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Early cell-autonomous and niche-mediated epithelial response to influenza infection in primary alveolar organoids
Amber Elitz, Sharlene Fernandes, Kathleen C.S. Cook, Helen I. Warheit-Niemi, Barbara Zhao, Andrea Toth, Amanda L. Zacharias, William J. Zacharias
Amber Elitz, Sharlene Fernandes, Kathleen C.S. Cook, Helen I. Warheit-Niemi, Barbara Zhao, Andrea Toth, Amanda L. Zacharias, William J. Zacharias
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Research Article Infectious disease Pulmonology

Early cell-autonomous and niche-mediated epithelial response to influenza infection in primary alveolar organoids

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Abstract

Influenza A virus (IAV) infection is a major cause of morbidity and mortality for patients worldwide. Alveolar type 2 (AT2) cells are the preferential target of IAV as part of the pathogenesis of viral pneumonia and acute respiratory distress syndrome (ARDS). Early IAV infection of alveolar cells has been challenging to model both in vitro and in vivo. To address this challenge, we used a combination of murine and human primary alveolar organoids to define methods for robust IAV infection and evaluated cell-autonomous consequences of IAV using a temporal series of multiome paired single-nucleus RNA and ATAC sequencing assays. Infected AT2 cells demonstrated conserved changes defined by early loss of surfactant secretion, decreased lipid biogenesis, a rapid burst of antiviral response, and late virus-mediated suppression. Surprisingly, uninfected AT2 cells underwent substantial transcriptional and epigenomic changes in IAV-treated cultures, leading to transition to damage-associated cell states within hours via a process driven by the inflammatory milieu of murine organoids. Together, these data provide methods for high-fidelity modeling of IAV infection in alveolar cells and defined a conserved AT2 cell response signature to IAV with implications for ARDS pathogenesis.

Authors

Amber Elitz, Sharlene Fernandes, Kathleen C.S. Cook, Helen I. Warheit-Niemi, Barbara Zhao, Andrea Toth, Amanda L. Zacharias, William J. Zacharias

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Figure 7

Single-nucleus analysis of flu infection in human AEOs.

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Single-nucleus analysis of flu infection in human AEOs.
(A) Schematic de...
(A) Schematic describing the coculture of freshly sorted human epithelial cells with MRC5 fibroblasts from a single 4-year-old donor for creation of hundreds of human AEOs. (B) IHC demonstrating clear punctate SPC expression in human AEOs; we noted relatively low-level HT2-280 expression in established AEO culture. (C and D) Dynamics of PR8 IAV infection in AEOs, showing high levels of nuclear NP expression (C), which is quantified in D. (E and F) UMAP projection (E) and cell marker gene expression (F) of cell states found in human AEOs. (G and H) UMAP of AT2 cell subset (G) and quantification (H) showing imputed flu infection state as was done for murine organoids. (I and J) Strip plots showing differentially expressed genes (I) or differentially accessible chromatin regions (J) in Uninfected versus Unexposed, Early Infected versus Uninfected, and Late Infected versus Early Infected human AT2 cells. Scale bars: 50 μm. Statistics in D via 1-way ANOVA with prespecified multiple comparisons.

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ISSN 2379-3708

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