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Biomimetic modification of porous TiNbZr alloy scaffold for bone tissue engineering.

机译:用于骨组织工程的多孔TiNbZr合金支架的仿生改性。

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摘要

Porous titanium (Ti) and Ti alloys are important scaffold materials for bone tissue engineering. In the present study, a new type of porous Ti alloy scaffold with biocompatible alloying elements, that is, niobium (Nb) and zirconium (Zr), was prepared by a space-holder sintering method. This porous TiNbZr scaffold with a porosity of 69% exhibits a mechanical strength of 67 MPa and an elastic modulus of 3.9 GPa, resembling the mechanical properties of cortical bone. To improve the osteoconductivity, a calcium phosphate (Ca/P) coating was applied to the surface of the scaffold using a biomimetic method. The biocompatibility of the porous TiNbZr alloy scaffold before and after the biomimetic modification was assessed using the SaOS2 osteoblast-like cells. Cell culture results indicated that the porous TiNbZr scaffold is more favorable for cell adhesion and proliferation than its solid counterpart. By applying a Ca/P coating, the cell proliferation rate on the Ca/P-coated scaffold was significantly improved. The results suggest that high-strength porous TiNbZr scaffolds with an appropriate osteoconductive coating could be potentially used for bone tissue engineering application.
机译:多孔钛(Ti)和Ti合金是用于骨组织工程的重要支架材料。在本研究中,通过空间固结烧结法制备了一种新型的具有生物相容性合金元素的新型多孔钛合金支架,即铌(Nb)和锆(Zr)。孔隙率为69%的多孔TiNbZr支架表现出67 MPa的机械强度和3.9 GPa的弹性模量,类似于皮质骨的机械性能。为了改善骨传导性,使用仿生方法将磷酸钙(Ca / P)涂层施加到支架的表面。使用SaOS2成骨细胞样细胞评估了仿生修饰前后的多孔TiNbZr合金支架的生物相容性。细胞培养结果表明,多孔TiNbZr支架比固体支架更有利于细胞粘附和增殖。通过施加Ca / P涂层,可以显着提高Ca / P涂层支架上的细胞增殖速率。结果表明,具有适当骨传导涂层的高强度多孔TiNbZr支架可潜在地用于骨组织工程应用。

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