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首页> 外文期刊>Acta biomaterialia >Loss of mechanical properties in vivo and bone-implant interface strength of AZ31B magnesium alloy screws with Si-containing coating
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Loss of mechanical properties in vivo and bone-implant interface strength of AZ31B magnesium alloy screws with Si-containing coating

机译:AZ31B含镁合金螺钉的体内和骨植入界面强度的机械性能丧失

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摘要

In this study the loss of mechanical properties and the interface strength of coated AZ31B magnesium alloy (a magnesium-aluminum alloy) screws with surrounding host tissues were investigated and compared with non-coated AZ31B, degradable polymer and biostable titanium alloy screws in a rabbit animal model after 1, 4, 12 and 21 weeks of implantation. The interface strength was evaluated in terms of the extraction torque required to back out the screws. The loss of mechanical properties over time was indicated by one-point bending load loss of the screws after these were extracted at different times. AZ31B samples with a silicon-containing coating had a decreased degradation rate and improved biological properties. The extraction torque of Ti6Al4V, poly-l-lactide (PLLA) and coated AZ31B increased significantly from 1 week to 4 weeks post-implantation, indicating a rapid osteosynthesis process over 3 weeks. The extraction torque of coated AZ31B increased with implantation time, and was higher than that of PLLA after 4 weeks of implantation, equalling that of Ti6Al4V at 12 weeks and was higher at 21 weeks. The bending loads of non-coated AZ31B and PLLA screws degraded sharply after implantation, and that of coated AZ31B degraded more slowly. The biodegradation mechanism, the coating to control the degradation rate and the bioactivity of magnesium alloys influencing the mechanical properties loss over time and bone-implant interface strength are discussed in this study and it is concluded that a suitable degradation rate will result in an improvement in the mechanical performance of magnesium alloys, making them more suitable for clinical application.
机译:在该研究中,研究了覆盖AZ31B镁合金(镁 - 铝合金)螺钉的机械性能和封闭式宿主组织的界面强度的损失,并与兔子动物中的未涂覆的AZ31B,可降解聚合物和可消解钛合金螺钉进行比较植入1,4,12和21周后的模型。根据要求退出螺钉所需的提取扭矩,评估界面强度。在不同时间提取后,通过螺钉的单点弯曲负载损失表示随时间随时间的损失。 AZ31B含硅涂层的样品具有降低的降解速率和改善的生物学性质。 Ti6Al4V,聚-L-丙交酯(PLLA)和涂覆的AZ31B的提取扭矩从植入后1周至4周显着增加,表明快速骨合成过程超过3周。涂覆的AZ31b的提取扭矩随植入时间而增加,并且在4周内植入后高于PLLA,在12周内等于Ti6Al4V,在21周内较高。在植入后,未涂覆的AZ31B和PLLA螺钉的弯曲载荷急剧下降,并且涂覆的AZ31B的弯曲件急剧下降。在本研究中讨论了生物降解机理,控制影响机械性能丧失的镁合金的降解速率和镁合金的生物活性,并且得出结论,合适的降解率将导致改善镁合金的机械性能,使其更适合临床应用。

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  • 来源
    《Acta biomaterialia 》 |2014年第5期| 共8页
  • 作者单位

    Institute of Metal Research Chinese Academy of Sciences 72 Wenhua Road Shenyang 110016 China;

    Institute of Metal Research Chinese Academy of Sciences 72 Wenhua Road Shenyang 110016 China;

    Institute of Metal Research Chinese Academy of Sciences 72 Wenhua Road Shenyang 110016 China;

    Institute of Metal Research Chinese Academy of Sciences 72 Wenhua Road Shenyang 110016 China;

    School of Stomatology China Medical University Shenyang 110002 China;

    Department of Orthopaedics General Hospital of the People's Liberation Army Beijing 100853 China;

    Institute of Metal Research Chinese Academy of Sciences 72 Wenhua Road Shenyang 110016 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 普通生物学 ;
  • 关键词

    Bone-implant interface strength; Magnesium alloy; Mechanical properties loss; Si-containing coating;

    机译:骨植入界面强度;镁合金;机械性能损失;含Si涂层;

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