The neurovascular unit and its growth factors: coordinated response in the vascular and nervous systems
- 1 December 2004
- journal article
- review article
- Published by Taylor & Francis in Neurological Research
- Vol. 26 (8) , 870-883
- https://doi.org/10.1179/016164104x3798
Abstract
The nervous and vascular systems contain many common organizational features and develop similarly in terms of anatomical patterning. During embryogenesis and in regions of the brain undergoing postnatal neurogenesis, neural stem cells and endothelial cells are found in close proximity, or within a so-called vascular niche. The similarities in patterning and proximity may reflect coordinated development based on responsiveness to similar growth factors such as vascular endothelial growth factor, semaphorin, and ephrins/Ephs: molecules involved in the development and maintenance of both the nervous and vascular systems. Despite the blatant similarities between the vascular and nervous systems, little is still known about the co-dependence and/or interactions between the two systems during development and following alterations in metabolic demand as seen during aging, exercise, and disease processes. The interactions between the two systems involving common growth factors suggest these two systems have evolved in an interconnected way.Keywords
This publication has 202 references indexed in Scilit:
- Angiopoietin 1 expression levels in the myocardium direct coronary vessel developmentDevelopmental Dynamics, 2004
- Graded Positional Information: Interpretation for Both Fate and GuidanceCell, 2003
- The angiopoietins and Tie2/Tek: adding to the complexity of cardiovascular developmentSeminars in Cell & Developmental Biology, 2002
- VEGF165 mediates formation of complexes containing VEGFR‐2 and neuropilin‐1 that enhance VEGF165‐receptor bindingJournal of Cellular Biochemistry, 2002
- Vascular niche for adult hippocampal neurogenesisJournal of Comparative Neurology, 2000
- Hypoxia-Induced Vascular Endothelial Growth Factor Expression Precedes Neovascularization after Cerebral IschemiaThe American Journal of Pathology, 2000
- Abnormal Cerebellar Development and Foliation in BDNF−/− Mice Reveals a Role for Neurotrophins in CNS PatterningNeuron, 1997
- Matrix degrading metalloproteinasesJournal of Neuro-Oncology, 1994
- The origin and development of retinal astrocytes in the mouseJournal of Neurocytology, 1992
- Direct evidence that complex experience increases capillary branching and surface area in visual cortex of young ratsDevelopmental Brain Research, 1988