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Biomaterials ; 29(3): 272-81, 2008 Jan.
Article in English | MEDLINE | ID: mdl-17976717

ABSTRACT

Ocular trauma and disorders that lead to corneal blindness account for over 2 million new cases of monocular blindness every year. A popular ocular surface reconstruction therapy, amniotic membrane transplantation, has been shown to aid corneal wound repair. However, the success rates of the procedure are variable. Here, we proposed to bioengineer a novel synthetic material that would serve as a biomimetic corneal bandage. The PLGA-PEG-PLGA triblock copolymer was synthesised via ring-opening polymerisation. Thermoreversible gelation behaviour was investigated at different polymer concentrations (23%, 30%, 35%, 40%, 45%, w/v) at temperatures ranging between 5 and 60 degrees C. Viscoelastic properties were studied in dynamic mechanical analysis with 1 degrees C/min temperature ramp. Cryo-SEM revealed a porous hydrogel with interconnecting networks. No adverse cytotoxicity was observed with an in vitro scratch-wound assay and in in vivo biocompatibility tests. We have demonstrated that the PLGA-PEG-PLGA hydrogel possessed a suitable gelling profile and, for the first time, the biocompatibility properties for this application as a potential bandage for corneal wound repair.


Subject(s)
Cornea/drug effects , Hydrogel, Polyethylene Glycol Dimethacrylate/metabolism , Hydrogel, Polyethylene Glycol Dimethacrylate/pharmacology , Temperature , Wound Healing/drug effects , Animals , Cells, Cultured , Cornea/surgery , Hydrogel, Polyethylene Glycol Dimethacrylate/chemistry , Lactic Acid/chemistry , Lactic Acid/metabolism , Lactic Acid/pharmacology , Microscopy, Electron, Scanning , Polyethylene Glycols/chemistry , Polyethylene Glycols/metabolism , Polyethylene Glycols/pharmacology , Polyglycolic Acid/chemistry , Polyglycolic Acid/metabolism , Polyglycolic Acid/pharmacology , Polylactic Acid-Polyglycolic Acid Copolymer , Polymers/chemistry , Polymers/metabolism , Polymers/pharmacology , Rabbits , Solutions , Viscosity
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