Journal of Composites Science · 2021 · 19 citations · 28 references
Tissue EngineeringEngineeringMechanical EngineeringBiomaterials DesignBone RepairFabrication TechniquesBiofabricationBiomedical EngineeringOrthopaedic SurgeryRegenerative MedicineSynthetic Bone SubstituteRegenerative BiomaterialsBone RemodelingMaterials ScienceRegenerative EngineeringStructural HybridFunctional Tissue EngineeringMechanical PropertiesPotential Bone ReplacementFreeze FoamingMedicineBiomaterials
The authors report on the manufacturing of mechanically stable β-tricalcium phosphate (β-TCP) structural hybrid scaffolds via the combination of additive manufacturing (CerAM VPP) and Freeze Foaming for engineering a potential bone replacement. In the first step, load bearing support structures were designed via FE simulation and 3D printed by CerAM VPP. In the second step, structures were foamed-in with a porous and degradable calcium phosphate (CaP) ceramic that mimics porous spongiosa. For this purpose, Fraunhofer IKTS used a process known as Freeze Foaming, which allows the foaming of any powdery material and the foaming-in into near-net-shape structures. Using a joint heat treatment, both structural components fused to form a structural hybrid. This bone construct had a 25-fold increased compressive strength compared to the pure CaP Freeze Foam and excellent biocompatibility with human osteoblastic MG-63 cells when compared to a bone grafting Curasan material for benchmark.
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Recent advance in surface modification for regulating cell adhesion and behaviors
Shuxiang Cai, Chuanxiang Wu, Wenguang Yang et al. · Nanotechnology Reviews · 2020 · 607 citations · Full text
Carl E. Misch, Zhimin Qu, Martha Warren Bidez · Journal of Oral and Maxillofacial Surgery · 1999 · 482 citations