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Inhibition of the VEGF receptor 2 combined with chronic hypoxia causes cell death‐dependent pulmonary endothelial cell proliferation and severe pulmonary hypertension

The FASEB Journal · 2001 · Vol. 15(2) · pp. 427–438
Laimute Taraseviciene‐StewartYasunori KasaharaLori AlgerPeter HirthGerald M. MahonJohannes WaltenbergerNorbert F. VoelkelRubin M. Tuder

Abstract

Our understanding of the pathobiology of severe pulmonary hypertension, usually a fatal disease, has been hampered by the lack of information of its natural history. We have demonstrated that, in human severe pulmonary hypertension, the precapillary pulmonary arteries show occlusion by proliferated endothelial cells. Vascular endothelial growth factor (VEGF) and its receptor 2 (VEGFR-2) are involved in proper maintenance, differentiation, and function of endothelial cells. We demonstrate here that VEGFR-2 blockade with SU5416 in combination with chronic hypobaric hypoxia causes severe pulmonary hypertension associated with precapillary arterial occlusion by proliferating endothelial cells. Prior to and concomitant with the development of severe pulmonary hypertension, lungs of chronically hypoxic SU5416-treated rats show significant pulmonary endothelial cell death, as demonstrated by activated caspase 3 immunostaining and TUNEL. The broad caspase inhibitor Z-Asp-CH2-DCB prevents the development of intravascular pulmonary endothelial cell growth and severe pulmonary hypertension caused by the combination of SU5416 and chronic hypoxia.

Pulmonary Hypertension Research and TreatmentsCircular RNAs in diseasesAngiogenesis and VEGF in CancerPulmonary hypertensionHypoxia (environmental)MedicineVascular endothelial growth factorEndothelial stem cellAngiogenesisImmunostainingPathologyInternal medicineCardiology

MeSH terms

AnimalsHypoxiaBlood PressureCell DivisionEndothelium, VascularHeart VentriclesHypertension, PulmonaryIndolesMaleMuscle, Smooth, VascularMyocardiumPulmonary ArteryPyrrolesCell DeathRats, Sprague-Dawley
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