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细胞对新开发的 Ti-10Ta-10Nb 合金及其溅射纳米级涂层的反应。

Cell response to a newly developed Ti-10Ta-10Nb alloy and its sputtered nanoscale coating.

机构信息

Graduate Student, Department of Prosthodontics, Graduate School, Chonnam National University, Gwang-Ju, Korea.

出版信息

J Adv Prosthodont. 2009 Mar;1(1):56-61. doi: 10.4047/jap.2009.1.1.56. Epub 2009 Mar 31.

Abstract

STATEMENT OF PROBLEM

The success of titanium implants is due to osseointegration or the direct contact of the implant surface and bone without a fibrous connective tissue interface.

PURPOSE

The purpose of this study was to evaluate the osteoblast precursor response to titanium - 10 tantalum - 10 niobium (Ti-Ta-Nb) alloy and its sputtered coating.

MATERIAL AND METHODS

Ti-Ta-Nb coatings were sputtered onto the Ti-Ta-Nb disks. Ti6-Al-4V alloy disks were used as controls. An osteoblast precursor cell line, were used to evaluate the cell responses to the 3 groups. Cell attachment was measured using coulter counter and the cell morphology during attachment period was observed using fluorescent microscopy. Cell culture was performed at 4, 8, 12 and 16 days.

RESULTS

The sputtered Ti-Ta-Nb coatings consisted of dense nanoscale grains in the range of 30 to 100 nm with alpha-Ti crystal structure. The Ti-Ta-Nb disks and its sputtered nanoscale coatings exhibited greater hydrophilicity and rougher surfaces compared to the Ti-6Al-4V disks. The sputtered nanoscale Ti-Ta-Nb coatings exhibited significantly greater cell attachment compared to Ti-6Al-4V and Ti-Ta-Nb disks. Nanoscale Ti-Ta-Nb coatings exhibited significantly greater ALP specific activity and total protein production compared to the other 2 groups.

CONCLUSIONS

It was concluded that nanoscale Ti-Ta-Nb coatings enhance cell adhesion. In addition, Ti-Ta-Nb alloy and its nanoscale coatings enhanced osteoblast differentiation, but did not support osteoblast precursor proliferation compared to Ti-6Al-4V. These results indicate that the new developed Ti-Ta-Nb alloy and its nanoscale Ti-Ta-Nb coatings may be useful as an implant material.

摘要

问题陈述

钛植入物的成功归因于骨整合或植入物表面与骨骼的直接接触,而没有纤维结缔组织界面。

目的

本研究的目的是评估钛-10 钽-10 铌(Ti-Ta-Nb)合金及其溅射涂层对成骨前体细胞的反应。

材料和方法

将 Ti-Ta-Nb 涂层溅射在 Ti-Ta-Nb 圆盘上。Ti6-Al-4V 合金圆盘用作对照。使用成骨前体细胞系来评估 3 组细胞对细胞的反应。使用库尔特计数器测量细胞附着,并用荧光显微镜观察附着期的细胞形态。在 4、8、12 和 16 天进行细胞培养。

结果

溅射的 Ti-Ta-Nb 涂层由 30 至 100nm 范围内的致密纳米晶粒组成,具有α-Ti 晶体结构。与 Ti-6Al-4V 圆盘相比,Ti-Ta-Nb 圆盘及其溅射纳米级涂层表现出更大的亲水性和更粗糙的表面。与 Ti-6Al-4V 和 Ti-Ta-Nb 圆盘相比,溅射纳米级 Ti-Ta-Nb 涂层表现出明显更高的细胞附着。纳米级 Ti-Ta-Nb 涂层的碱性磷酸酶特异性活性和总蛋白产量明显高于其他 2 组。

结论

得出结论,纳米级 Ti-Ta-Nb 涂层可增强细胞黏附。此外,与 Ti-6Al-4V 相比,Ti-Ta-Nb 合金及其纳米级涂层增强了成骨细胞分化,但不支持成骨前体细胞增殖。这些结果表明,新开发的 Ti-Ta-Nb 合金及其纳米级 Ti-Ta-Nb 涂层可能可用作植入材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a73e/2994675/c8af8c0af61a/jap-1-56-g001.jpg

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