Cadherin-11 Regulation of Type II Alveolar Epithelial Cells During Pulmonary Fibrosis

Type II alveolar epithelial cell (AT2) injury has been hypothesized to contribute to pulmonary fibrosis. Cadherin-11 (CDH11) is a mediator of fibrosis and is upregulated on AT2s during lung fibrosis. Herein, the regulation of the AT2 by CDH11 during pulmonary fibrosis was investigated. CDH11 levels were increased in lung samples from patients with idiopathic pulmonary fibrosis (IPF) compared with those from healthy controls. CDH11 expression was inversely correlated with lung function. Cdh11 deficient mice were compared with wild type mice in the intraperitoneal bleomycin model (IP BLM), and the role of the AT2 was investigated using Cdh11 floxed-SPC-Cre mice and in vitro techniques. In the IP BLM model of pulmonary fibrosis, genetic removal of Cdh11 and CDH11 neutralization with monoclonal antibodies reduced pulmonary fibrosis and expression of epithelial injury and mesenchymal markers. Colocalization studies demonstrated that CDH11 was co-expressed with ⍺-SMA on AT2s during fibrosis and inhibition of CDH11 prevented CDH11 co-expression. Furthermore, CDH11 expression was associated with the expression of the AT2 transitional cell marker KRT8 in both in vivo and in vitro studies. Finally, in vitro studies demonstrated that CDH11 engagement, but not N-cadherin engagement, could drive expression of mesenchymal markers in AT2s. Finally, AT2 selective deletion of Cdh11 reduced pulmonary fibrosis in the IP BLM model, confirming that CDH11 regulates the AT2 during the development of lung fibrosis. These data demonstrate that CDH11 is a key regulator of AT2 injury and mesenchymal gene expression during the development of lung fibrosis.

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Publication Details

Journal
American Journal of Physiology-Cell Physiology
Published
2026-09-16
DOI
https://doi.org/10.1152/ajpcell.00164.2026
Primary Topic
Interstitial Lung Diseases and Idiopathic Pulmonary Fibrosis
Type
article
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article

Cadherin-11 Regulation of Type II Alveolar Epithelial Cells During Pulmonary Fibrosis

Sandeep K. Agarwal, Thandiwe Chavula, Mesias Pedroza, Harry Karmouty‐Quintana et al.
American Journal of Physiology-Cell Physiology
Interstitial Lung Diseases and Idiopathic Pulmonary Fibrosis
article

Cadherin-11 Regulation of Type II Alveolar Epithelial Cells During Pulmonary Fibrosis

Sandeep K. Agarwal, Thandiwe Chavula, Mesias Pedroza, Harry Karmouty‐Quintana, Tingting Mills, Sarah To, Jennifer Smith
article en

Abstract

Type II alveolar epithelial cell (AT2) injury has been hypothesized to contribute to pulmonary fibrosis. Cadherin-11 (CDH11) is a mediator of fibrosis and is upregulated on AT2s during lung fibrosis. Herein, the regulation of the AT2 by CDH11 during pulmonary fibrosis was investigated. CDH11 levels were increased in lung samples from patients with idiopathic pulmonary fibrosis (IPF) compared with those from healthy controls. CDH11 expression was inversely correlated with lung function. Cdh11 deficient mice were compared with wild type mice in the intraperitoneal bleomycin model (IP BLM), and the role of the AT2 was investigated using Cdh11 floxed-SPC-Cre mice and in vitro techniques. In the IP BLM model of pulmonary fibrosis, genetic removal of Cdh11 and CDH11 neutralization with monoclonal antibodies reduced pulmonary fibrosis and expression of epithelial injury and mesenchymal markers. Colocalization studies demonstrated that CDH11 was co-expressed with ⍺-SMA on AT2s during fibrosis and inhibition of CDH11 prevented CDH11 co-expression. Furthermore, CDH11 expression was associated with the expression of the AT2 transitional cell marker KRT8 in both in vivo and in vitro studies. Finally, in vitro studies demonstrated that CDH11 engagement, but not N-cadherin engagement, could drive expression of mesenchymal markers in AT2s. Finally, AT2 selective deletion of Cdh11 reduced pulmonary fibrosis in the IP BLM model, confirming that CDH11 regulates the AT2 during the development of lung fibrosis. These data demonstrate that CDH11 is a key regulator of AT2 injury and mesenchymal gene expression during the development of lung fibrosis.

American Journal of Physiology-Cell Physiology
Baylor College of Medicine (US), The University of Texas Health Science Center at Houston (US)
National Heart, Lung, and Blood Institute, National Institute of Arthritis and Musculoskeletal and Skin Diseases, Congressionally Directed Medical Research Programs
Good health and well-being
Openalex Percentile: Top 11%
Interstitial Lung Diseases and Idiopathic Pulmonary Fibrosis
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