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In Vitro Human Osteoblast Responses to Titanium Oxide-Based Surfaces With Varying Topology and Composition

机译:具有不同拓扑和组成的基于氧化钛的氧化钛表面的体外人骨质细胞响应

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The surface topology and composition of prosthetic implant materials affect cell responses and are therefore important design features. Plasma electrolytic oxidation (PEO) is a surface modification technique that can be used to produce oxidized surfaces with various surface properties [1]. In this work, Ti-6A1-4V was PEO processed to give two surfaces with different morphologies but similar chemical composition. Surface characteristics were assessed using X-ray diffraction, scanning electron microscopy, energy dispersive spectroscopy, stylus profilometry and contact angle measurement.In vitro culture of human foetal osteoblasts (HOB) was performed on the surfaces, to examine cell responses to them. Cellular proliferation, morphology and differentiation were examined, using the AlamarBlue assay, SEM imaging and an alkaline phosphatase (ALP) activity assay respectively. Additionally, the individual effects of oxides present in the PEO processed surfaces (rutile and anatase) on the cells were examined, by binding them in powder form to produce surfaces with similar morphology, but different composition.Changes in the topology and chemistry of the surfaces affected osteoblast response. HOB proliferated more on the rougher PEO surface, and also displayed greater ALP activity. Also, cells responded differently to surfaces containing just rutile or anatase, indicating that the chemical phase of titanium oxide is of consequence for implant design.
机译:假体植入物材料的表面拓扑和组成影响细胞应答,因此是重要的设计特征。等离子体电解氧化(PEO)是一种表面改性技术,可用于产生具有各种表面性质的氧化表面[1]。在这项工作中,Ti-6a1-4v是peo加工,给出两个不同形态的表面,但相似的化学组成。使用X射线衍射评估表面特性,扫描电子显微镜,能量分散光谱,触控笔轮廓测量和接触角测量。在表面上进行人胎骨细胞(滚刀)的体外培养,检查对它们的细胞应答。检查细胞增殖,形态和分化,使用Alamarblue测定,SEM成像和碱性磷酸酶(ALP)活性测定。另外,通过以粉末形式结合以产生具有相似形态的表面,但不同的组合物,检查在细胞上存在于细胞上的氧化物的单个效果。在表面的拓扑和化学中产生不同的组合物。受影响的成骨细胞反应。滚刀在Rougher Peo表面上更多地增殖,并且还显示出更大的ALP活动。此外,细胞对含有金红石或锐钛矿的表面不同,表明氧化钛的化学阶段对植入物设计具有结果。

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