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Engineering angiogenesis following spinal cord injury: A coculture of neural progenitor and endothelial cells in a degradable polymer implant leads to an increase in vessel density and formation of the blood-spinal cord barrier
- Publication Year :
- 2009
-
Abstract
- Angiogenesis precedes recovery following spinal cord injury and its extent correlates with neural regeneration, suggesting that angiogenesis may play a role in repair. An important precondition for studying the role of angiogenesis is the ability to induce it in a controlled manner. Previously, we showed that a coculture of endothelial cells (ECs) and neural progenitor cells (NPCs) promoted the formation of stable tubes in vitro and stable, functional vascular networks in vivo in a subcutaneous model. We sought to test whether a similar coculture would lead to the formation of stable functional vessels in the spinal cord following injury. We created microvascular networks in a biodegradable two-component implant system and tested the ability of the coculture or controls (lesion control, implant alone, implant + ECs or implant + NPCs) to promote angiogenesis in a rat hemisection model of spinal cord injury. The coculture implant led to a fourfold increase in functional vessels compared with the lesion control, implant alone or implant + NPCs groups and a twofold increase in functional vessels over the implant + ECs group. Furthermore, half of the vessels in the coculture implant exhibited positive staining for the endothelial barrier antigen, a marker for the formation of the blood-spinal cord barrier. No other groups have shown positive staining for the blood-spinal cord barrier in the injury epicenter. This work provides a novel method to induce angiogenesis following spinal cord injury and a foundation for studying its role in repair.
- Subjects :
- Pathology
medicine.medical_specialty
Cord
Angiogenesis
Neovascularization, Physiologic
Article
Lesion
Rats, Sprague-Dawley
Polylactic Acid-Polyglycolic Acid Copolymer
Absorbable Implants
medicine
Animals
Lactic Acid
Spinal cord injury
Cells, Cultured
Spinal Cord Injuries
Progenitor
Tissue Engineering
Tissue Scaffolds
business.industry
General Neuroscience
Microcirculation
Endothelial Cells
Hydrogels
Anatomy
medicine.disease
Spinal cord
Neural stem cell
Coculture Techniques
Glycolates
Rats
Disease Models, Animal
medicine.anatomical_structure
Treatment Outcome
Spinal Cord
Blood-Brain Barrier
Blood Vessels
Female
Implant
medicine.symptom
Rats, Transgenic
business
Polyglycolic Acid
Stem Cell Transplantation
Subjects
Details
- Language :
- English
- Database :
- OpenAIRE
- Accession number :
- edsair.doi.dedup.....8781c99b42c5ae623cb68b51b8c0d643