Publication | Open Access
Grafting of bovine serum albumin proteins on plasma-modified polymers for potential application in tissue engineering
43
Citations
17
References
2014
Year
Tissue EngineeringEngineeringCell AdhesionBiomaterials DesignPolyelectrolyte GelPotential ApplicationBiofabricationTissue TransplantationBiomedical EngineeringRegenerative MedicineMatrix BiologyPolymer ChemistryPlasma-treated PolyethyleneBiomolecular EngineeringBiofunctional MaterialProtein EngineeringSubstrate SurfaceBovine Serum AlbuminMedicineBiomaterialsBiocompatible MaterialExtracellular MatrixPlasma-modified Polymers
In this work, an influence of bovine serum albumin proteins grafting on the surface properties of plasma-treated polyethylene and poly-l-lactic acid was studied. The interaction of the vascular smooth muscle cells with the modified polymer surface was determined. The surface properties were characterized by X-ray photoelectron spectroscopy, atomic force microscopy, nano-LC-ESI-Q-TOF mass spectrometry, electrokinetic analysis, and goniometry. One of the motivations for this work is the idea that by the interaction of the cell with substrate surface, the proteins will form an interlayer between the cell and the substrate. It was proven that when interacting with the plasma-treated high-density polyethylene and poly-l-lactic acid, the bovine serum albumin protein is grafted on the polymer surface. Since the proteins are bonded to the substrate surface, they can stimulate cell adhesion and proliferation.
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