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首页> 外文期刊>The international journal of artificial organs >A comparative evaluation between new ternary zirconium alloys as alternative metals for orthopedic and dental prosthetic devices
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A comparative evaluation between new ternary zirconium alloys as alternative metals for orthopedic and dental prosthetic devices

机译:新型三元锆合金作为骨科和牙科修复设备的替代金属的比较评估

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Purpose: We assessed in vitro the corrosion behavior and biocompatibility of four Zr-based alloys (Zr97.5 Nb1.5VM1.0; VM, valve metal: Ti, Mo, W, Ta; at%) to be used as implant materials, comparing the results with grade-2 titanium, a biocompatible metal standard. Methods: Corrosion resistance was investigated by open circuit potential and electrochemical impedance spectroscopy measurements as a function of exposure time to an artificial physiological environment (Ringer's solution). Human bone marrow stromal cells were used to evaluate biocompatibility of the alloys and their influence on growth kinetics and cell osteogenic differentiation through histochemical and gene expression analyses. Results: Open circuit potential values indicated that Zr-based alloys and grade-2 Ti undergo spontaneous passivation in the simulated aggressive environment. High impedance values for all samples demonstrated improved corrosion resistance of the oxide film, with the best protection characteristics displayed by Zr97.5 Nb1.5Ta1.0. Cells seeded on all surfaces showed the same growth kinetics, although matrix mineralization and alkaline phosphatase activity were maximal on Zr97.5 Nb1.5Mo1.0 and Zr97.5 Nb1.5Ta1.0. Markers of ongoing proliferation, however, such as podocalyxin and CD49f, were still overexpressed on Zr97.5Mo1.0Nb1.5even upon osteoinduction. No relevant effects were noted for he CD146-expressing population of bone progenitors. Nonetheless, the presence of a more differentiated cell population on Zr97.5Nb1.5Ta1.0 samples was inferable by comparing mineralization data and transcript levels of osteogenic markers (osteocalcin, osteopontin, bone sialoprotein, and RUNX2). Conclusions: The combination of passivation, corrosion resistance and satisfactory biotolerance to bone progenitors make the Zr-based alloys promising implant materials. Among those we tested, Zr97.5Nb1.5Ta1.0 seems to be the most appealing.
机译:目的:我们在体外评估了四种用作植入物材料的Zr基合金(Zr97.5 Nb1.5VM1.0; VM,阀金属:Ti,Mo,W,Ta; at%)的腐蚀行为和生物相容性,将结果与2级钛(一种生物相容性金属标准)进行比较。方法:通过开路电势和电化学阻抗谱测量研究耐腐蚀性与暴露于人工生理环境(林格氏溶液)的时间的关系。通过组织化学和基因表达分析,人类骨髓基质细胞用于评估合金的生物相容性及其对生长动力学和细胞成骨分化的影响。结果:开路电势值表明Zr基合金和2级Ti在模拟的侵蚀性环境中经历了自发钝化。所有样品的高阻抗值均显示出改善的氧化膜耐蚀性,Zr97.5 Nb1.5Ta1.0显示出最佳的保护特性。尽管在Zr97.5 Nb1.5Mo1.0和Zr97.5 Nb1.5Ta1.0上基质矿化和碱性磷酸酶活性最大,但接种在所有表面上的细胞均显示出相同的生长动力学。然而,即使在骨诱导后,Zr97.5Mo1.0Nb1.5上仍在持续增殖的标记物,如足茶碱和CD49f,仍过表达。对于表达CD146的骨祖细胞,未发现相关影响。尽管如此,通过比较矿化数据和成骨标记物(骨钙蛋白,骨桥蛋白,骨唾液蛋白和RUNX2)的转录水平,可以推断Zr97.5Nb1.5Ta1.0样品上存在更高分化的细胞群。结论:钝化,耐腐蚀和令人满意的对骨祖细胞的生物耐受性相结合,使得Zr基合金有望成为植入材料。在我们测试的那些之中,Zr97.5Nb1.5Ta1.0似乎是最吸引人的。

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