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Effect of hydroxyapatite on biodegradable scaffolds fabricated by SLS

机译:羟基磷灰石对SLS制造的生物降解支架的影响

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Selective laser sintering (SLS) has the potential to fabricate bioresorbable polymer / ceramic composite scaffolds with pre-designed external and internal architecture that can be used for bone tissue engineering applications. Scaffolds were fabricated using poly-e-caprolactone as the base material. The effect of 15 and 30 wt% of hydroxyapatite (HA) addition was investigated in terms of compressive properties, accuracy, surface topology, and wettability. Fabricated dimensions of PCL microstructures showed great deviations from their nominal values. Average surface roughness was found to be Ra=25±4 ìm. Increased HA content had no statistically significant effect on accuracy and surface roughness. However the addition of HA had a significant influence on compressive properties, hydrophobicity and wettability of the samples. Addition of 30 wt% HA improved initial compressive modulus of pure PCL scaffolds from 1.31±0.08 MPa to 1.58±0.18 MPa. Yield strength values increased from 0.14±0.07 MPa to 0.17±0.01 MPa by adding 15 wt% of HA, but decreased with further HA addition. Yield strain for all compositions was over s=0.06. Increased HA content decreased hydrophobicity and increased wettability of scaffold surfaces. The study demonstrated the ability of SLS to fabricate tissue engineering scaffolds, and the positive effect of HA particle reinforcement in terms of compressive mechanical properties and surface characteristics.
机译:选择性激光烧结(SLS)有可能使用预先设计的外部和内部架构制造生物或陶瓷复合支架,可用于骨组织工程应用。使用聚 - 己内酯作为基础材料制造支架。在压缩性能,精度,表面拓扑结构和润湿性方面研究了15和30wt%的羟基磷灰石(HA)添加的作用。 PCL微观结构的制造尺寸显示出与其标称值的偏差很大。发现平均表面粗糙度是Ra = 25±4ìM。 HA含量增加对精度和表面粗糙度没有统计学显着的影响。然而,A1A的添加对样品的压缩性质,疏水性和润湿性具有显着影响。添加30wt%HA改善纯PCL支架的初始压缩模量从1.31±0.08MPa到1.58±0.18MPa。通过加入15wt%的HA增加,屈服强度值从0.14±0.07MPa增加到0.17±0.01MPa,但随着HA加入进一步减少。所有组合物的产株菌株均超过S = 0.06。增加的HA含量降低疏水性和支架表面的润湿性增加。该研究表明了SLS制造组织工程支架的能力,以及在压缩机械性能和表面特性方面的HA颗粒增强的积极作用。

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