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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Utility of magneto-electropolished ternary nitinol alloys for blood contacting applications
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Utility of magneto-electropolished ternary nitinol alloys for blood contacting applications

机译:磁电抛光三元镍钛合金在血液接触应用中的实用性

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The thrombogenicity of a biomaterial is mainly dependent on its surface characteristics, which dictates its interactions with blood. Surface properties such as composition, roughness wettability, surface free energy, and morphology will affect an implant material's hemocompatibility. Additionally, in the realm of metallic biomaterials, the specific composition of the alloy and its surface treatment are important factors that will affect the surface properties. The utility of magneto-electropolished (MEP) ternary Nitinol alloys, NiTiTa, and NiTiCr as blood contacting materials was investigated. The hemcompatibility of these alloys were compared to mechanically polished (MP) metallic biomaterial counterparts. In vitro thrombogenicity tests revealed significantly less platelet adherence on ternary MEP Nitinol, espe-cially MEP NiTi10Ta as compared to the MP metals (p<0.05). The enhanced anti-platelet-adhesive property of MEP NiTi10Ta was in part, attributed to the Ta2O5 component of the alloy. Furthermore, the formation of a dense and mixed hydrophobic oxide layer during MEP is believed to have inhibited the adhesion of negatively charged platelets. In conclusion, MEP ternary Nitinol alloys can potentially be utilized for blood-contacting devices where, complications resulting from thrombogenicity can be minimized. (C) 2014 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 103B: 1366-1374, 2015.
机译:生物材料的血栓形成性主要取决于其表面特征,这决定了其与血液的相互作用。表面特性(例如成分,粗糙度润湿性,表面自由能和形态)将影响植入物材料的血液相容性。另外,在金属生物材料领域,合金的特定组成及其表面处理是会影响表面性能的重要因素。研究了磁电抛光(MEP)三元镍钛诺合金,NiTiTa和NiTiCr作为血液接触材料的实用性。将这些合金的相容性与机械抛光(MP)的金属生物材料对应物进行了比较。体外血栓形成试验显示,与MP金属相比,三元MEP镍钛诺,特别是MEP NiTi10Ta上的血小板粘附明显减少(p <0.05)。 MEP NiTi10Ta的增强的抗血小板粘附性能部分归因于该合金的Ta2O5组分。此外,据信在MEP期间形成致密且混合的疏水性氧化物层已经抑制了带负电荷的血小板的粘附。总之,MEP三元镍钛诺合金可以潜在地用于血液接触设备,在这些设备中,由血栓形成引起的并发症可以降至最低。 (C)2014 Wiley Periodicals,Inc. J Biomed Mater Res B部分:Appl Biomater,103B:1366-1374,2015。

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