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首页> 外文期刊>Clinical oral implants research >Surface modification of ultrafine-grained titanium: Influence on mechanical properties, cytocompatibility, and osseointegration potential
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Surface modification of ultrafine-grained titanium: Influence on mechanical properties, cytocompatibility, and osseointegration potential

机译:超细晶粒钛的表面改性:对机械性能,细胞组分和骨整合势的影响

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Objective The main objective of this study was to demonstrate that dental implants made from ultrafine-grain titanium (UFG-Ti) can be created that replicate state of the art surfaces of standard coarse-grain titanium (Ti), showing excellent cytocompatibility and osseointegration potential while also providing improved mechanical properties. Material and methods UFG-Ti was prepared by continuous equal channel angular processing (ECAP), and surfaces were treated by sandblasting and acid etching. Mechanical properties (tensile and fatigue strength), wettability, and roughness parameters were evaluated. Human trabecular bone-derived osteoblast precursor cells (HBCs) were cultured on all samples to examine cytocompatibility and mineralization after 4 and 28 days, respectively. Biomechanical pull-out measurements were performed in a rabbit in vivo model 4 weeks after implantation. Results Both yield and tensile strength as well as fatigue endurance were higher for UFG-Ti compared to Ti by 40%, 45%, and 34%, respectively. Fatigue endurance was slightly reduced following surface treatment. Existing surface treatment protocols could be applied to UFG-Ti and resulted in similar roughness and wettability as for standard Ti. Cell attachment and spreading were comparable on all samples, but mineralization was higher for the surfaces with hydrophilic treatment with no significant difference between UFG-Ti and Ti. Pull-out tests revealed that osseointegration of surface-treated UFG-Ti was found to be similar to that of surface-treated Ti. Conclusion It could be demonstrated that existing surface treatments for Ti can be translated to UFG-Ti and, furthermore, that dental implants made from surface-treated UFG-Ti exhibit superior mechanical properties while maintaining cytocompatibility and osseointegration potential.
机译:目的本研究的主要目的是表明,可以产生由超细籽粒钛(UFG-TI)制成的牙科植入物,即标准粗粒钛(Ti)的现有表面的复制状态,显示出优异的细胞组合和骨整合电位同时还提供改进的机械性能。材料和方法通过连续等于沟道角处理(ECAP)制备UFG-Ti,并且通过喷砂和酸蚀刻处理表面。评估机械性能(拉伸和疲劳强度),润湿性和粗糙度参数。在所有样品上培养人豆蔻骨衍生的成骨细胞前体细胞(HBCS),以分别在4和28天后检查细胞组织性和矿化。在植入后4周内在体内模型中的兔中进行生物力学拉出测量。结果与Ti相比,UFG-TI的产量和拉伸强度以及疲劳耐久性分别分别为40%,45%和34%。表面处理后疲劳耐久性略微减少。现有的表面处理方案可以应用于UFG-TI,并导致标准Ti的类似粗糙度和润湿性。细胞附着和扩散在所有样品上都是相当的,但是表面具有亲水性处理的矿化较高,而UFG-Ti和Ti之间没有显着差异。拉出试验显示,发现表面处理的UFG-Ti的骨整合与表面处理的Ti类似。结论可以证明,Ti的现有表面处理可转化为UFG-Ti,此外,由表面处理的UFG-Ti制成的牙科植入物在保持细胞组织和骨整合电位的同时表现出优异的机械性能。

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