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Biocompatibility of Niobium Coatings

机译:铌涂层的生物相容性

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Niobium coatings deposited by magnetron sputtering were evaluated as a possible surface modification for stainless steel (SS) substrates in biomedical implants. The Nb coatings were deposited on 15 mm diameter stainless steel substrates having an average surface roughness of 2 μm. To evaluate the biocompatibility of the coatings three different in vitro tests, using human alveolar bone derived cells, were performed: cellular adhesion, proliferation and viability. Stainless steel substrates and tissue culture plastic were also studied, in order to give comparative information. No toxic response was observed for any of the surfaces, indicating that the Nb coatings act as a biocompatible, bioinert material. Cell morphology was also studied by immune-fluorescence and the results confirmed the healthy state of the cells on the Nb surface. X-ray diffraction analysis of the coating shows that the film is polycrystalline with a body centered cubic structure. The surface composition and corrosion resistance of both the substrate and the Nb coating were also studied by X-ray photoelectron spectroscopy and potentiodynamic tests. Water contact angle measurements showed that the Nb surface is more hydrophobic than the SS substrate.
机译:通过磁控溅射沉积的铌涂层被评估为生物医学植入物中不锈钢(SS)基材的可能表面改性。将Nb涂层沉积在直径为15 mm的不锈钢基板上,其平均表面粗糙度为2μm。为了评估涂层的生物相容性,使用人牙槽骨衍生细胞进行了三种不同的体外试验:细胞粘附,增殖和生存力。为了提供比较信息,还研究了不锈钢基材和组织培养塑料。对于任何表面均未观察到毒性反应,表明Nb涂层可作为生物相容性生物惰性材料。还通过免疫荧光研究了细胞形态,结果证实了Nb表面细胞的健康状态。涂层的X射线衍射分析表明,该膜是具有体心立方结构的多晶。还通过X射线光电子能谱和电位动力学试验研究了基体和Nb涂层的表面成分和耐腐蚀性。水接触角测量表明,Nb表面比SS衬底疏水性更高。

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