Publication | Closed Access
Release of bovine serum albumin from a hydrogel‐cored biodegradable polymer fiber
70
Citations
26
References
2006
Year
Tissue EngineeringHydrogelsBiopolymer GelBiomanufacturingEngineeringBiofunctional MaterialPolymer ScienceBiomaterials DesignPolyelectrolyte GelFiber FormatBiofabricationPolysaccharide Pre-hydrogel SolutionBovine Serum AlbuminBiomedical EngineeringCore-sheath Fiber FormatBiodegradable Polymer FiberBiomaterialsPolymer Chemistry
We have developed a novel biodegradable, polymeric fiber construct that is coextruded using a wet-spinning process into a core-sheath format with a polysaccharide pre-hydrogel solution as the core fluid and poly(L-lactic acid) (PLLA) as the sheath. The biodegradable, biocompatible fibers were extruded from polymeric emulsions comprised of solutions of various molecular weights of PLLA dissolved in chloroform and containing dispersed, protein-free aqueous phases comprising up to 10% of the emulsion volume. Biologically sensitive agents can be loaded via a dispersed aqueous phase in the polymer, and/or directly into the polysaccharide. We show that this core-sheath fiber format will load a model protein that can be delivered for extended periods in vitro. Bovine serum albumin (BSA) was loaded into the fiber core as a model protein. We have shown that the greater the volume of the protein-free aqueous phase dispersed into the polymeric continuous-phase emulsion, the greater the total release of BSA encapsulated by a core gel comprised of 1% sodium alginate solution. We conclude this fiber format provides a promising vehicle for in vivo delivery of biological molecules. Its biocompatibility and biodegradability also allow for its use as a possible substrate for tissue engineering applications.
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