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3D printed porous β-Casub2/subSiOsub4/sub scaffolds derived from preceramic resin and their physicochemical and biological properties

机译:3D印刷多孔β-Ca <亚> 2 SiO 4 衍生自刻凝树脂的支架及其物理化学和生物学性质

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Silicate bioceramic scaffolds are of great interest in bone tissue engineering, but the fabrication of silicate bioceramic scaffolds with complex geometries is still challenging. In this study, three-dimensional (3D) porous β-Casub2/subSiOsub4/sub scaffolds have been successfully fabricated from preceramic resin loaded with CaCOsub3/sub active filler by 3D printing. The fabricated β-Casub2/subSiOsub4/sub scaffolds had uniform interconnected macropores (ca. 400?μm), high porosity (78%), enhanced mechanical strength (ca. 5.2?MPa), and excellent apatite mineralization ability. Importantly, the results showed that the increase of sintering temperature significantly enhanced the compressive strength and the scaffolds sintered at higher sintering temperature stimulated the adhesion, proliferation, alkaline phosphatase activity, and osteogenic-related gene expression of rat bone mesenchymal stem cells. Therefore, the 3D printed β-Casub2/subSiOsub4/sub scaffolds derived from preceramic resin and CaCOsub3/sub active fillers would be promising candidates for bone tissue engineering.
机译:硅酸盐生物陶瓷支架对骨组织工程具有很大的兴趣,但硅酸盐生物陶瓷支架具有复杂的几何形状仍然具有挑战性。在该研究中,三维(3D)多孔β-Ca 2 SiO 4 支架已从载有Caco 3 2 siO 4 支架具有均匀的互联的大孔(Ca.400≤μm),高孔隙度(> 78%),机械强度增强(约5.2 ?MPA)和优异的磷灰石矿化能力。重要的是,结果表明,烧结温度的增加显着增强了抗压强度,并且在较高烧结温度下烧结的支架刺激了大鼠骨间充质干细胞的粘附,增殖,碱性磷酸酶活性和骨质发生相关基因表达。因此,3D印刷β-CA <亚> 2 SiO 4 衍生自刻凝树脂和Caco 3 活性填料的支架将是骨组织工程的承诺候选者。

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