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首页> 外文期刊>Materials science & engineering >Accelerated corrosion of 316L stainless steel in simulated body fluids in the presence of H_2O_2 and albumin
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Accelerated corrosion of 316L stainless steel in simulated body fluids in the presence of H_2O_2 and albumin

机译:H_2O_2和白蛋白存在下模拟体液中316L不锈钢的加速腐蚀

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摘要

316L stainless steel has been widely used for orthopedic devices. Inflammatory response and direct contact with abundant proteins after implantation lead to corrosion issues of biomedical stainless steels. The effect of combination of H2O2and albumin on the corrosion of 316L stainless steel has been investigated for the first time in simulated body fluids at 37 °C with electrochemical and long term immersion tests. ICP-MS measurement after 16 weeks immersion reveals that the total concentration in the presence of both species was substantially higher than physiological saline alone, and even higher than the sum of H2O2alone and albumin alone. Electrochemical polarisation curves and electrochemical impendence spectra show that albumin accelerated anodic dissolution and suppressed cathodic reaction, while H2O2promoted cathodic reaction. Also, H2O2and/or albumin promoted meta-stable/stable pitting corrosion and decreased charge transfer resistance. Accelerated corrosion of 316L stainless steel in the presence of both species was attributed to the promoted formation of Fe oxides and CrOOH by H2O2and the largely favoured dissolution of these oxides by the addition of albumin, significantly accelerating Fe and Cr release. The synergistic interaction between both species indicates significant underestimation of corrosion rate evaluated solely in physiological saline. These findings suggest the necessity of using more realistic solutions to evaluate corrosion resistance of biomedical alloys for future in-vitro studies.
机译:316L不锈钢已广泛用于骨科器械。植入后的炎症反应和与大量蛋白质的直接接触会导致生物医​​学不锈钢的腐蚀问题。在模拟体液中,在37°C下,通过电化学和长期浸没测试,首次研究了H2O2和白蛋白结合对316L不锈钢腐蚀的影响。浸泡16周后的ICP-MS测量表明,两种物质均存在时,总浓度大大高于单独的生理盐水,甚至高于单独的H2O2和单独的白蛋白之和。电化学极化曲线和电化学势能谱表明,白蛋白可加速阳极溶解并抑制阴极反应,而H2O2可促进阴极反应。同样,H2O2和/或白蛋白会促进亚稳定/稳定的点蚀,并降低电荷转移阻力。两种物质均存在时316L不锈钢的加速腐蚀归因于H2O2促进了Fe氧化物和CrOOH的形成以及通过添加白蛋白而大大促进了这些氧化物的溶解,从而显着加速了Fe和Cr的释放。两种物质之间的协同相互作用表明,仅在生理盐水中评估的腐蚀速率明显偏低。这些发现表明,有必要使用更现实的解决方案来评估生物医学合金的耐腐蚀性,以用于未来的体外研究。

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  • 来源
    《Materials science & engineering》 |2018年第11期|11-19|共9页
  • 作者单位

    Key Laboratory of Marine Environmental Corrosion and Bio-fouling, Institute of Oceanology, Chinese Academy of Sciences;

    Institute for Translation Medicine, Medical College, Qingdao University;

    Key Laboratory of Marine Environmental Corrosion and Bio-fouling, Institute of Oceanology, Chinese Academy of Sciences,State Key Laboratory for Marine Corrosion and Protection, Luoyang Ship Material Research Institute (LSMRI);

    Key Laboratory of Marine Environmental Corrosion and Bio-fouling, Institute of Oceanology, Chinese Academy of Sciences;

    Key Laboratory of Marine Environmental Corrosion and Bio-fouling, Institute of Oceanology, Chinese Academy of Sciences;

    Key Laboratory of Marine Environmental Corrosion and Bio-fouling, Institute of Oceanology, Chinese Academy of Sciences;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Stainless steel; H2O2; Albumin; Corrosion; Implant;

    机译:不锈钢;H2O2;白蛋白;腐蚀;植入;

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