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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Surface evaluation of titanium oxynitride coatings used for developing layered cardiovascular stents
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Surface evaluation of titanium oxynitride coatings used for developing layered cardiovascular stents

机译:用于显影层状心血管支架的氮氧化钛涂层的表面评价

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Stents are important medical devices used to increase the quality and life expectancy of patients with heart diseases and stroke, leading causes of death, worldwide. In order to minimize the risk of restenosis, different coating on bare metal stents (BMS) such as polymer coatings; titanium dioxide, titanium nitride or titanium oxynitride coatings; carbon coatings and others are used. The aim of this work was to develop novel stents coated with titanium oxynitride (TiOxNy) with optimal chemical, mechanical and biological properties having possibly good coverage rate of inner and outer stent surfaces. The improvement should be achieved by optimization and development of a magnetron sputtering deposition technology. The goal of the study is understanding of the existing potential for improvement of the deposition technology and the coating quality itself. For this study, different O-2/N-2 ratios, meaning 1/2, 1/5 and 1/10 (the ratios of reagent gasses are given for the values of mass flows into the chamber) has been selected. Stability in simulated body fluids, surface morphology and protein adsorption as well as preliminary cytotoxic behaviour of the samples on HUVEC cells has been analysed. SEM experiments have shown the potential in the improvement of coating-stent adhesion by all samples. TiOxNy 1:5 samples were found to have the lowest adsorption, the smoothest surface morphology and the smallest rate of salt deposition from simulated body fluids (SBFs). This kind of surface has been recommended for further optimization and application.
机译:支架是用于提高心脏病和中风患者的质量和预期的重要医疗设备,全世界的死亡原因。为了使裸金属支架(BMS)(如聚合物涂层)上的再狭窄,不同涂层的风险最小化。二氧化钛,氮化钛或氮氧化钛涂料;使用碳涂料和其他。这项工作的目的是开发涂有氮氧化物(TiOxny)的新型支架,具有最佳的化学,机械和生物学性能,具有内部和外支架表面的覆盖率良好的覆盖率。通过优化和开发磁控溅射沉积技术的优化和开发来实现改进。该研究的目标是了解现有的改善沉积技术和涂层质量本身的潜力。对于本研究,选择了不同的O-2 / N-2比,含有1/2,1 / 5和1/10(试剂气体的比率用于质量流入腔室的值)。分析了模拟体液,表面形态和蛋白质吸附的稳定性以及对Huvec细胞上样品的初步细胞毒性行为。 SEM实验表明了所有样品改善涂层支架粘附的潜力。 TiOxny 1:5样品被发现具有最低的吸附,最平滑的表面形态和模拟体液(SBFS)的最小盐沉积速率。已经建议使用这种表面进行进一步优化和应用。

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