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首页> 外文期刊>Acta biomaterialia >Development and characterization of titanium-containing hydroxyapatite for medical applications.
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Development and characterization of titanium-containing hydroxyapatite for medical applications.

机译:含钛羟基磷灰石用于医疗应用的开发与表征。

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摘要

Hydroxyapatite containing levels of titanium (TiHA) of up to 1.6 wt.% has been produced via a chemical co-precipitation route. The distribution of Ti was seen by transmission electron microscopy/energy-dispersive X-ray analysis to be uniform throughout as-prepared nanosized TiHA particles (20 nm x 100 nm). The incorporation of Ti into the HA structure was found to influence the ceramic microstructure on sintering and the grain size was found to decrease from 0.89 microm with HA to 0.63 microm with 0.8 wt.% TiHA (0.8 TiHA) and 0.45 microm with 1.6 wt.% TiHA (1.6 TiHA). Rietveld refinement analysis showed that there was a proportional increase in both the a and c axis with incorporation of Ti into the HA lattice structure, leading to an increase in the cell volume with the addition of Ti. Fourier transform-Raman analysis showed a slight increase in the ratio of O-H/P-O peaks on TiHA, in comparison with HA. A bone-like apatite layer was formed on the surface of TiHA after immersion in simulated body fluid for 3 days, which demonstrated the high in vitro bioactivity of TiHA. In vitro culture with primary human osteoblast (HOB) cells revealed that TiHA was able to support the growth and proliferation of HOB cells in vitro, with a significantly higher cell activity being observed on 0.8 TiHA after 7 days of culture in comparison with that on HA. Well-organized actin cytoskeletal protein was developed after 1 day of culture, and an increase in cell filopodia (attachment) was observed on TiHA sample surfaces. The results indicate that TiHA has great potential for biomedical applications.
机译:含有高达1.6重量%的羟基磷灰石含量高达1.6重量%。通过化学共沉淀途径生产%。通过透射电子显微镜/能量分散X射线分析观察Ti的分布,以均匀地制备的纳米颗粒(20nm×100nm)均匀。发现Ti进入HA结构的掺入烧结时的陶瓷微观结构,发现晶粒尺寸从0.89微米的0.89微米,0.8重量%的0.8重量%。 %tiha(1.6 tiha)。 RIETVELD改进分析表明,A和C轴的成比例增加,并将TI掺入HA格子结构,导致细胞体积增加,加入TI。与HA相比,傅里叶变形式分析显示TIHA上的O-H / P-O峰比的比率略有增加。在浸入模拟体液浸泡3天后形成骨状磷灰石层3天,这表明了TIHA的高体外生物活性。用原发性人骨细胞(滚刀)细胞的体外培养表明,TIHA能够在体外支持体外滚液体细胞的生长和增殖,在7天的培养后,在培养物的7天后观察到显着更高的细胞活性。组织良好的肌动蛋白细胞骨架蛋白在培养1天后开发,在TIHA样品表面上观察到细胞丝透露症(附着)的增加。结果表明,TIHA对生物医学应用具有很大的潜力。

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