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Structure, wettability, corrosion and biocompatibility of nitinol treated by alkaline hydrothermal and hydrophobic functionalization for cardiovascular applications

机译:碱性水热量和心血管应用疏水官能化治疗Nitinol的结构,润湿性,腐蚀和生物相容性

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The main objective of this study is to hydrophobize nitinol (Ni-Ti alloy) for cardiovascular applications. For this purpose, medical nitinol samples were subjected to sodium hydroxide hydrothermal treatments at various temperatures, followed by hexadecyltrimethoxysilane (HDTMS) functionalization. Then, the structure, wettability, corrosion, cytocompatibility and cell adhesion of the prepared samples were evaluated. According to the results, porous blade-shaped layers of sodium titanate were formed on the substrate surface as a result of the alkaline treatment. These nano-rough features offered considerable hydrophobicity after HDTMS processing, where a maximum water contact angle of about 140 degrees was obtained for the sample treated at 120 degrees C, followed by the HDTMS coating. In contrast to the individual application of the alkaline treatments, the subsequent HDTMS processing improved corrosion resistance in the simulated body fluid. Although all the samples presented appropriate cytocompatibility with respect to human umbilical vein endothelial cells, the cells did not show an adhesion tendency to the hydrophobic surfaces. It is concluded that alkaline hydrothermal and HDTMS processed nitinol can be considered for cardiovascular applications demanding hydrophobic surfaces.
机译:本研究的主要目的是疏水化奈多尔(Ni-Ti合金)用于心血管应用。为此目的,在各种温度下,在各种温度下对医用镍钛醇样品进行氢氧化钠水热处理,然后是十六烷基三甲氧基硅烷(HDTMS)官能化。然后,评价制备样品的结构,润湿性,腐蚀,细胞粘合性和细胞粘附性。根据结果​​,由于碱性处理,在基材表面上形成多孔叶片形状钛酸钠层。这些纳米粗糙的特征在HDTMS处理后提供了相当大的疏水性,其中获得在120℃下处理的样品约140度的最大水接触角,然后得到HDTMS涂层。与碱性处理的个体施加相反,随后的HDTMS处理改善了模拟体液中的耐腐蚀性。尽管所有样品相对于人脐静脉内皮细胞呈现了适当的细胞相容性,但细胞没有显示出疏水表面的粘附趋势。得出结论,可以考虑碱性水热和HDTMS加工的镍钛合金,用于要求疏水表面的心血管应用。

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