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The biocompatibility of titanium in a buffer solution: compared effects of a thin film of TiO2 deposited by MOCVD and of collagen deposited from a gel

机译:钛在缓冲溶液中的生物相容性:比较通过MOCVD沉积的TiO2薄膜和从凝胶沉积的胶原蛋白的效果

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摘要

This study aims at evaluating the biocompatibility of titanium surfaces modified according two different ways: (i) deposition of a bio-inert, thin film of rutile TiO2 by chemical vapour deposition (MOCVD), and (ii) biochemical treatment with collagen gel, in order to obtain a bio-interactive coating. Behind the comparison is the idea that either the bio-inert or the bio-active coating has specific advantages when applied to implant treatment, such as the low price of the collagen treatment for instance. The stability in buffer solution was evaluated by open circuit potential (OCP) for medium time and cyclic voltametry. The OCP stabilized after 5104 min for all the specimens except the collagen treated sample which presented a stable OCP from the first minutes. MOCVD treated samples stabilized to more electropositive values. Numeric results were statistically analysed to obtain the regression equations for long time predictable evolution. The corrosion parameters determined from cyclic curves revealed that the MOCVD treatment is an efficient way to improve corrosion resistance. Human dermal fibroblasts were selected for cell culture tests, taking into account that these cells are present in all bio-interfaces, being the main cellular type of connective tissue. The cells grew on either type of surface without phenotype modification. From the reduction of yellow, water-soluble 3-(4,5-dimethyldiazol-2-yl)-2,5-diphenyl tetrazolium bromide (MTT cytotoxicity test), MOCVD treated samples offer better viability than mechanically polished Ti and collagen treated samples as well. Cell spreading, as evaluated from microscope images processed by the program Sigma Scan, showed also enhancement upon surface modification. Depending on the experimental conditions, MOCVD deposited TiO2 exhibits different nanostructures that may influence biological behaviour. The results demonstrate the capacity of integration in simulated physiologic liquids for an implant pretreated by either method.
机译:这项研究旨在评估通过两种不同方式改性的钛表面的生物相容性:(i)通过化学气相沉积(MOCVD)沉积生物惰性的金红石型TiO2薄膜,以及(ii)在胶原凝胶中进行生化处理为了获得生物互动涂层。比较的背后是这样的想法,即当用于植入物治疗时,生物惰性涂层或生物活性涂层都具有特定的优势,例如胶原蛋白治疗的低价。通过介质开路电位(OCP)和循环伏安法评估缓冲溶液中的稳定性。 5104分钟后,所有样品的OCP均稳定,除了胶原蛋白处理过的样品从最初的几分钟开始表现出稳定的OCP。经MOCVD处理的样品稳定到更多的正电值。对数值结果进行统计分析,以获得长期可预测的演化回归方程。由循环曲线确定的腐蚀参数表明,MOCVD处理是提高耐腐蚀性的有效方法。考虑到这些细胞存在于所有生物界面中,这是结缔组织的主要细胞类型,因此选择人真皮成纤维细胞进行细胞培养测试。细胞在两种类型的表面上生长而没有表型修饰。通过减少黄色的水溶性3-(4,5-二甲基二唑-2-基)-2,5-二苯基溴化四氮唑(MTT细胞毒性测试),MOCVD处理的样品比机械抛光的Ti和胶原处理的样品具有更好的生存能力也一样从通过Sigma Scan程序处理的显微镜图像评估,细胞扩散还显示出表面改性后的增强。取决于实验条件,MOCVD沉积的TiO2表现出可能影响生物学行为的不同纳米结构。结果证明了通过两种方法预处理的植入物在模拟生理液体中的整合能力。

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