Initial apoptosis is followed by increased proliferation of apoptosis‐resistant endothelial cells
- 3 May 2005
- journal article
- Published by Wiley in The FASEB Journal
- Vol. 19 (9), 1178-1180
- https://doi.org/10.1096/fj.04-3261fje
Abstract
We have demonstrated that VEGF receptor blockade in combination with chronic hypoxia causes in rats severe angioproliferative pulmonary hypertension (SAPH) associated with arterial occlusion by proliferating endothelial cells, and we postulate that the established, lumen-occluding lesions are the result of the emergence of apoptosis-resistant proliferating cells. To study the dependence of exuberant endothelial cell proliferation on initial apoptosis, we adapted the CELLMAX artificial capillary system to analyze the effects of a VEGF receptor antagonist (SU5416) on human pulmonary microvascular endothelial cells under pulsatile shear stress. Immunohistochemical staining for caspase-3 and PCNA and flow cytometry for Annexin-V and BrdU supported our concept, since SU5416 caused initial apoptosis (35.8% at 24 h after the SU5416 addition and 4.8% in control cells) whereas the surviving cells became hyperproliferative (PCNA positive). Flow cytometry showed that apoptosis inhibition prevented the proliferation following the initial apoptosis. These lumen-filling endothelial cells were apoptosis resistant, grew without serum, and were phenotypically altered in that they express the tumor marker survivin. Hyperproliferative apoptosis-resistant cells were also generated by adding apoptosed cells instead of the VEGF receptor blocker to the CELLMAX system. In conclusion, endothelial cell death resulted in the selection of an apoptosis-resistant, proliferating phenotypically altered endothelial cell phenotype.Keywords
Funding Information
- National Institutes of Health (5P01 HL66254‐03 PI)
- Japan Health Sciences Foundation
This publication has 24 references indexed in Scilit:
- Big Mitogen-Activated Protein Kinase (BMK1)/ERK5 Protects Endothelial Cells From ApoptosisCirculation Research, 2004
- Peroxisome Proliferator-Activated Receptor Gamma (PPARγ) Expression Is Decreased in Pulmonary Hypertension and Affects Endothelial Cell GrowthCirculation Research, 2003
- Long-term intravenous epoprostenol infusion in primary pulmonary hypertensionJournal of the American College of Cardiology, 2002
- Inhibition of the VEGF receptor 2 combined with chronic hypoxia causes cell death‐dependent pulmonary endothelial cell proliferation and severe pulmonary hypertensionThe FASEB Journal, 2001
- Inhaled Nitric Oxide Versus Aerosolized Iloprost in Secondary Pulmonary Hypertension in Children With Congenital Heart DiseaseCirculation, 2001
- Inhibition of VEGF receptors causes lung cell apoptosis and emphysemaJournal of Clinical Investigation, 2000
- Expression of vascular endothelial growth factor and its receptors correlates closely with formation of the plexiform lesion in human pulmonary hypertensionPathology International, 2000
- Three-Dimensional Reconstruction of Pulmonary Arteries in Plexiform Pulmonary Hypertension Using Cell-Specific MarkersThe American Journal of Pathology, 1999
- Vascular Endothelial Growth Factor Regulates Endothelial Cell Survival through the Phosphatidylinositol 3′-Kinase/Akt Signal Transduction PathwayJournal of Biological Chemistry, 1998
- Vascular endothelial growth factor acts as a survival factor for newly formed retinal vessels and has implications for retinopathy of prematurityNature Medicine, 1995