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Highly bioactive nano-hydroxyapatite/partially stabilized zirconia ceramics

机译:高生物活性的纳米羟基磷灰石/部分稳定的氧化锆陶瓷

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Nanocrystalline hydroxyapatite (HA) powders have been synthesized by precipitation using Ca(NO3)2.4H2O and (NH4)2 HPO4 at room temperature and atmospheric pressure. Nanocomposites of HA and partially stabilized zirconia (HA/PSZ) were sintered at atmospheric pressure and 1300℃ for 2h in air. The preparation techniques, structure and mechanical properties of these materials were characterized. The addition of nanosized PSZ reinforcing phase to HA may lead to an improvement of the macro and micro mechanical properties and not affect its biocompatibility and bioactivity. The bending strength, fracture toughness and nano-hardness were near to or greater than those for human cortical bone and human tooth (dentine and enamel). The composite was incubated in a fresh human plasma which confirmed the bioactivity of nanosized HA/PSZ materials. The bonding reaction between HA/PSZ ceramic and the plasma proteins was found, and hematopoietic cell phosphatase (HCP) layers formed on surface of each composite incubated in human plasma for two weeks.The diameter of a single HCP globule was less than 100 nm. Furthermore, the precipitating mechanism investigation was carried out through a comparative experiment in this paper.
机译:纳米晶羟基磷灰石(HA)粉末是通过在室温和大气压下使用Ca(NO3)2.4H2O和(NH4)2 HPO4沉淀法合成的。将HA和部分稳定的氧化锆(HA / PSZ)的纳米复合材料在大气压力和1300℃下在空气中烧结2小时。表征了这些材料的制备技术,结构和力学性能。向HA中添加纳米级PSZ增强相可导致宏观和微观机械性能的提高,并且不影响其生物相容性和生物活性。弯曲强度,断裂韧性和纳米硬度接近或大于人类皮质骨和牙齿(牙质和牙釉质)的抗弯强度,断裂韧性和纳米硬度。将复合物在新鲜的人血浆中孵育,这证实了纳米级HA / PSZ材料的生物活性。发现HA / PSZ陶瓷与血浆蛋白发生键合反应,在人血浆中孵育2周后,每种复合物的表面均形成了造血细胞磷酸酶(HCP)层,单个HCP小球的直径小于100 nm。此外,本文通过比较实验对沉淀机理进行了研究。

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