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Hydroxyapatite (HA)/poly-L-lactic acid (PLLA) dual coating on magnesium alloy under deformation for biomedical applications

机译:用于生物医学应用的变形镁合金上的羟基磷灰石(HA)/聚L-乳酸(PLLA)双涂层

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摘要

The introduction of a protective coating layer to highly corrosive magnesium (Mg) has been proposed as one of the common approaches for improved corrosion resistance of Mg-based implants as load-bearing biomedical applications. However, only few studies have focused on the mechanical stability of the coated Mg under practical conditions where significant deformation of the load-bearing implants is induced during the surgical operation or under physiological environments. Therefore, in this study, we developed a dual coating system composed of an interlayer hydroxyapatite (HA) and a top layer poly-Llactic acid (PLLA) to improve the coating stability under deformation of Mg alloy (WE43) substrate. The HA interlayer was directly formed on the Mg alloy surface, followed by dip-coating of PLLA. As the interlayer, HA improved the adhesion of PLLA by modulating nano-and microscale roughness, in addition to its inherently good bonding strength to Mg. The flexible and deformable top coating PLLA layer mitigated crack propagation in the HA layer under deformation. Thus, the dual coating layer provided good protection to the underlying WE43 from corrosion regardless of deformation. The enhanced corrosion behavior of dual-coated WE43 exhibited better mechanical and biological performance compared to the non-coated or single-coated WE43. Therefore, this dual coating layer on Mg is expected to accelerate Mg-based applications in biomedical devices.
机译:已经提出在高腐蚀性镁(Mg)中引入保护涂层是改善作为负载生物医学应用的基于镁的植入物的耐腐蚀性的常用方法之一。然而,只有很少的研究集中在实际条件下的包覆镁的机械稳定性,在实际条件下,在外科手术过程中或在生理环境下会引起承重植入物的明显变形。因此,在这项研究中,我们开发了由层间羟基磷灰石(HA)和顶层聚乳酸(PLLA)组成的双重涂层系统,以提高镁合金(WE43)基板变形时的涂层稳定性。 HA中间层直接形成在Mg合金表面上,然后浸涂PLLA。 HA作为中间层,除了其固有的与Mg的良好粘合强度外,还通过调节纳米和微米级粗糙度来改善PLLA的粘合性。柔性且可变形的顶涂层PLLA层减轻了变形下HA层中的裂纹扩展。因此,双重涂层为下面的WE43提供了良好的保护,使其不受腐蚀而不受变形的影响。与未涂层或单涂层WE43相比,双涂层WE43的增强的腐蚀行为表现出更好的机械和生物学性能。因此,这种在镁上的双重涂层有望加速生物医学设备中基于镁的应用。

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  • 来源
    《Journal of materials science》 |2016年第2期|34.1-34.9|共9页
  • 作者单位

    Seoul Natl Univ, Dept Mat & Sci Engn, Seoul 151744, South Korea;

    Seoul Natl Univ, Dept Mat & Sci Engn, Seoul 151744, South Korea;

    Seoul Natl Univ, Dept Mat & Sci Engn, Seoul 151744, South Korea;

    Seoul Natl Univ, Dept Mat & Sci Engn, Seoul 151744, South Korea|Seoul Natl Univ, Adv Inst Convergence Technol, Suwon 443270, Gyeonggi Do, South Korea;

    Seoul Natl Univ, Dept Mat & Sci Engn, Seoul 151744, South Korea|Seoul Natl Univ, Adv Inst Convergence Technol, Suwon 443270, Gyeonggi Do, South Korea;

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