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In vitro and in vivo characterization of novel plasma treated nickel titanium shape memory alloy for orthopedic implantation

机译:用于骨科植入的新型等离子体处理镍钛形状记忆合金的体外和体内表征

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摘要

Nickel-titanium (NiTi) shape memory alloys are potentially very useful in orthopedic and dental implantation, since the materials possess super-elasticity and shape memory effects that other current medical metallic materials do not have. Possible nickel ion release, however, hampers their medical applications, particularly in orthopedic implants where fretting is always expected at the articulating surface. We have utilized plasma immersion ion implantation (PIII) to alter the surface chemistry of the materials in order to reduce nickel release. The enhanced corrosion resistance and surface mechanical properties have been reported previously. This paper describes the cytocompatibility and in vivo performance of the PIII treated and untreated samples. NiTi discs with 50.8% Ni were treated by nitrogen and oxygen PIII at 40 kV After PIII, titanium nitride (TiN) and packed titanium oxide (TiO) are formed on the surface. The degree of cell proliferation on the untreated and oxygen treated samples is slightly inferior to that on the nitrogen treated sample. However, in vivo bone formation on the nitrogen plasma treated samples is better compared to the untreated control and oxygen treated one at all time points. Our work thus provides the evidence that nitrogen plasma modified NiTi alloys are potentially suitable for orthopedics without inducing harmful biological effects. (C) 2007 Elsevier B.V. All rights reserved.
机译:镍钛(NiTi)形状记忆合金潜在地在整形外科和牙科植入中非常有用,因为该材料具有超弹力和形状记忆效果,而其他目前的医用金属材料则没有。然而,可能的镍离子释放会阻碍其医学应用,尤其是在始终期望在关节表面微动的整形外科植入物中。我们已经利用等离子体浸没离子注入(PIII)来改变材料的表面化学,以减少镍的释放。先前已经报道了增强的耐腐蚀性和表面机械性能。本文介绍了PIII处理和未处理样品的细胞相容性和体内性能。在40 kV电压下,通过氮气和氧气PIII对含Ni含量为50.8%的NiTi圆片进行处理。在未经处理和经氧气处理的样品上,细胞增殖程度略逊于经氮气处理的样品。但是,在所有时间点上,用氮气等离子处理过的样品在体内的骨形成都比未处理的对照和氧气处理过的样品更好。因此,我们的工作提供了证据,表明氮等离子体改性的NiTi合金潜在地适合于骨科,而不会引起有害的生物学影响。 (C)2007 Elsevier B.V.保留所有权利。

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