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Evaluation of Bioactive Glass (13-93) Scaffolds with an Oriented Microstructure for Regenerating Load-bearing Bones

机译:用定向微观结构的生物活性玻璃(13-93)支架的评价,用于再生承载骨骼

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Bioactive glass is an attractive scaffold material for use in filling bone defects because of its widely recognized ability to support the growth of bone cells and to bond firmly with hard and soft tissue. Use of bioactive glasses in the form of porous three-dimensional scaffolds for bone repair applications has been receiving considerable interest in recent years. However, bioactive glass scaffolds have been limited to the repair of low-load bone defects because of their low strength. In the present work, porous and strong bioactive glass scaffolds with an oriented microstructure were prepared by unidirectional freezing of camphene-based suspensions, and evaluated for their ability to regenerate bone in a non-healing rat calvarial defect model. Scaffolds of 13-93 glass (53SiO_2, 6Na_2O, 12K_2O, 5MgO, 20CaO, 4P_2O_5; wt%) with a porosity of 50% and columnar pores of diameter 50-150 μm showed a compressive strength of 47 ± 5 MPa and an elastic modulus of 11 ± 3 GPa. Total bone regeneration in the oriented scaffolds, 18% after implantation for 12 weeks to 24% after 24 weeks, was not significantly different from that in 13-93 scaffolds with a microstructure similar to that of dry human trabecular bone (control group). The results indicated that these oriented bioactive glass (13-93) scaffolds could potentially be used in the regeneration of loaded bone.
机译:生物活性玻璃是一种有吸引力的支架材料,用于填充骨缺损,因为其广泛认识的能力支持骨细胞的生长并用硬组织牢固地粘合。使用生物活性眼镜以多孔三维支架的形式用于骨骼修复应用,近年来一直在接受大量兴趣。然而,由于它们的低强度,生物活性玻璃支架被限制为低负荷骨缺损的修复。在本工作中,通过单向冷冻基于樟烯的悬浮液,对具有取向微观结构的多孔和强大的生物活性玻璃支架,并评价它们在非愈合大鼠颅骨缺陷模型中再生骨的能力。 13-93玻璃的支架(53SiO_2,6na_2O,12k_2O,5MgO,20caO,4p_2O_5; wt%),孔隙率为50%和直径50-150μm的柱状孔,显示出47±5 MPa和弹性模量的抗压强度11±3 GPA。在面向支架中的总骨再生,18%在24周后植入12周至24%,与13-93支架中的微观结构类似于干燥人的小梁骨(对照组)的微观结构没有显着差异。结果表明,这些取向的生物活性玻璃(13-93)支架可能潜在地用于装载骨的再生中。

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