Publication | Closed Access
Porous hydroxyapatite and gelatin/hydroxyapatite microspheres obtained by calcium phosphate cement emulsion
81
Citations
33
References
2011
Year
Tissue EngineeringEngineeringBiomimetic MaterialsBiomaterials DesignBiofabricationBiomedical EngineeringSol-gel SynthesisCalcium Phosphate CementBioactive MaterialSynthetic Bone SubstituteRegenerative BiomaterialsBioceramicMatrix BiologyPorous HydroxyapatiteMaterials ScienceGelatin/hydroxyapatite MicrospheresOil EmulsionBiomolecular EngineeringBiopolymer GelBiomanufacturingHydroxyapatiteHybrid Gelatine/hydroxyapatite MicrospheresHard Tissue EngineeringMedicineBiomaterialsBiocompatible Material
Hydroxyapatite and hybrid gelatine/hydroxyapatite microspheres were obtained through a water in oil emulsion of a calcium phosphate cement (CPC). The setting reaction of the CPC, in this case the hydrolysis of α-tricalcium phosphate, was responsible for the consolidation of the microspheres. After the setting reaction, the microspheres consisted of an entangled network of hydroxyapatite crystals, with a high porosity and pore sizes ranging between 0.5 and 5 μm. The size of the microspheres was tailored by controlling the viscosity of the hydrophobic phase, the rotation speed, and the initial powder size of the CPC. The incorporation of gelatin increased the sphericity of the microspheres, as well as their size and size dispersion. To assess the feasibility of using the microspheres as cell microcarriers, Saos-2 cells were cultured on the microspheres. Fluorescent staining, SEM studies, and LDH quantification showed that the microspheres were able to sustain cell growth. Cell adhesion and proliferation was significantly improved in the hybrid gelatin/hydroxyapatite microspheres as compared to the hydroxyapatite ones.
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