Lack of Pericytes Leads to Endothelial Hyperplasia and Abnormal Vascular Morphogenesis
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Open Access
- 30 April 2001
- journal article
- Published by Rockefeller University Press in The Journal of cell biology
- Vol. 153 (3) , 543-554
- https://doi.org/10.1083/jcb.153.3.543
Abstract
The association of pericytes (PCs) to newly formed blood vessels has been suggested to regulate endothelial cell (EC) proliferation, survival, migration, differentiation, and vascular branching. Here, we addressed these issues using PDGF-B– and PDGF receptor-β (PDGFR-β)–deficient mice as in vivo models of brain angiogenesis in the absence of PCs. Quantitative morphological analysis showed that these mutants have normal microvessel density, length, and number of branch points. However, absence of PCs correlates with endothelial hyperplasia, increased capillary diameter, abnormal EC shape and ultrastructure, changed cellular distribution of certain junctional proteins, and morphological signs of increased transendothelial permeability. Brain endothelial hyperplasia was observed already at embryonic day (E) 11.5 and persisted throughout development. From E 13.5, vascular endothelial growth factor-A (VEGF-A) and other genes responsive to metabolic stress became upregulated, suggesting that the abnormal microvessel architecture has systemic metabolic consequences. VEGF-A upregulation correlated temporally with the occurrence of vascular abnormalities in the placenta and dilation of the heart. Thus, although PC deficiency appears to have direct effects on EC number before E 13.5, the subsequent increased VEGF-A levels may further abrogate microvessel architecture, promote vascular permeability, and contribute to formation of the edematous phenotype observed in late gestation PDGF-B and PDGFR-β knock out embryos.Keywords
This publication has 62 references indexed in Scilit:
- Increased Aquaporin-4 Immunoreactivity in Rat Brain in Response to Systemic HyponatremiaBiochemical and Biophysical Research Communications, 2000
- Pathways of Macromolecular Extravasation Across Microvascular Endothelium in Response to VPF/VEGF and Other Vasoactive MediatorsMicrocirculation, 1999
- Pathways of Macromolecular Extravasation Across Microvascular Endothelium in Response to VPF/VEGF and Other Vasoactive MediatorsMicrocirculation, 1999
- 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
- Development of blood-brain barrier tight junctions in the rat cortexDevelopmental Brain Research, 1996
- The pecten oculi of the chicken as a new in vivo model of the blood-brain barrierCell and tissue research, 1996
- Heterozygous embryonic lethality induced by targeted inactivation of the VEGF geneNature, 1996
- Abnormal blood vessel development and lethality in embryos lacking a single VEGF alleleNature, 1996
- Occludin: a novel integral membrane protein localizing at tight junctions.The Journal of cell biology, 1993
- Inhibition of capillary endothelial cell growth by pericytes and smooth muscle cells.The Journal of cell biology, 1987