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钛锆合金阳极氧化纳米管表面对成骨细胞的细胞生物学反应。

Cell biological responses of osteoblasts on anodized nanotubular surface of a titanium-zirconium alloy.

机构信息

CSIR - Centre for Cellular and Molecular Biology, Uppal Road, Hyderabad 500 007, India; Institute for Frontier Materials, Deakin University, Pigdons Road, Waurn Ponds, Geelong, Victoria 3217, Australia.

出版信息

J Biomed Mater Res A. 2013 Dec;101(12):3416-30. doi: 10.1002/jbm.a.34638. Epub 2013 Apr 5.

Abstract

Anodization of titanium and its alloys, under controlled conditions, generates a nanotubular architecture on the material surface. The biological consequences of such changes are poorly understood, and therefore, we have analyzed the cellular and molecular responses of osteoblasts that were plated on nanotubular anodized surface of a titanium-zirconium (TiZr) alloy. Upon comparing these results with those obtained on acid etched and polished surfaces of the same alloy, we observed a significant increase in adhesion and proliferation of cells on anodized surfaces as compared to acid etched or polished surface. The expression of genes related to cell adhesion was high only on anodized TiZr, but that of genes related to osteoblast differentiation and osteocalcin protein and extracellular matrix secretion were higher on both anodized and acid etched surfaces. Examination of surface morphology, topography, roughness, surface area and wettability using scanning electron microscopy, atomic force microscopy, and contact angle goniometry, showed that higher surface area, hydrophilicity, and nanoscale roughness of nanotubular TiZr surfaces, which were generated specifically by the anodization process, could strongly enhance the adhesion and proliferation of osteoblasts. We propose that biological properties of known bioactive titanium alloys can be further enhanced by generating nanotubular surfaces using anodization.

摘要

在控制条件下对钛及其合金进行阳极氧化处理,会在材料表面生成纳米管状结构。这种变化的生物学后果尚未被充分理解,因此我们分析了将成骨细胞种植到钛锆(TiZr)合金纳米管状阳极氧化表面上后的细胞和分子反应。将这些结果与相同合金经酸蚀和抛光表面的结果进行比较后,我们观察到与酸蚀或抛光表面相比,细胞在阳极氧化表面上的黏附和增殖显著增加。仅在阳极氧化的 TiZr 上,与细胞黏附相关的基因表达较高,但与成骨细胞分化以及骨钙素蛋白和细胞外基质分泌相关的基因表达在阳极氧化和酸蚀表面上均较高。使用扫描电子显微镜、原子力显微镜和接触角测量法对表面形貌、形貌、粗糙度、表面积和润湿性进行检查后发现,阳极氧化过程中生成的纳米管状 TiZr 表面具有更高的表面积、亲水性和纳米级粗糙度,这强烈促进了成骨细胞的黏附和增殖。我们提出,通过阳极氧化生成纳米管状表面,可以进一步增强已知生物活性钛合金的生物学特性。

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