Publication | Closed Access
Hyaluronic acid hydrogels with IKVAV peptides for tissue repair and axonal regeneration in an injured rat brain
118
Citations
21
References
2007
Year
Tissue EngineeringEngineeringBiomaterials DesignBiofabricationBiomedical EngineeringHyaluronic Acid HydrogelsIkvav PeptidesRegenerative MedicineHydrogelsBioactive MaterialNeuroregenerationAxonal GrowthMatrix BiologyTissue RepairTissue InjuryPolymer HydrogelFunctional Tissue EngineeringNeural Tissue EngineeringCell BiologyTissue RegenerationNeuroscienceWound HealingCentral Nervous SystemMedicineBiocompatible MaterialExtracellular Matrix
A biocompatible hydrogel of hyaluronic acid with the neurite-promoting peptide sequence of IKVAV was synthesized. The characterization of the hydrogel shows an open porous structure and a large surface area available for cell interaction. Its ability to promote tissue repair and axonal regeneration in the lesioned rat cerebrum is also evaluated. After implantation, the polymer hydrogel repaired the tissue defect and formed a permissive interface with the host tissue. Axonal growth occurred within the microstructure of the network. Within 6 weeks the polymer implant was invaded by host-derived tissue, glial cells, blood vessels and axons. Such a hydrogel matrix showed the properties of neuron conduction. It has the potential to repair tissue defects in the central nervous system by promoting the formation of a tissue matrix and axonal growth by replacing the lost tissue.
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