Combined inhibition of VEGF‐ and PDGF‐signaling enforces tumor vessel regression by interfering with pericyte‐mediated endothelial cell survival mechanisms
- 4 December 2003
- journal article
- research article
- Published by Wiley in The FASEB Journal
- Vol. 18 (2), 1-25
- https://doi.org/10.1096/fj.03-0271fje
Abstract
Destruction of existing tumor blood vessels may be achieved by targeting vascular endothelial growth factor (VEGF) signaling, which mediates not only endothelial cell proliferation but also endothelial cell survival. In this study, however, intravital microscopy failed to demonstrate that targeting of VEGFR-2 (by the tyrosine kinase inhibitor SU5416) induces significant regression of experimental tumor blood vessels. Immunohistochemistry, electron microscopy, expression analyses, and in situ hybridization provide evidence that this resistance of tumor blood vessels to VEGFR-2 targeting is conferred by pericytes that stabilize blood vessels and provide endothelial cell survival signals via the Ang-1/Tie2 pathway. In contrast, targeting VEGFR-2 plus the platelet-derived growth factor receptor (PDGFR)-beta system (PDGFR-beta) signaling (by SU6668) rapidly forced 40% of tumor blood vessels into regression, rendering these tumors hypoxic as shown by phosphorescence quenching. TUNEL staining, electron microscopy, and apoptosis blocking experiments suggest that VEGFR-2 plus PDGFR-beta targeting enforced tumor blood vessel regression by inducing endothelial cell apoptosis. We further show that this is achieved by an interference with pericyte-endothelial cell interaction. This study provides novel insights into the mechanisms of how 1) pericytes may provide escape strategies to anti-angiogenic therapies and 2) novel concepts that target not only endothelial cells but also pericyte-associated pathways involved in vascular stabilization and maturation exert potent anti-vascular effects.Keywords
Funding Information
- European Commission (BMH4‐CT95‐0875)
- Deutsche Forschungsgemeinschaft (DFG SPP1069, VA151/4‐2, UL 60/4‐2, Ha 1755/3‐2)
This publication has 49 references indexed in Scilit:
- Abnormalities in Pericytes on Blood Vessels and Endothelial Sprouts in TumorsThe American Journal of Pathology, 2002
- Selective ablation of immature blood vessels in established human tumors follows vascular endothelial growth factor withdrawalJournal of Clinical Investigation, 1999
- Vascular Endothelial Growth Factor Regulates Endothelial Cell Survival through the Phosphatidylinositol 3′-Kinase/Akt Signal Transduction PathwayJournal of Biological Chemistry, 1998
- PDGF, TGF-β, and Heterotypic Cell–Cell Interactions Mediate Endothelial Cell–induced Recruitment of 10T1/2 Cells and Their Differentiation to a Smooth Muscle FateThe Journal of cell biology, 1998
- Conditional switching of vascular endothelial growth factor (VEGF) expression in tumors: Induction of endothelial cell shedding and regression of hemangioblastoma-like vessels by VEGF withdrawalProceedings of the National Academy of Sciences, 1997
- Vascular endothelial growth factor acts as a survival factor for newly formed retinal vessels and has implications for retinopathy of prematurityNature Medicine, 1995
- Early and Extensive Contribution of Pericytes/Vascular Smooth Muscle Cells to Microvascular Proliferation in Glioblastoma MultiformeJournal of Neuropathology and Experimental Neurology, 1995
- Inhibition of vascular endothelial growth factor-induced angiogenesis suppresses tumour growth in vivoNature, 1993
- The Effect of Cellular Microenvironment on Vessels in the Brain. Part 1: Vessel Structure in Tumour, Peritumour and Brain from Humans with Malignant GliomaInternational Journal of Radiation Biology, 1991
- A quantitative study of blood-brain barrier permeability ultrastructure in a new rat glioma modelActa Neuropathologica, 1985