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Biphasic calcium phosphate nanocomposite porous scaffolds for load-bearing bone tissue engineering.

机译:用于承载骨组织工程的双相磷酸钙纳米复合多孔支架。

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摘要

A novel biodegradable nanocomposite porous scaffold comprising a beta-tricalcium phosphate (beta-TCP) matrix and hydroxyl apatite (HA) nanofibers was developed and studied for load-bearing bone tissue engineering. HA nanofibers were prepared with a biomimetic precipitation method. The composite scaffolds were fabricated by a method combining the gel casting and polymer sponge techniques. The role of HA nanofibers in enhancing the mechanical properties of the scaffold was investigated. Compression tests were performed to measure the compressive strength, modulus and toughness of the porous scaffolds. The identification and morphology of HA nanofibers were determined by X-ray diffraction and transmission electron microscopy, respectively. Scanning electron microscopy was used to examine the morphology of porous scaffolds and fracture surfaces to reveal the dominant toughening mechanisms. The results showed that the mechanical property of the scaffold was significantly enhanced by the inclusion of HA nanofibers. The porous composite scaffold attained a compressive strength of 9.8+/-0.3MPa, comparable to the high-end value (2-10MPa) of cancellous bone. The toughness of the scaffold increased from 1.00+/-0.04 to 1.72+/-0.02kN/m, as the concentration of HA nanofibers increased from 0 to 5wt %.
机译:开发了一种新型的可生物降解的纳米复合多孔支架,该支架包含β-磷酸三钙(β-TCP)基质和羟基磷灰石(HA)纳米纤维,并用于承载骨组织工程研究。 HA纳米纤维采用仿生沉淀法制备。通过结合凝胶浇铸和聚合物海绵技术的方法来制造复合支架。研究了HA纳米纤维在增强支架机械性能方面的作用。进行压缩测试以测量多孔支架的压缩强度,模量和韧性。 HA纳米纤维的鉴定和形态分别通过X射线衍射和透射电子显微镜确定。扫描电子显微镜用于检查多孔支架和断裂表面的形态,以揭示主要的增韧机理。结果表明,通过包含HA纳米纤维,支架的机械性能得到显着增强。多孔复合支架的抗压强度为9.8 +/- 0.3MPa,与松质骨的高端值(2-10MPa)相当。随着HA纳米纤维的浓度从0wt%增加到5wt%,支架的韧性从1.00 +/- 0.04增加到1.72 +/- 0.02kN / m。

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