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Published on: January 23, 2019
Bone Marrow-derived Cells Contribute to the Pathogenesis of Pulmonary Arterial Hypertension
Ling Yan1, Xinping Chen2, Megha Talati2
11 Division of Medical Genetics and Genomic Medicine, Department of Pediatrics.
Rationale:
Pulmonary arterial hypertension (PAH) is a progressive lung disease of the pulmonary microvasculature. Studies suggest that bone marrow (BM)-derived circulating cells may play an important role in its pathogenesis.
Objectives:
We used a genetic model of PAH, the Bmpr2 mutant mouse, to study the role of BM-derived circulating cells in its pathogenesis.
Methods:
Recipient mice, either Bmpr2(R899X) mutant or controls, were lethally irradiated and transplanted with either control or Bmpr2(R899X) BM cells. Donor cells were traced in female recipient mice by Y chromosome painting. Molecular and function insights were provided by expression and cytokine arrays combined with flow cytometry, colony-forming assays, and competitive transplant assays.
Measurements And Main Results:
We found that mutant BM cells caused PAH with remodeling and inflammation when transplanted into control mice, whereas control BM cells had a protective effect against the development of disease, when transplanted into mutant mice. Donor BM-derived cells were present in the lungs of recipient mice. Functional and molecular analysis identified mutant BM cell dysfunction suggestive of a PAH phenotype soon after activation of the transgene and long before the development of lung pathology.
Conclusions:
Our data show that BM cells played a key role in PAH pathogenesis and that the transplanted BM cells were able to drive the lung phenotype in a myeloablative transplant model. Furthermore, the specific cell types involved were derived from hematopoietic stem cells and exhibit dysfunction long before the development of lung pathology.
Insights
Bone marrow cells drive pulmonary arterial hypertension (PAH) development. Mutant bone marrow cells caused PAH, while healthy cells protected against it, indicating early cell dysfunction before lung pathology.
Area of Science:
- Cardiovascular Research
- Pulmonary Medicine
- Hematology
Background:
- Pulmonary arterial hypertension (PAH) is a progressive disease affecting lung microvasculature.
- Bone marrow (BM)-derived circulating cells are implicated in PAH pathogenesis.
Purpose of the Study:
- Investigate the role of BM-derived circulating cells in PAH pathogenesis using a genetic mouse model.
- Utilize the Bmpr2 mutant mouse to elucidate cellular contributions to PAH.
Main Methods:
- Employ a myeloablative bone marrow transplant model in Bmpr2 mutant and control mice.
- Trace donor cells using Y chromosome painting and analyze molecular/functional changes via flow cytometry and assays.
Main Results:
- Transplantation of mutant BM cells into control mice induced PAH, characterized by remodeling and inflammation.
- Control BM cells conferred protection against PAH development in mutant mice.
- Mutant BM cells exhibited dysfunction preceding lung pathology, identified through molecular and functional analyses.
Conclusions:
- Bone marrow cells play a critical role in driving PAH pathogenesis.
- Hematopoietic stem cell-derived dysfunction in BM cells contributes to PAH development.
- Cellular dysfunction occurs significantly before the onset of observable lung pathology in PAH.
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