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Ischemic neurons prevent vascular regeneration of neural tissue by secreting semaphorin 3A.
- Source :
-
Blood [Blood] 2011 Jun 02; Vol. 117 (22), pp. 6024-35. Date of Electronic Publication: 2011 Feb 25. - Publication Year :
- 2011
-
Abstract
- The failure of blood vessels to revascularize ischemic neural tissue represents a significant challenge for vascular biology. Examples include proliferative retinopathies (PRs) such as retinopathy of prematurity and proliferative diabetic retinopathy, which are the leading causes of blindness in children and working-age adults. PRs are characterized by initial microvascular degeneration, followed by a compensatory albeit pathologic hypervascularization mounted by the hypoxic retina attempting to reinstate metabolic equilibrium. Paradoxically, this secondary revascularization fails to grow into the most ischemic regions of the retina. Instead, the new vessels are misdirected toward the vitreous, suggesting that vasorepulsive forces operate in the avascular hypoxic retina. In the present study, we demonstrate that the neuronal guidance cue semaphorin 3A (Sema3A) is secreted by hypoxic neurons in the avascular retina in response to the proinflammatory cytokine IL-1β. Sema3A contributes to vascular decay and later forms a chemical barrier that repels neo-vessels toward the vitreous. Conversely, silencing Sema3A expression enhances normal vascular regeneration within the ischemic retina, thereby diminishing aberrant neovascularization and preserving neuroretinal function. Overcoming the chemical barrier (Sema3A) released by ischemic neurons accelerates the vascular regeneration of neural tissues, which restores metabolic supply and improves retinal function. Our findings may be applicable to other neurovascular ischemic conditions such as stroke.
- Subjects :
- Animals
Aorta cytology
Aorta drug effects
Aorta metabolism
Blotting, Western
Cell Adhesion
Cell Movement
Cell Proliferation
Cells, Cultured
Disease Models, Animal
Endothelium, Vascular cytology
Endothelium, Vascular drug effects
Endothelium, Vascular metabolism
Immunoenzyme Techniques
Interleukin-1beta pharmacology
Ischemia metabolism
Mice
Mice, Inbred C57BL
Neurons metabolism
RNA, Messenger genetics
Rats
Retinal Diseases etiology
Retinal Diseases metabolism
Retinal Ganglion Cells drug effects
Retinal Ganglion Cells metabolism
Retinal Neovascularization
Reverse Transcriptase Polymerase Chain Reaction
Ischemia pathology
Neovascularization, Pathologic
Neurons pathology
Oxygen toxicity
Regeneration
Retinal Diseases pathology
Semaphorin-3A physiology
Subjects
Details
- Language :
- English
- ISSN :
- 1528-0020
- Volume :
- 117
- Issue :
- 22
- Database :
- MEDLINE
- Journal :
- Blood
- Publication Type :
- Academic Journal
- Accession number :
- 21355092
- Full Text :
- https://doi.org/10.1182/blood-2010-10-311589