Publication | Closed Access
PAM‐Microfabricated Polyurethane Scaffolds: <i>in vivo</i> and <i>in vitro</i> Preliminary Studies
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Citations
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References
2007
Year
Tissue EngineeringPu ScaffoldsEngineeringBiomaterials DesignFabrication TechniquesBiofabricationBiomedical EngineeringOctagonal GridsBioactive MaterialRegenerative MedicineRegenerative BiomaterialsPolymer ChemistryMaterials ScienceVascular Tissue EngineeringFunctional Tissue EngineeringCell BiologyPolymer SciencePolyurethane ScaffoldsMedicineBiomaterialsPolymeric ScaffoldsBiocompatible MaterialExtracellular Matrix
Polymeric scaffolds were realised with linear degradable PU in the form of square, hexagonal and octagonal grids. They were characterised in terms of their mechanical properties. Analysis shows that the mechanical properties of the scaffolds depend on their geometries which are easily modulated using PAM. In vitro biological assays showed that PU promotes the adhesion and proliferation of fibroblast cells and that cell activities are better on PU scaffolds than on PU films. In vivo implantation of PU and PLGA scaffolds and PU films demonstrated that the scaffolds are completely resorbed after three months with a slight inflammatory response, while the PU film was still present after six months with an intense granulomatous reaction.
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