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Generation of 3D Whole Lung Organoids from Induced Pluripotent Stem Cells for Modeling Lung Developmental Biology and Disease
Published on: April 12, 2021
Lung Progenitor and Stem Cell Transplantation as a Potential Regenerative Therapy for Lung Diseases
1Department of Biomedical Engineering, Carnegie Mellon University, Pittsburgh, PA.
Abstract:
Chronic lung diseases are debilitating illnesses ranking among the top causes of death globally. Currently, clinically available therapeutic options capable of curing chronic lung diseases are limited to lung transplantation, which is hindered by donor organ shortage. This highlights the urgent need for alternative strategies to repair damaged lung tissues. Stem cell transplantation has emerged as a promising avenue for regenerative treatment of the lung, which involves delivery of healthy lung epithelial progenitor cells that subsequently engraft in the injured tissue and further differentiate to reconstitute the functional respiratory epithelium. These transplanted progenitor cells possess the remarkable ability to self-renew, thereby offering the potential for sustained long-term treatment effects. Notably, the transplantation of basal cells, the airway stem cells, holds the promise for rehabilitating airway injuries resulting from environmental factors or genetic conditions such as cystic fibrosis. Similarly, for diseases affecting the alveoli, alveolar type II cells have garnered interest as a viable alveolar stem cell source for restoring the lung parenchyma from genetic or environmentally induced dysfunctions. Expanding upon these advancements, the use of induced pluripotent stem cells to derive lung progenitor cells for transplantation offers advantages such as scalability and patient specificity. In this review, we comprehensively explore the progress made in lung stem cell transplantation, providing insights into the current state of the field and its future prospects.
Insights
Stem cell transplantation offers a promising regenerative therapy for chronic lung diseases, addressing the limitations of lung transplantation. This approach utilizes lung epithelial progenitor cells for tissue repair and long-term treatment effects.
Area of Science:
- Regenerative Medicine
- Pulmonology
- Stem Cell Biology
Background:
- Chronic lung diseases are a leading cause of global mortality.
- Current treatments, like lung transplantation, face significant limitations, such as organ donor shortages.
- There is a critical need for alternative therapeutic strategies to repair damaged lung tissue.
Purpose of the Study:
- To review the advancements in stem cell transplantation for treating chronic lung diseases.
- To explore the potential of various lung stem cell sources for regenerative therapy.
- To discuss the future prospects of lung stem cell transplantation.
Main Methods:
- Review of current literature on lung stem cell transplantation.
- Analysis of different stem cell types (basal cells, alveolar type II cells, induced pluripotent stem cells) for lung repair.
- Discussion of the engraftment and differentiation potential of transplanted progenitor cells.
Main Results:
- Stem cell transplantation shows promise for regenerating damaged lung epithelium.
- Basal cells are suitable for airway injury repair, while alveolar type II cells can restore lung parenchyma.
- Induced pluripotent stem cells offer scalable and patient-specific lung progenitor cells.
Conclusions:
- Stem cell transplantation is a viable regenerative strategy for chronic lung diseases.
- Targeting specific lung stem cell populations can address various lung pathologies.
- Further research into induced pluripotent stem cell-derived lung progenitors holds significant therapeutic potential.
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