Publication | Open Access
Bone Bricks: The Effect of Architecture and Material Composition on the Mechanical and Biological Performance of Bone Scaffolds
18
Citations
39
References
2022
Year
Tissue EngineeringEngineeringMechanical EngineeringBone RepairBiomedical EngineeringBiological PerformanceBone BricksOsteoporosisOrthopaedic SurgerySynthetic Bone SubstituteBiomechanicsBone RemodelingBone ScaffoldsBiomaterial ModelingBioceramicSize GradientsMaterials ScienceFunctional Tissue Engineering3D BioprintingMechanical PropertiesNative BoneMedicineMechanics Of Materials
Large bone loss injuries require high-performance scaffolds with an architecture and material composition resembling native bone. However, most bone scaffold studies focus on three-dimensional (3D) structures with simple rectangular or circular geometries and uniform pores, not able to recapitulate the geometric characteristics of the native tissue. This paper addresses this limitation by proposing novel anatomically designed scaffolds (bone bricks) with nonuniform pore dimensions (pore size gradients) designed based on new lay-dawn pattern strategies. The gradient design allows one to tailor the properties of the bricks and together with the incorporation of ceramic materials allows one to obtain structures with high mechanical properties (higher than reported in the literature for the same material composition) and improved biological characteristics.
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