Author: Deinhardt-Emmer, Stefanie; Böttcher, Sarah; Häring, Clio; Giebeler, Liane; Henke, Andreas; Zell, Roland; Hornung, Franziska; Brandt, Christian; Marquet, Mike; Mosig, Alexander S.; Pletz, Mathias W.; Schacke, Michael; Rödel, Jürgen; Heller, Regine; Nietzsche, Sandor; Löffler, Bettina; Ehrhardt, Christina
Title: SARS-CoV-2 causes severe alveolar inflammation and barrier dysfunction Cord-id: yr2v1pg9 Document date: 2020_9_1
ID: yr2v1pg9
Snippet: Infections with SARS-CoV-2 lead to mild to severe coronavirus disease-19 (COVID-19) with systemic symptoms. Although the viral infection originates in the respiratory system, it is unclear how the virus can overcome the alveolar barrier, which is observed in severe COVID-19 disease courses. To elucidate the viral effects on the barrier integrity and immune reactions, we used mono-cell culture systems and a complex human alveolus-on-a-chip model composed of epithelial, endothelial, and mononuclea
Document: Infections with SARS-CoV-2 lead to mild to severe coronavirus disease-19 (COVID-19) with systemic symptoms. Although the viral infection originates in the respiratory system, it is unclear how the virus can overcome the alveolar barrier, which is observed in severe COVID-19 disease courses. To elucidate the viral effects on the barrier integrity and immune reactions, we used mono-cell culture systems and a complex human alveolus-on-a-chip model composed of epithelial, endothelial, and mononuclear cells. Our data show that SARS-CoV-2 efficiently infected epithelial cells with high viral loads and inflammatory response, including the interferon expression. By contrast, the adjacent endothelial layer was no infected and did neither show productive virus replication or interferon release. With prolonged infection, both cell types are damaged, and the barrier function is deteriorated, allowing the viral particles to overbear. In our study, we demonstrate that although SARS-CoV-2 is dependent on the epithelium for efficient replication, the neighboring endothelial cells are affected, e.g., by the epithelial cytokine release, which results in the damage of the alveolar barrier function and viral dissemination.
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