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Osteoblast proliferation on hydroxyapatite thin coatings produced by right angle magnetron sputtering

机译:直角磁控溅射在羟基磷灰石薄涂层上成骨细胞的增殖

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摘要

Right angle magnetron sputtering (RAMS) was used to produce hydroxyapatite (HA) film coatings on pure titanium substrates and oriented silicon wafer (Si(0 0 1)) substrates with flat surfaces as well as engineered surfaces having different forms. Analyses using synchrotron XRD, AFM, XPS, FTIR and SEM with EDS showed that as-sputtered thin coatings consist of highly crystalline hydroxyapatite. The HA coatings induced calcium phosphate precipitation when immersed in simulated body fluid, suggesting in vivo bioactive behavior. In vitro experiments, using murine osteoblasts, showed that cells rapidly adhere, spread and proliferate over the thin coating surface, while simultaneously generating strong in-plane stresses, as observed on SEM images. Human osteoblasts were seeded at a density of 2500 cells cm-2 on silicon and titanium HA coated substrates by RAMS. Uncoated glass was used as a reference substrate for further counting of cells. The highest proliferation of human osteoblasts was achieved on HA RAMS-coated titanium substrates. These experiments demonstrate that RAMS is a promising coating technique for biomedical applications.
机译:直角磁控溅射(RAMS)用于在纯钛基板和定向硅晶片(Si(0 0 1))基板上生产具有平面形状以及不同形状的工程化表面的羟基磷灰石(HA)薄膜涂层。使用同步加速器XRD,AFM,XPS,FTIR和SEM与EDS进行的分析表明,溅射后的薄涂层由高度结晶的羟基磷灰石组成。当浸入模拟体液中时,HA涂层会诱导磷酸钙沉淀,提示其体内生物活性。使用鼠成骨细胞进行的体外实验表明,细胞快速粘附,扩散并在薄涂层表面扩散,同时产生强大的平面应力,如SEM图像所示。通过RAMS将人类成骨细胞以2500细胞cm-2的密度播种在硅和钛HA涂层的基材上。未涂覆的玻璃用作进一步计数细胞的参考底物。在HA RAMS涂层的钛基底上实现了人类成骨细胞的最高增殖。这些实验证明RAMS是一种用于生物医学应用的有前途的涂层技术。

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