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Bone Response to Surface-Modified Titanium Implants: Studies on the Early Tissue Response to Implants with Different Surface Characteristics

机译:对表面改性钛植入物的骨反应:对具有不同表面特征的植入物的早期组织反应的研究

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摘要

In a series of experimental studies, the bone formation around systematically modified titanium implants is analyzed. In the present study, three different surface modifications were prepared and evaluated. Glow-discharge cleaning and oxidizing resulted in a highly stoichiometric TiO2 surface, while a glow-discharge treatment in nitrogen gas resulted in implants with essentially a surface of titanium nitride, covered with a very thin titanium oxide. Finally, hydrogen peroxide treatment of implants resulted in an almost stoichiometric TiO2, rich in hydroxyl groups on the surface. Machined commercially pure titanium implants served as controls. Scanning Auger Electron Spectroscopy, Scanning Electron Microscopy, and Atomic Force Microscopy revealed no significant differences in oxide thickness or surface roughness parameters, but differences in the surface chemical composition and apparent topography were observed. After surface preparation, the implants were inserted in cortical bone of rabbits and evaluated after 1, 3, and 6 weeks. Light microscopic evaluation of the tissue response showed that all implants were in contact with bone and had a large proportion of newly formed bone within the threads after 6 weeks. There were no morphological differences between the four groups. Our study shows that a high degree of bone contact and bone formation can be achieved with titanium implants of different surface composition and topography.
机译:在一系列实验研究中,分析了系统修饰的钛植入物周围的骨形成。在本研究中,准备并评估了三种不同的表面改性。辉光放电的清洁和氧化产生了高度化学计量的TiO2表面,而氮气中的辉光放电处理导致植入物的表面基本上是氮化钛,表面覆盖着非常薄的氧化钛。最终,对植入物进行过氧化氢处理产生了近乎化学计量的TiO2,其表面富含羟基。机械加工的纯钛植入物用作对照。扫描俄歇电子能谱,扫描电子显微镜和原子力显微镜显示在氧化物厚度或表面粗糙度参数上没有显着差异,但是观察到表面化学组成和明显的形貌差异。表面处理后,将植入物插入兔子的皮质骨中,并在1、3和6周后进行评估。光学显微镜对组织反应的评估显示,所有植入物都在6周后与骨接触,并且在螺纹内有很大一部分新形成的骨。四组之间在形态上没有差异。我们的研究表明,不同表面组成和形貌的钛植入物可以实现高度的骨接触和骨形成。

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