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Impairing RAGE signaling promotes survival and limits disease pathogenesis following SARS-CoV-2 infection in mice
Forrest Jessop, Benjamin Schwarz, Dana Scott, Lydia M. Roberts, Eric Bohrnsen, John R. Hoidal, Catharine M. Bosio
Forrest Jessop, Benjamin Schwarz, Dana Scott, Lydia M. Roberts, Eric Bohrnsen, John R. Hoidal, Catharine M. Bosio
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Research Article Immunology Infectious disease

Impairing RAGE signaling promotes survival and limits disease pathogenesis following SARS-CoV-2 infection in mice

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Abstract

Cellular and molecular mechanisms driving morbidity following SARS-CoV-2 infection have not been well defined. The receptor for advanced glycation end products (RAGE) is a central mediator of tissue injury and contributes to SARS-CoV-2 disease pathogenesis. In this study, we temporally delineated key cell and molecular events leading to lung injury in mice following SARS-CoV-2 infection and assessed efficacy of therapeutically targeting RAGE to improve survival. Early following infection, SARS-CoV-2 replicated to high titers within the lungs and evaded triggering inflammation and cell death. However, a significant necrotic cell death event in CD45– populations, corresponding with peak viral loads, was observed on day 2 after infection. Metabolic reprogramming and inflammation were initiated following this cell death event and corresponded with increased lung interstitial pneumonia, perivascular inflammation, and endothelial hyperplasia together with decreased oxygen saturation. Therapeutic treatment with the RAGE antagonist FPS-ZM1 improved survival in infected mice and limited inflammation and associated perivascular pathology. Together, these results provide critical characterization of disease pathogenesis in the mouse model and implicate a role for RAGE signaling as a therapeutic target to improve outcomes following SARS-CoV-2 infection.

Authors

Forrest Jessop, Benjamin Schwarz, Dana Scott, Lydia M. Roberts, Eric Bohrnsen, John R. Hoidal, Catharine M. Bosio

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Figure 5

FPS-ZM1 treatment limits the host inflammatory response following infection.

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FPS-ZM1 treatment limits the host inflammatory response following infect...
K18-hACE2 mice were infected with 1 × 103 TCID50 SARS-CoV-2 by intranasal instillation and therapeutically treated with vehicle or FPS-ZM1. (A–D) Whole-lung homogenates were evaluated for viral burden (A), RAGE (B), HMGB1 (C), and S100A9 levels (D). Lung homogenates were also evaluated for 50 additional proinflammatory cytokines/chemokines (see Supplemental Table 1). (E–I) Several important mediators known for their critical role in lung injury were selectively presented from that array, including TNF-α (E), IFN-β (F), MCP-1 (G), MMP-9 (H), and EPO (I). Data are shown as mean ± SEM (n = 5 for mock-infected, n = 10 mice per infected group, pooled from 2 representative experiments). *P < 0.05, **P < 0.01, ***P < 0.001 indicate significance compared with mock-infected, vehicle-treated control, or between vehicle and FPS-ZM1 treatment where indicated, by 2-way ANOVA.

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