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评估阳极氧化钛种植体的生物活性。

Assessment of anodized titanium implants bioactivity.

机构信息

Department of Dental biomaterials, Faculty of Dentistry, Mansoura University, Mansoura, Egypt.

出版信息

Clin Oral Implants Res. 2014 Feb;25(2):e1-9. doi: 10.1111/clr.12031. Epub 2012 Nov 23.

Abstract

OBJECTIVES

This study was conducted to create nanostructured surface titanium implants by anodic oxidation process aiming to bring out bioactivity and to assess the resultant bioactivity both in vitro and in vivo.

MATERIALS AND METHODS

An economic protocol was used to apply anodic spark discharge and create surface nanoporosities on grade II commercially pure titanium (cpTi). The in vitro investigation included morphology, surface chemical analysis, roughness and crystalline structure of titanium oxide (TiO₂) film prepared. Assessment of the bioactivity was carried out by immersing the specimens in simulate body fluid (SBF) and investigating the surface-deposited layer. The in vivo investigation was conducted by surgically placing the anodized implants into rabbits tibia for different healing periods. Then biomechanical evaluation was performed to verify the effect of treatments on the interface resistance to shear force. Routine histological analysis was performed to evaluate the bone tissue reactions to anodized implants.

RESULTS

Anodization of titanium implants produced morphological changes, raised the percentage of oxygen in the TiO₂ layer, increased surface area and roughness of implants remarkably, and modified the crystallinity of the film. The in vitro assessments of bioactivity showed that a layer of calcium phosphate was precipitated on the titanium surfaces 7 days after soaking into SBF. The implant-bone interface resistance to shear force was enhanced at 2-week healing period. This was confirmed by histological findings.

CONCLUSION

Nanostructured surface titanium implants could be prepared by anodic oxidation with resultant accelerated bioactivity that may be recommended for early loading.

摘要

目的

本研究通过阳极氧化工艺制备具有纳米结构表面的钛植入物,旨在提高其生物活性,并在体外和体内评估其生物活性。

材料与方法

采用经济的阳极火花放电法在商用纯钛(cpTi)Ⅱ级表面制备纳米多孔结构。体外研究包括形貌、表面化学分析、氧化钛(TiO₂)膜的粗糙度和晶体结构。通过将试样浸泡在模拟体液(SBF)中并研究表面沉积层来评估生物活性。体内研究通过手术将阳极氧化植入物植入兔子胫骨中不同的愈合期进行。然后进行生物力学评估,以验证处理对界面抗剪切力的影响。进行常规组织学分析以评估骨组织对阳极氧化植入物的反应。

结果

钛植入物的阳极氧化处理产生了形态变化,提高了 TiO₂层中氧的百分比,显著增加了植入物的表面积和粗糙度,并改变了膜的结晶度。体外生物活性评估显示,SBF 浸泡 7 天后钛表面沉积了一层磷酸钙。在 2 周愈合期时,植入物-骨界面的抗剪切力增强。这一点通过组织学发现得到了证实。

结论

通过阳极氧化可以制备纳米结构表面钛植入物,具有加速的生物活性,可推荐用于早期负重。

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