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Biocompatible porous titanium scaffolds produced using a novel space holder technique

机译:使用新型空间架技术生产的生物相容性多孔钛支架

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We describe a new fabrication strategy for production of porous titanium scaffolds for skeletal implants which provides a promising new approach to repair and remodel damaged bone tissue. The new strategy involves powder sintering of titanium powder, employing pharmaceutical sugar pellets as temporary space holders, to facilitate production of porous scaffolds with structures optimized for mechanical performance and osseointegration of implants. The spherical sugar pellets, with controlled size fractions and excellent biocompatibility, are easily removed by dissolution prior to sintering providing an ideal space holder material for controlled synthesis of titanium scaffolds with desired porosities and pore sizes. The scaffolds contain pores with high degrees of sphericity and interconnectivity which impart excellent mechanical properties and superior biocompatibility to the structures. Scaffolds with 40% porosity and a pore size range of 300-425 mu m exhibited an effective Young's modulus of 16.4 +/- 3.5 GPa and strength of 176 +/- 6 MPa, which closely mimics the properties of human bone, and were also able to support cell adhesion, viability and spreading in cell culture tests. Porous titanium scaffolds manufactured by this approach have excellent potential for hard tissue engineering applications. (c) 2018 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 106B: 2796-2806, 2018.
机译:我们描述了一种新的制造策略,用于生产多孔钛支架,用于骨骼植入物,提供了一种有希望的修复和改造骨组织的新方法。新策略涉及粉末烧结钛粉末,采用药物糖颗粒作为临时空间支架,以促进多孔支架,具有针对植入物的机械性能和骨整合的结构。通过在烧结之前通过溶解容易地除去具有受控尺寸级分和优异的生物相容性的球形糖颗粒,提供理想的空间夹持器材料,用于控制具有所需孔隙和孔径的钛支架的合成。支架含有具有高球状度和互连性的孔,其赋予结构优异的机械性能和对结构的优异的生物相容性。具有40%孔隙率和孔径范围的支架和300-425亩的孔隙率为16.4 +/- 3.5 GPa的有效模量,强度为176 +/- 6 MPa,这密切模仿了人骨的性质,也是如此能够支持细胞粘附,活力和在细胞培养试验中扩散。这种方法制造的多孔钛支架具有很好的硬组织工程应用潜力。 (c)2018 Wiley期刊,Inc。J生物保解率B部分:Appl Biomater,106B:2796-2806,2018。

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