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首页> 外文期刊>The International journal of oral & maxillofacial implants >Osteoblast-like cell attachment and proliferation on turned, blasted, and anodized titanium surfaces.
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Osteoblast-like cell attachment and proliferation on turned, blasted, and anodized titanium surfaces.

机译:成骨细胞样细胞附着并在转弯,喷砂和阳极氧化的钛表面上增殖。

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PURPOSE: The purpose of this study was to investigate the cellular activities of MG63 osteoblast-like cells on modified titanium surfaces. MATERIALS AND METHODS: MG63 osteoblast-like cells were cultured on titanium disks (n = 20 in each group) with turned, resorbable blast media (RBM)-treated, or anodized surfaces. The surfaces of commercially available implants of Osstem (Osstem Implant) were reproduced for the titanium disks. The morphology of cells cultured on these disks was examined using scanning electron microscopy. X-ray photoelectron spectroscopy (XPS) was employed for the analysis of surface chemistry. Specimens were also evaluated with an initial cell adhesion assay to compare initial adhesion, with a methyl tetrazol sulfate (MTS) assay to compare the proliferation ability, and with an alkaline phosphatase (ALP) assay to compare the differentiation ability. Statistical significance of the differences was determined using the Kruskal-Wallis test for the cell adhesion assay and analysis of variance for the MTS and ALP assays. RESULTS: Attached cells with more defined lamellopodia and flattened morphology were observed on the anodized and RBM surfaces than on the turned surfaces. The titanium surfaces were all oxidized as titanium oxide and polluted by carbon determinants, as determined by XPS. Anodized titanium surfaces exhibited calcium and phosphorus peaks. Initial cell attachment activity, cell proliferation activity, and ALP activity were higher on the anodized surfaces than on the other surfaces. Cell differentiation on the anodized surfaces at culture day 10 was significantly higher (P < .05) than on the other surfaces. CONCLUSIONS: Surface treatment by anodization may improve initial attachment of cells, proliferation ability, and differentiation activity, which play important roles in providing better osseointegration of implants. More rapid and stronger osseointegration of implants may make it possible to offer the best anchorage and shorten the healing time required prior to functional loading.
机译:目的:本研究的目的是研究修饰的钛表面上的MG63成骨细胞样细胞的细胞活性。材料与方法:将MG63成骨细胞样细胞培养在钛圆盘上(每组n = 20),表面经过翻面,可吸收的爆炸培养基(RBM)处理或阳极氧化处理。复制了市售的Osstem植入物(Osstem植入物)的表面用于钛片。使用扫描电子显微镜检查在这些盘上培养的细胞的形态。 X射线光电子能谱法(XPS)用于表面化学分析。还用初始细胞粘附测定法评估样品以比较初始粘附力,用硫酸甲基四唑(MTS)测定法比较增殖能力,并通过碱性磷酸酶(ALP)测定法评估样本分化能力。使用Kruskal-Wallis检验进行细胞粘附测定,并使用MTS和ALP检验进行方差分析,确定差异的统计学显着性。结果:在阳极化表面和RBM表面上观察到的黏附细胞具有更加清晰的lamellopodia和平坦的形态,而在转弯的表面上观察不到。钛表面均被氧化为氧化钛,并被XPS测定的碳决定簇污染。阳极氧化的钛表面显示出钙和磷峰。阳极表面上的初始细胞附着活性,细胞增殖活性和ALP活性高于其他表面。在培养第10天时,阳极氧化表面上的细胞分化明显高于其他表面(P <.05)。结论:阳极氧化表面处理可以改善细胞的初始附着,增殖能力和分化活性,这在提供更好的植入物骨整合方面起着重要作用。植入物的骨整合更快,更强,可以提供最佳的固定效果,并缩短功能性装载之前所需的愈合时间。

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