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Doped tricalcium phosphate bone tissue engineering scaffolds using sucrose as template and microwave sintering: enhancement of mechanical and biological properties

机译:掺杂的磷酸钙骨组织工程支架使用蔗糖作为模板和微波烧结:改善机械和生物学性质

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摘要

beta-tricalcium phosphate (beta-TCP) is a widely used biocompatible ceramic in orthopedic and dental applications. However, its osteoinductivity and mechanical properties still require improvements. In this study, porous beta TCP and MgO/ZnO-TCP scaffolds were prepared by the thermal decomposition of sucrose. Crack-free cylindrical scaffolds could only be prepared with the addition of MgO and ZnO due to their stabilization effects. Porous MgO/ZnO-TCP scaffolds with a density of 6139 +/- 0.66%, an estimated pore size of 200 mu m and a compressive strength of 24.96 +/- 3.07 MPa were prepared by using 25 wt% sucrose after conventional sintering at 1250 degrees C. Microwave sintering further increased the compressive strength to 37.94 +/- 6.70 MPa, but it decreased the open interconnected porosity to 8.74 +/- 138%. In addition, the incorporation of polycaprolactone (PCL) increased 2236 +/- 3.22% of toughness while maintaining its compressive strength at 25.45 +/- 2.21 MPa. Human osteoblast cell line was seeded on scaffolds to evaluate the effects of MgO/ZnO and PCL on the biological property of (beta-TCP in vitro. Both MgO/ZnO and PCL improved osteoinductivity of beta-TCP. PCL also decreased osteoblastic apoptosis due to its particular surface chemistry. This novel porous MgO/ZnO-TCP scaffold with PCL shows improved mechanical and biological properties, which has great potential in bone tissue engineering applications. (C) 2017 Published by Elsevier B.V.
机译:β-磷酸钙(β-TCP)是在整形外科和牙科应用中广泛使用的生物相容性陶瓷。然而,其骨诱导性和机械性能仍然需要改进。在该研究中,通过蔗糖的热分解制备多孔βTCP和MgO / ZnO-TCP支架。由于其稳定效应,可以仅通过添加MgO和ZnO来制备无裂缝的圆柱形支架。密度为6139 +/- 0.66%的多孔MgO / ZnO-TCP支架,估计孔径为200μm和24.96 +/- 3.07MPa的抗压强度,在1250时使用25wt%蔗糖制备24.96 +/- 3.07MPa测度C.微波烧结进一步增加了抗压强度至37.94 +/- 6.70MPa,但它降低了开放的互连孔隙率至8.74 +/- 138%。此外,聚己内酯(PCL)的掺入增加了2236 +/- 3.22%的韧性,同时保持其抗压强度在25.45 +/- 2.21MPa。将人骨细胞系接种在支架上,以评估MgO / ZnO和PCL对(β-TCP体外β-TCP的生物特性的影响。MgO / ZnO和PCL改善β-TCP的骨诱导性。PCL也降低了骨细胞凋亡其特殊的表面化学。具有PCL的这种新型多孔MgO / ZnO-TCP支架显示出改善的机械和生物学性质,这在骨组织工程应用中具有很大的潜力。(c)2017由Elsevier BV发布

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