4.7 Article

Clonally selected primitive endothelial cells promote occlusive pulmonary arteriopathy and severe pulmonary hypertension in rats exposed to chronic hypoxia

Journal

SCIENTIFIC REPORTS
Volume 10, Issue 1, Pages -

Publisher

NATURE PUBLISHING GROUP
DOI: 10.1038/s41598-020-58083-7

Keywords

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Funding

  1. NIH/NHLBI [HL123044, HL139881]
  2. VCU School of Medicine Bridge Funding Award
  3. VCU Center for Clinical and Translational Research Endowment Fund
  4. VCU's CTSA from the National Center for Research Resources [UL1TR000058]
  5. NHLBI R24 grant [R24HL123767]
  6. Cardiovascular Medical Research and Education Fund (CMREF)
  7. NIH-NCI Cancer Center Support Grant [P30 CA016059]
  8. National Cancer Institute, Bethesda, MD [P30 CA016058]

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One current concept suggests that unchecked proliferation of clonally selected precursors of endothelial cells (ECs) contribute to severe pulmonary arterial hypertension (PAH). We hypothesized that clonally selected ECs expressing the progenitor marker CD117 promote severe occlusive pulmonary hypertension (PH). The remodelled pulmonary arteries of PAH patients harboured CD117(+) ECs. Rat lung CD117(+) ECs underwent four generations of clonal expansion to enrich hyperproliferative ECs. The resulting clonally enriched ECs behaved like ECs, as measured by in vitro and in vivo angiogenesis assays. The same primitive ECs showed a limited ability for mesenchymal lineage differentiation. Endothelial differentiation and function were enhanced by blocking TGF-beta signalling, promoting bone morphogenic protein (BMP) signalling. The transplantation of the EC clones caused arterio-occlusive PH in rats exposed to chronic hypoxia. These EC clones engrafted in the pulmonary arteries. Yet cessation of chronic hypoxia promoted lung cell apoptosis and resolution of vascular lesions. In conclusion, this is to the best of our knowledge, the first report that clonally enriched primitive ECs promote occlusive pulmonary arteriopathy and severe PH. These primitive EC clones further give rise to cells of endothelial and mesenchymal lineage as directed by BMP and TGF-beta signaling.

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