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Enhanced Physicochemical and Biological Properties of Ion-Implanted Titanium Using Electron Cyclotron Resonance Ion Sources

机译:电子回旋共振离子源增强离子注入钛的理化和生物学特性

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摘要

The surface properties of metallic implants play an important role in their clinical success. Improving upon the inherent shortcomings of Ti implants, such as poor bioactivity, is imperative for achieving clinical use. In this study, we have developed a Ti implant modified with Ca or dual Ca + Si ions on the surface using an electron cyclotron resonance ion source (ECRIS). The physicochemical and biological properties of ion-implanted Ti surfaces were analyzed using various analytical techniques, such as surface analyses, potentiodynamic polarization and cell culture. Experimental results indicated that a rough morphology was observed on the Ti substrate surface modified by ECRIS plasma ions. The in vitro electrochemical measurement results also indicated that the Ca + Si ion-implanted surface had a more beneficial and desired behavior than the pristine Ti substrate. Compared to the pristine Ti substrate, all ion-implanted samples had a lower hemolysis ratio. MG63 cells cultured on the high Ca and dual Ca + Si ion-implanted surfaces revealed significantly greater cell viability in comparison to the pristine Ti substrate. In conclusion, surface modification by electron cyclotron resonance Ca and Si ion sources could be an effective method for Ti implants.
机译:金属植入物的表面性质在其临床成功中起着重要作用。为了实现临床应用,必须改善钛植入物的固有缺点,例如生物活性差。在这项研究中,我们使用电子回旋共振离子源(ECRIS)开发了在表面改性了Ca或双Ca + Si离子的Ti植入物。使用各种分析技术(例如表面分析,电位动力学极化和细胞培养)分析了离子注入的Ti表面的理化和生物学特性。实验结果表明,在经ECRIS等离子体离子改性的Ti衬底表面上观察到了粗糙的形貌。体外电化学测量结果还表明,Ca + Si离子注入的表面比原始的Ti衬底具有更有益和更理想的行为。与原始Ti衬底相比,所有离子注入样品的溶血率均较低。与原始Ti底物相比,在高Ca和双Ca + Si离子注入表面上培养的MG63细胞显示出明显更高的细胞活力。总之,通过电子回旋共振Ca和Si离子源进行的表面改性可能是Ti植入物的有效方法。

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