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Updated: Apr 21, 2026

Tracheotomy: A Method for Transplantation of Stem Cells to the Lung
Published on: February 25, 2007
p63(+)Krt5(+) distal airway stem cells are essential for lung regeneration
Wei Zuo1, Ting Zhang1, Daniel Zheng'An Wu1
1Genome Institute of Singapore, A-STAR, 138672 Singapore.
Abstract:
Lung diseases such as chronic obstructive pulmonary disease and pulmonary fibrosis involve the progressive and inexorable destruction of oxygen exchange surfaces and airways, and have emerged as a leading cause of death worldwide. Mitigating therapies, aside from impractical organ transplantation, remain limited and the possibility of regenerative medicine has lacked empirical support. However, it is clinically known that patients who survive sudden, massive loss of lung tissue from necrotizing pneumonia or acute respiratory distress syndrome often recover full pulmonary function within six months. Correspondingly, we recently demonstrated lung regeneration in mice following H1N1 influenza virus infection, and linked distal airway stem cells expressing Trp63 (p63) and keratin 5, called DASC(p63/Krt5), to this process. Here we show that pre-existing, intrinsically committed DASC(p63/Krt5) undergo a proliferative expansion in response to influenza-induced lung damage, and assemble into nascent alveoli at sites of interstitial lung inflammation. We also show that the selective ablation of DASC(p63/Krt5) in vivo prevents this regeneration, leading to pre-fibrotic lesions and deficient oxygen exchange. Finally, we demonstrate that single DASC(p63/Krt5)-derived pedigrees differentiate to type I and type II pneumocytes as well as bronchiolar secretory cells following transplantation to infected lung and also minimize the structural consequences of endogenous stem cell loss on this process. The ability to propagate these cells in culture while maintaining their intrinsic lineage commitment suggests their potential in stem cell-based therapies for acute and chronic lung diseases.
Insights
Distal airway stem cells (DASCs) regenerate lung tissue after influenza infection. These cells are crucial for lung repair and hold potential for treating lung diseases.
Area of Science:
- Pulmonary Medicine
- Regenerative Medicine
- Stem Cell Biology
Background:
- Chronic lung diseases like COPD and pulmonary fibrosis cause progressive lung damage.
- Current therapies are limited, and regenerative medicine for lungs lacks empirical support.
- Clinical observations suggest spontaneous lung function recovery after severe injury.
Purpose of the Study:
- To investigate the role of distal airway stem cells (DASCs) in lung regeneration after influenza-induced damage.
- To determine if DASCs are essential for lung repair and can be used for therapeutic purposes.
Main Methods:
- Studied lung regeneration in mice after H1N1 influenza infection.
- Identified and tracked distal airway stem cells expressing Trp63 (p63) and keratin 5 (DASC(p63/Krt5)).
- Utilized selective ablation of DASCs in vivo and performed DASC transplantation experiments.
Main Results:
- Pre-existing DASC(p63/Krt5) cells proliferated and formed new alveoli in response to influenza damage.
- Ablation of DASC(p63/Krt5) impaired regeneration, leading to fibrosis and reduced oxygen exchange.
- Transplanted DASC(p63/Krt5) cells differentiated into various lung cell types and mitigated damage.
Conclusions:
- DASC(p63/Krt5) cells are critical for lung regeneration following viral injury.
- These cells have the potential for cell-based therapies in treating acute and chronic lung diseases.
- Propagation of DASC(p63/Krt5) in culture maintains their lineage commitment for therapeutic applications.
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