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Design and Development of Potential Tissue Engineering Scaffolds from Structurally Different Longitudinal Parts of a Bovine-Femur

机译:牛股骨纵向不同部位的潜在组织工程支架的设计和开发

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The complex architecture of the cortical part of the bovine-femur was examined to develop potential tissue engineering (TE) scaffolds. Weight-change and X-ray diffraction (XRD) results show that significant phase transformation and morphology conversion of the bone occur at 500–750°C and 750–900°C, respectively. Another breakthrough finding was achieved by determining a sintering condition for the nucleation of hydroxyapatite crystal from bovine bone via XRD technique. Scanning electron microscopy results of morphological growth suggests that the concentration of polymer fibrils increases (or decreases, in case of apatite crystals) from the distal to proximal end of the femur. Energy-dispersive analysis of X-ray, Fourier transform infrared, micro-computer tomography, and mechanical studies of the actual composition also strongly support our microscopic results and firmly indicate the functionally graded material properties of bovine-femur. Bones sintered at 900 and 1000°C show potential properties for soft and hard TE applications, respectively.
机译:检查了牛股骨皮质部分的复杂结构,以开发潜在的组织工程(TE)支架。重量变化和X射线衍射(XRD)结果表明,分别在500–750°C和750–900°C下发生了明显的骨骼相变和形态转变。通过确定通过XRD技术从牛骨中羟基磷灰石晶体成核的烧结条件,实现了另一个突破性发现。形态生长的扫描电子显微镜结果表明,从股骨的远端到近端,聚合物原纤维的浓度增加(或减少,在磷灰石晶体的情况下)。 X射线能量色散分析,傅立叶变换红外光谱,微型计算机断层扫描以及实际成分的力学研究也为我们的微观结果提供了有力支持,并坚定地表明了牛股骨的功能分级材料性能。在900和1000°C下烧结的骨头分别显示出软和硬TE应用的潜在性能。

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