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Updated: Jan 21, 2026

Flow Cytometric Isolation of Primary Murine Type II Alveolar Epithelial Cells for Functional and Molecular Studies
Published on: December 26, 2012
Engraftment of wild-type alveolar type II epithelial cells in surfactant protein C deficient mice
Camilla Predella1,2,3, Lauren Lapsley1, Keyue Ni1
1Division of Pediatric Critical Care Medicine and Hospital Medicine, Department of Pediatrics, Columbia University Vagelos College of Physicians and Surgeons, New York, NY, USA.
Insights
Cell therapy offers a promising treatment for childhood interstitial lung disease (chILD) caused by surfactant deficiency. Replacing defective alveolar epithelial type II cells in mice partially restored lung function and reduced injury.
Area of Science:
- Pulmonary Medicine
- Regenerative Medicine
- Genetics
Background:
- Childhood interstitial lung disease (chILD) due to surfactant deficiency causes severe respiratory issues and lung fibrosis.
- Current treatments are limited, with lung transplantation facing organ shortages, especially for pediatric patients.
Purpose of the Study:
- To investigate cell therapy as a potential treatment for chILD by using a mouse model.
- To demonstrate the feasibility of engrafting functional alveolar epithelial type II (ATII) cells to restore lung function.
Main Methods:
- Utilized Sftpc knockout mice, a model mimicking human chILD with surfactant deficiency.
- Administered low-dose bleomycin to condition the lungs for cell engraftment.
- Transplanted wild-type ATII cells into the Sftpc-/- mice.
Main Results:
- Sftpc-/- mice exhibited age-dependent chronic lung disease and increased sensitivity to bleomycin.
- Successful engraftment of wild-type ATII cells was achieved post-bleomycin conditioning.
- Transplanted cells produced surfactant protein C (SPC) and mitigated bleomycin-induced lung injury for up to two months.
Conclusions:
- Partial replacement of mutant ATII cells with functional cells can promote lung repair in a chILD mouse model.
- This study provides proof-of-principle for ATII cell-based therapy in treating surfactant deficiency-related chILD.
- Further research into gene-corrected cell therapy could offer a curative approach for pediatric lung disease.
Abstract:
Childhood interstitial lung disease (chILD) secondary to pulmonary surfactant deficiency is a devastating chronic lung disease in children. Clinical presentation includes mild to severe respiratory failure and fibrosis. There is no specific treatment, except lung transplantation, which is hampered by a severe shortage of donor organs, especially for young patients. Repair of lungs with chILD represents a longstanding therapeutic challenge but cell therapy is a promising strategy. As surfactant is produced by alveolar epithelial type II (ATII) cells, engraftment with normal or gene-corrected ATII cells might provide an avenue to cure. Here, we used a chILD disease-like model, Sftpc-/- mice, to provide proof-of-principle for this approach. Sftpc-/- mice developed chronic interstitial lung disease with age and were hypersensitive to bleomycin. We could engraft wild-type ATII cells after low dose bleomycin conditioning. Transplanted ATII cells produced mature SPC and attenuated bleomycin-induced lung injury up to two months post-transplant. This study demonstrates that partial replacement of mutant ATII cells can promote lung repair in a mouse model of chILD-like disease.
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