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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Porous TiO2 surface formed on nickel-titanium alloy by plasma electrolytic oxidation: A prospective polymer-free reservoir for drug eluting stent applications
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Porous TiO2 surface formed on nickel-titanium alloy by plasma electrolytic oxidation: A prospective polymer-free reservoir for drug eluting stent applications

机译:镍钛合金通过等离子电解氧化形成的多孔TiO2表面:用于药物洗脱支架应用的无聚合物的潜在储层

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In this study, a porous oxide layer was formed on the surface of nickel-titanium alloy (NiTi) by plasma electrolytic oxidation (PEO) with the aim to produce a polymer-free drug carrier for drug eluting stent (DES) applications. The oxidation was performed galvanostatically in concentrated phosphoric acid electrolyte at low temperature. It was found that the response of NiTi substrate during the PEO process was different from that of bulk Ti, since the presence of large amount of Ni delayed the initial formation of a compact oxide layer that is essential for the PEO to take place. Under optimized PEO conditions, the resultant surface showed porosity, pore density and oxide layer thickness of 14.11%, 2.40 × 105 pores/mm2 and 0.8 μm, respectively. It was additionally noted that surface roughness after PEO did not significantly increase as compared with that of original NiTi substrate and the EDS analyses revealed a decrease in Ni/Ti ratio on the surface after PEO. The cross-section morphology showed no discontinuity between the PEO layer and the NiTi substrate. Furthermore, wettability and surface free energy of the NiTi substrate increased significantly after PEO treatment. The PEO process could be successfully translated to NiTi stent configuration proving for the first time its feasibility for such a medical device and offering potential for development of alternative, polymer-free drug carriers for NiTi DES.
机译:在这项研究中,通过等离子电解氧化(PEO)在镍钛合金(NiTi)的表面上形成了多孔氧化物层,目的是生产用于药物洗脱支架(DES)的不含聚合物的药物载体。氧化在低温下在浓磷酸电解质中恒电流进行。已经发现,在PEO过程中NiTi衬底的响应不同于块状Ti,因为大量Ni的存在延迟了致密氧化物层的初始形成,这对于PEO的发生是必不可少的。在优化的PEO条件下,所得表面的孔隙率,孔密度和氧化物层厚度分别为14.11%,2.40×105孔/ mm2和0.8μm。另外要注意的是,PEO后的表面粗糙度与原始NiTi衬底相比并没有显着增加,EDS分析表明,PEO后表面的Ni / Ti比降低。横截面形态显示在PEO层和NiTi衬底之间没有不连续性。此外,PEO处理后,NiTi基材的润湿性和表面自由能显着提高。 PEO工艺可以成功地转化为NiTi支架配置,这首次证明了其在这种医疗设备中的可行性,并为开发替代的,无聚合物的NiTi DES药物载体提供了潜力。

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