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首页> 外文期刊>Nanomedicine Journal >Nano-structure TiO2 film coating on 316L stainless steel via sol-gel technique for blood compatibility improvement
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Nano-structure TiO2 film coating on 316L stainless steel via sol-gel technique for blood compatibility improvement

机译:通过溶胶-凝胶技术在316L不锈钢上形成纳米结构的TiO2薄膜涂层,以改善血液相容性

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摘要

Objective(s): Titanium oxides are known to be appropriate hemocompatible materials which are suggested as coatings for blood-contacting devices. Little is known about the influence of nanometric crystal structure, layer thickness, and semiconducting characteristics of TiO2 on blood hemostasis. Materials and Methods: Having used sol-gel dip coating method in this study, TiO2 thin films were deposited on nano-scale electro-polished stainless steel 316L with 1 to 5 nano-sized layers. Surface morphology and structure of the film were studied with X-ray diffraction and atomic force microscopy. Blood compatibility was also determined by measuring the platelet activation (CD62P expression), platelet adhesion (Scanning Electron Microscopy), and the blood clotting time on these samples. Results: The films were compact and smooth and existed mainly in the form of anatase. By increasing the number of TiO2 thin layer, clotting time greatly extended, and the population of activated platelet and P-selectine expression changed according to the surface characteristics of each layer. Conclusion: The findings revealed that stainless steel 316L coated with nano-structured TiO2 layer improved blood compatibility, in terms of both blood platelet activity and coagulation cascade, which can decrease the thrombogenicity of blood contacting devices which were made from stainless steel.
机译:目标:众所周知,氧化钛是适合的血液相容性材料,建议用作血液接触装置的涂层。关于纳米晶体结构,层厚度和TiO2的半导体特性对止血的影响知之甚少。材料和方法:在本研究中使用溶胶-凝胶浸涂法,将TiO2薄膜沉积在具有1至5个纳米尺寸层的纳米级电抛光不锈钢316L上。用X射线衍射和原子力显微镜研究了薄膜的表面形态和结构。还通过测量血小板活化(CD62P表达),血小板粘附(扫描电子显微镜)和这些样品的血液凝固时间来确定血液相容性。结果:薄膜致密光滑,主要以锐钛矿形式存在。通过增加TiO2薄层的数量,凝血时间大大延长,并且活化血小板的数量和P-选择素的表达根据各层的表面特性而变化。结论:研究结果表明,涂​​覆有纳米结构的TiO2层的316L不锈钢在血小板活性和凝血级联方面均改善了血液相容性,可降低由不锈钢制成的血液接触装置的血栓形成性。

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