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Modeling lung diseases using reversibly immortalized mouse pulmonary alveolar type 2 cells (imPAC2).

Linghuan ZhangWenping LuoJiang LiuMaozhu XuQi PengWenjing ZouJingyi YouYi ShuPiao ZhaoWilliam WagstaffGuozhi ZhaoKevin QinRex C HaydonHue H LuuRussell R ReidYang BiTianyu ZhaoTong-Chuan HeZhou Fu
Published in: Cell & bioscience (2022)
AT2-enriched subpopulation (i.e., imPAC2) was sorted out from the imPACs, and was shown to express AT2 markers and form alveolar organoids. Functionally, silencing β-catenin decreased the expression of AT2 markers in imPAC2 cells, while TGF-β1 induced fibrosis-like response by regulating the expression of epithelial-mesenchymal transition markers in the imPAC2 cells. Lastly, concurrent expression of oncogenic KRAS and mutant TP53 rendered the imPAC2 cells a tumor-like phenotype and activated lung cancer-associated pathways. Collectively, our results suggest that the imPAC2 cells may faithfully represent AT2 populations that can be further explored to model pulmonary diseases.
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