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EpCAM+CD73+ mark epithelial progenitor cells in postnatal human lung and is associated with pathogenesis of pulmonary disease including lung adenocarcinoma

Authors :
Cedric Simillion
Stefan A. Tschanz
Sean Hall
Patrick Dorn
Ralph A. Schmid
Carlos Wotzkow
Ueli Moehrlen
Laurène Froment
Sabina Berezowska
Limei Wang
Beat Haenni
Thomas M. Marti
Peter K. Bode
Ren-Wang Peng
Fabian Blank
Source :
Wang, Limei; Dorn, Patrick; Simillion, Cedric; Froment, Laurène; Berezowska, Sabina Anna; Tschanz, Stefan A.; Haenni, Beat; Blank, Fabian; Wotzkow, Carlos; Peng, Ren-Wang; Marti, Thomas; Bode, Peter Karl; Moehrlen, Ueli; Schmid, Ralph; Hall, Sean (2020). EpCAM+CD73+ mark epithelial progenitor cells in postnatal human lung and is associated with pathogenesis of pulmonary disease including lung adenocarcinoma. American journal of physiology-lung cellular and molecular physiology, 319(5), L794-L809. American Physiological Society 10.1152/ajplung.00279.2019
Publication Year :
2020
Publisher :
American Physiological Society, 2020.

Abstract

Lung injury in mice induces mobilization of discrete subsets of epithelial progenitor cells to promote new airway and alveolar structures. However, whether similar cell types exist in human lung remains unresolved. Using flow cytometry, we identified a distinct cluster of cells expressing the epithelial cell adhesion molecule (EpCAM), a cell surface marker expressed on epithelial progenitor cells, enriched in the ecto-5′-nucleotidase CD73 in unaffected postnatal human lungs resected from pediatric patients with congenital lung lesions. Within the EpCAM+CD73+ population, a small subset coexpresses integrin β4 and HTII-280. This population remained stable with age. Spatially, EpCAM+CD73+ cells were positioned along the basal membrane of respiratory epithelium and alveolus next to CD73+ cells lacking EpCAM. Expanded EpCAM+CD73+ cells give rise to a pseudostratified epithelium in a two-dimensional air–liquid interface or a clonal three-dimensional organoid assay. Organoids generated under alveolar differentiation conditions were cystic-like and lacked robust alveolar mature cell types. Compared with unaffected postnatal lung, congenital lung lesions were marked by clusters of EpCAM+CD73+ cells in airway and cystic distal lung structures lined by simple epithelium composed of EpCAM+SCGB1A1+ cells and hyperplastic EpCAM+proSPC+ cells. In non-small-cell lung cancer (NSCLC), there was a marked increase in EpCAM+CD73+ tumor cells enriched in inhibitory immune checkpoint molecules CD47 and programmed death-ligand 1 (PD-L1), which was associated with poor survival in lung adenocarcinoma (LUAD). In conclusion, EpCAM+CD73+ cells are rare novel epithelial progenitor cells in the human lung. Importantly, reemergence of CD73 in lung adenocarcinoma enriched in negative immune checkpoint molecules may serve as a novel therapeutic target.

Details

Language :
English
Database :
OpenAIRE
Journal :
Wang, Limei; Dorn, Patrick; Simillion, Cedric; Froment, Laur&#232;ne; Berezowska, Sabina Anna; Tschanz, Stefan A.; Haenni, Beat; Blank, Fabian; Wotzkow, Carlos; Peng, Ren-Wang; Marti, Thomas; Bode, Peter Karl; Moehrlen, Ueli; Schmid, Ralph; Hall, Sean (2020). EpCAM+CD73+ mark epithelial progenitor cells in postnatal human lung and is associated with pathogenesis of pulmonary disease including lung adenocarcinoma. American journal of physiology-lung cellular and molecular physiology, 319(5), L794-L809. American Physiological Society 10.1152/ajplung.00279.2019 <http://dx.doi.org/10.1152/ajplung.00279.2019>
Accession number :
edsair.doi.dedup.....55e85950bcf80d168385bfe9b68cd0b7
Full Text :
https://doi.org/10.1152/ajplung.00279.2019