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Effect of Polyurethane (PU) - Bioactive Glass (BG) Ratio on the Development of BG Reinforced PU Scaffold

机译:聚氨酯(PU) - 生物活性玻璃(BG)比率对BG增强PU支架发育的影响

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Nowadays, variety of biomaterials may be used to produce implanted scaffolds such as metal-based, ceramic-based and polymer-based materials. In this study, porous bioactive glass (BG) reinforced polyurethane (PU) composite scaffolds with different PU:BG mass ratio (10 to 40 wt%) were fabricated as a potential candidate for synthetic bone graft. The PU-BG scaffolds were prepared using solvent casting combined with salt leaching (SCPL) method and were subjected to several characterizations including fourier transform infra-red (FTIR) spectroscopy, scanning electron microscopy (SEM) and energy dispersive x-ray spectroscopy (EDX). FTIR spectrum showed the trace of BG particles in the PU-BG scaffolds with high concentration of BG (30 and 40 wt%). EDX confirmed that the white particles in the PU-BG scaffold as observed via SEM micrograph were BG particles. A slightly round and irregular pore structures were observed for the PU-BG scaffolds prepared in this study. More homogeneous pore structures were observed as the amount of BG in the PU-BG scaffold is increased. The overall pore size for all scaffolds was in the range of 130 to 400 μm which is suitable for the growth of bone tissue.
机译:如今,各种生物材料可用于生产植入的支架,例如金属基,陶瓷基和基于聚合物基材料。在该研究中,具有不同PU:Bg质量比(10至40wt%)的多孔生物活性玻璃(BG)增强的聚氨酯(PU)复合支架被制成合成骨移植物的潜在候选物。使用溶剂浇铸与盐浸出(SCPL)方法组合制备PU-BG支架,并进行几种特征,包括傅立叶变换红外(FTIR)光谱,扫描电子显微镜(SEM)和能量分散X射线光谱(EDX )。 FTIR光谱显示PU-BG支架中的BG颗粒的痕迹,具有高浓度的BG(30和40wt%)。 EDX确认,PU-BG支架中的白色颗粒如通过SEM显微照片观察到的是Bg颗粒。对于本研究制备的PU-BG支架,观察到略微圆形和不规则的孔结构。观察到更均匀的孔结构,因为PU-BG支架中的BG的量增加。所有支架的整体孔径在130至400μm的范围内,适用于骨组织的生长。

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