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In vitro and in vivo degradation behavior of Mg–2Sr–Ca and Mg–2Sr–Zn alloys

机译:Mg–2Sr–Ca和Mg–2Sr–Zn合金的体外和体内降解行为

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摘要

Magnesium alloys with integration of degradability and good mechanical performance are desired for orthopedic implants. In this paper, Mg–2Sr–Ca and Mg–2Sr–Zn alloys were prepared and the degradation as well as the bone response were investigated. Compared with the binary Mg–2Sr alloys, the addition of Ca and Zn improved the and corrosion resistance. Mg–2Sr–Ca and Mg–2Sr–Zn alloys exhibited more uniform corrosion and maintained the configuration of the implants 4 weeks post-implantation. The corrosion rates were 0.85 mm/yr for Mg–2Sr–Zn and 1.10 mm/yr for Mg–2Sr–Ca in comparison with 1.37 mm/yr for Mg–2Sr. The cell tests indicated that Mg–2Sr–Ca and Mg–2Sr–Zn alloys exhibited higher MG63 cell viability than Mg–2Sr alloy. Furthermore, these two alloys can promote the mineralization and new bone formation without inducing any significant adverse effects and this sound osteogenic properties suggest its attractive clinical potential.
机译:骨科植入物需要具有可降解性和良好机械性能的镁合金。在本文中,制备了Mg–2Sr–Ca和Mg–2Sr–Zn合金,并研究了其降解以及骨骼反应。与二元Mg–2Sr合金相比,Ca和Zn的添加改善了Ti的抗腐蚀性。植入后4周,Mg-2Sr-Ca和Mg-2Sr-Zn合金表现出更均匀的腐蚀并保持植入物的形状。 Mg-2Sr-Zn的腐蚀速率为0.85mm / yr,Mg-2Sr-Ca的腐蚀速率为1.10mm / yr,而Mg-2Sr的腐蚀速率为1.37mm / yr。细胞测试表明,Mg-2Sr-Ca和Mg-2Sr-Zn合金比Mg-2Sr合金具有更高的MG63细胞活力。此外,这两种合金可以促进矿化作用和新的骨形成,而不会引起任何明显的不利影响,这种良好的成骨特性表明其具有诱人的临床潜力。

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