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Alveolar repair following LPS-induced injury requires cell-ECM interactions
Jennifer M.S. Sucre, … , Roy Zent, Erin J. Plosa
Jennifer M.S. Sucre, … , Roy Zent, Erin J. Plosa
Published June 6, 2023
Citation Information: JCI Insight. 2023;8(14):e167211. https://doi.org/10.1172/jci.insight.167211.
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Research Article Cell biology Pulmonology

Alveolar repair following LPS-induced injury requires cell-ECM interactions

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Abstract

During alveolar repair, alveolar type 2 (AT2) epithelial cell progenitors rapidly proliferate and differentiate into flat AT1 epithelial cells. Failure of normal alveolar repair mechanisms can lead to loss of alveolar structure (emphysema) or development of fibrosis, depending on the type and severity of injury. To test if β1-containing integrins are required during repair following acute injury, we administered E. coli lipopolysaccharide (LPS) by intratracheal injection to mice with a postdevelopmental deletion of β1 integrin in AT2 cells. While control mice recovered from LPS injury without structural abnormalities, β1-deficient mice had more severe inflammation and developed emphysema. In addition, recovering alveoli were repopulated with an abundance of rounded epithelial cells coexpressing AT2 epithelial, AT1 epithelial, and mixed intermediate cell state markers, with few mature type 1 cells. AT2 cells deficient in β1 showed persistently increased proliferation after injury, which was blocked by inhibiting NF-κB activation in these cells. Lineage tracing experiments revealed that β1-deficient AT2 cells failed to differentiate into mature AT1 epithelial cells. Together, these findings demonstrate that functional alveolar repair after injury with terminal alveolar epithelial differentiation requires β1-containing integrins.

Authors

Jennifer M.S. Sucre, Fabian Bock, Nicholas M. Negretti, John T. Benjamin, Peter M. Gulleman, Xinyu Dong, Kimberly T. Ferguson, Christopher S. Jetter, Wei Han, Yang Liu, Seunghyi Kook, Jason J. Gokey, Susan H. Guttentag, Jonathan A. Kropski, Timothy S. Blackwell, Roy Zent, Erin J. Plosa

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Figure 5

Overabundant AT2 cells are transcriptionally distinct during repair in β1AT2-KO mice.

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Overabundant AT2 cells are transcriptionally distinct during repair in β...
(A) Uniform manifold approximation and projection (UMAP) of all epithelial cells from β1fl/fl and β1AT2-KO lungs with/without LPS clustered by label transfer from Strunz et al. (11). (B) Individual epithelial populations by group reveal transcriptionally distinct AT2s and activated AT2s in day 7 LPS-treated β1AT2-KO lungs. (C) Ingenuity Pathway Analysis (QIAGEN) on combined AT2 groups from uninjured β1fl/fl and β1AT2-KO lungs demonstrates upregulation of oxidative stress, senescence, and inflammatory pathways in β1AT2-KO lungs compared with β1fl/fl lungs. (D) Ingenuity Pathway Analysis shows upregulation of actin cytoskeleton signaling pathways in β1AT2-KO AT2 cells compared with β1fl/fl AT2 cells at 7 days after LPS treatment.

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