Lung‐specific nuclear reprogramming is accompanied by heterokaryon formation and Y chromosome loss following bone marrow transplantation and secondary inflammation
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Summary
In the setting of post‐transplant inflammation, pneumocyte‐specific reprogramming of transplanted BMDCs predominantly derives from heterokaryon formation, but this process does not reverse inflammation caused by Sp‐C deficiency; nevertheless, further investigation may identify phenotypes benefiting from such an approach.
- Type
- article
- Published
- 2007-08-01
- Cited by
- 48
- References
- 31
- Access
- Open access
- OpenAlex
- https://openalex.org/W17449722
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:39653992
Keywords
Autism, Visual arts education, Visual arts, Art, Psychology
References
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- Threshold of Lung Injury Required for the Appearance of Marrow‐Derived Lung Epithelia
- Stable reprogrammed heterokaryons form spontaneously in Purkinje neurons after bone marrow transplant
- Biological progression from adult bone marrow to mononucleate muscle stem cell to multinucleate muscle fiber in response to injury.
- Fusion of bone-marrow-derived cells with Purkinje neurons, cardiomyocytes and hepatocytes
- CFTR regulates phagosome acidification in macrophages and alters bactericidal activity
- Bone marrow-derived cells fuse with normal and transformed intestinal stem cells.
- Limited restoration of cystic fibrosis lung epithelium in vivo with adult bone marrow-derived cells.
- Radiation pneumonitis in mice: a severe injury model for pneumocyte engraftment from bone marrow.
- In vivo genetic selection of renal proximal tubules.
- Evidence that bone marrow cells do not contribute to the alveolar epithelium.
- Genetic control of transforming growth factor-beta1-induced emphysema and fibrosis in the murine lung.
- Cell fusion is the principal source of bone-marrow-derived hepatocytes
- Predominant fusion of bone marrow-derived cardiomyocytes.
Cited by
- Cell-fusion-mediated reprogramming: pluripotency or transdifferentiation? Implications for regenerative medicine.
- The cancer cell--leukocyte fusion theory of metastasis.
- Cellular therapies for lung disease: A distant horizon
- Assessing Plasticity : The Populations Responsible for the Epithelial Engraftment on Marrow-Derived Cells
- Cell fusion is a physiological process in mouse liver
- Extensive fusion of haematopoietic cells with Purkinje neurons in response to chronic inflammation
- Cigarette Smoke Exposure during Pregnancy Alters Fetomaternal Cell Trafficking Leading to Retention of Microchimeric Cells in the Maternal Lung
- Hematopoietic and Mesenchymal Stem Cells for the Treatment of Chronic Respiratory Diseases: Role of Plasticity and Heterogeneity
- Stem cells and cell therapies for cystic fibrosis and other lung diseases.
- Detection of Bone Marrow Derived Lung Epithelial Cells
- Stem Cells and Cell Therapy Approaches in Lung Biology and Diseases
- Lung stem cells
- Bone Marrow-Derived Cells from Male Donors Do Not Contribute to the Endometrial Side Population of the Recipient
- In Vitro Assessment of Migratory Behavior of Two Cell Populations in a Simple Multichannel Microdevice
- Contribution of Bone Marrow-Derived Hematopoietic Stem/Progenitor Cells to the Generation of Donor-Marker+ Cardiomyocytes In Vivo
- Hepatocyte Nuclear Factor‐1 as Marker of Epithelial Phenotype Reveals Marrow‐Derived Hepatocytes, but Not Duct Cells, After Liver Injury in Mice
- Stem cell therapy for cystic fibrosis: current status and future prospects
- Fusion of tumour cells with bone marrow-derived cells: a unifying explanation for metastasis
- Bone marrow-derived lung epithelial cells.
- Nonhematopoietic Cells are the Primary Source of Bone Marrow-Derived Lung Epithelial Cells
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