Il33 expression characteristic of human eosinophilic pneumonia. Cohorts of infected mice were given a monoclonal antibody targeting the IL-33 receptor (ST2) or enteral prednisone. Administration of an anti-ST2 monoclonal antibody mitigated development of eosinophilic pneumonia, while enteral prednisone suppressed IL-33 expression and disease. The eosinophilic pneumonia in Scnn1b-Tg mice after SARS-CoV-2 MA10 infection mimics reports of eosinophilic pneumonia in humans after SARS-CoV-2, suggesting that targeting of IL-33 may be beneficial in treating post-viral eosinophilic pneumonia in humans.

Authors

Padraig E. Hawkins, Sarah R. Leist, Hong Dang, Minako Saito, Lisa C. Morton, Jesse B. Hines, Rodney C. Gilmore, Stephen A. Schworer, Ella F. Burns, Jason R. Rock, Robert S. Hagan, James J. Pestka, Alexandra Schäfer, Kenichi Okuda, Lauren K. Heine, Jack R. Harkema, Wanda K. O’Neal, Alessandra Livraghi-Butrico, Raymond J. Pickles, Ralph S. Baric, Richard C. Boucher

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Figure 5

SARS-CoV-2 MA10 infection causes variable levels of chronic eosinophilic pneumonia in Scnn1b-Tg mice.

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SARS-CoV-2 MA10 infection causes variable levels of chronic eosinophilic...
(A) Histopathologic analysis of lungs in the experimental groups (non-infected = baseline, 2 and 30 dpi for WT and Scnn1b-Tg mice). H&E, hematoxylin and eosin. MBP indicates IHC against major basic protein, a marker of eosinophils. Arg1 indicates IHC against arginase-1, a marker of M2 macrophage activation. Scale bars: 1 mm (low magnification) and 50 μm. (B) Quantitation of the percentage of lung tissue affected by chronic eosinophilic pneumonia. (C) Arg1 area quantified and normalized to lung area. (D) Eosinophil count based on IHC against MBP and normalized to whole lung area. (E) Immunofluorescence of pro–surfactant protein C and SARS-CoV-2 nucleocapsid protein shown over a time course of infection in WT and Scnn1b-Tg mice. DAPI staining nuclei in dark blue. Scale bars: 100 μm. (F) Quantitation of pro–surfactant protein C–positive cells per total DAPI area. Dots in bar graphs represent individual animals (B–D and F). *P < 0.05; **P < 0.01; ***P < 0.001; ****P < 0.0001. Mixed-effects analysis, uncorrected Fisher’s least significant difference.

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