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HA/nylon 6,6 porous scaffolds fabricated by salt-leaching/solvent casting technique: effect of nano-sized filler content on scaffold properties

机译:通过盐浸/溶剂浇铸技术制备的HA /尼龙6,6多孔支架:纳米级填料含量对支架性能的影响

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摘要

Nanohydroxyapatite (n-HA)/nylon 6,6 composite scaffolds were produced by means of the salt-leaching/solvent casting technique. NaCl with a distinct range size was used with the aim of optimizing the pore network. Composite powders with different n-HA contents (40%, 60%) for scaffold fabrication were synthesized and tested. The composite scaffolds thus obtained were characterized for their microstructure, mechanical stability and strength, and bioactivity. The microstructure of the composite scaffolds possessed a well-developed interconnected porosity with approximate optimal pore size ranging from 200 to 500 μm, ideal for bone regeneration and vascularization. The mechanical properties of the composite scaffolds were evaluated by compressive strength and modulus tests, and the results confirmed their similarity to cortical bone. To characterize bioactivity, the composite scaffolds were immersed in simulated body fluid for different lengths of time and results monitored by scanning electron microscopy and energy dispersive X-ray microanalysis to determine formation of an apatite layer on the scaffold surface.
机译:纳米羟基磷灰石(n-HA)/尼龙6,6复合支架是通过盐浸/溶剂浇铸技术生产的。为了优化孔网络,使用了具有不同范围大小的NaCl。合成并测试了用于支架制造的具有不同n-HA含量(40%,60%)的复合粉末。由此获得的复合支架的微观结构,机械稳定性和强度以及生物活性被表征。复合支架的微观结构具有发达的相互连接的孔隙度,其最佳最佳孔径范围为200至500μm,非常适合骨骼再生和血管形成。通过抗压强度和模量测试评估了复合支架的力学性能,结果证实了它们与皮质骨的相似性。为了表征生物活性,将复合支架浸入模拟体液中不同的时间长度,并通过扫描电子显微镜和能量色散X射线微分析监测结果,以确定支架表面磷灰石层的形成。

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