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Nanostructured bioactive glass coating on porous hydroxyapatite scaffold for strength enhancement

机译:多孔羟基磷灰石支架上的纳米结构生物活性玻璃涂层,可增强强度

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摘要

Many attempts have been focused on preparing highly porous scaffolds with appropriate mechanical strength. This paper has developed a new route to enhance the compressive strength of porous HA (hydroxyapatite) scaffold (porosity: ~83%, mean pore size:~800 μm). Briefly this route included nanostructure coating of bioactive glass on struts of porous HA. Coating microstructure consisted of the grains with the range between 91 and 320 nm and micron size pores that could be detected by SEM observation. This simple method improved the compressive strength of highly porous HA from 0.22 to 1.49 MPa. The obtained scaffolds provided good mechanical support while maintaining bioactivity so they could be used as tissue engineering scaffolds for low-load bearing applications.
机译:许多尝试已集中在制备具有适当机械强度的高度多孔的支架上。本文开发了一条新的途径来提高多孔HA(羟基磷灰石)支架的抗压强度(孔隙度:〜83%,平均孔径:〜800μm)。简要地,该途径包括在多孔HA的支柱上的生物活性玻璃的纳米结构涂层。涂层的微观结构由91-320 nm范围内的晶粒和可通过SEM观察发现的微米大小的孔组成。这种简单的方法将高孔隙度HA的压缩强度从0.22 MPa提高到1.49 MPa。所获得的支架在保持生物活性的同时提供了良好的机械支撑,因此可用作低负荷应用的组织工程支架。

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