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Mechanical properties in vitro corrosion and biocompatibility of newly developed biodegradable Mg-Zr-Sr-Ho alloys for biomedical applications

机译:新开发的可生物降解的Mg-Zr-Sr-Ho合金的力学性能体外腐蚀和生物相容性

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摘要

Our previous studies have demonstrated that Mg-Zr-Sr alloys can be anticipated as excellent biodegradable implant materials for load-bearing applications. In general, rare earth elements (REEs) are widely used in magnesium (Mg) alloys with the aim of enhancing the mechanical properties of Mg-based alloys. In this study, the REE holmium (Ho) was added to an Mg-1Zr-2Sr alloy at different concentrations of Mg1Zr2SrxHo alloys (x = 0, 1, 3, 5 wt. %) and the microstructure, mechanical properties, degradation behaviour and biocompatibility of the alloys were systematically investigated. The results indicate that the addition of Ho to Mg1Zr2Sr led to the formation of the intermetallic phases MgHo3, Mg2Ho and Mg17Sr2 which resulted in enhanced mechanical strength and decreased degradation rates of the Mg-Zr-Sr-Ho alloys. Furthermore, Ho addition (≤5 wt. %) to Mg-Zr-Sr alloys led to enhancement of cell adhesion and proliferation of osteoblast cells on the Mg-Zr-Sr-Ho alloys. The in vitro biodegradation and the biocompatibility of the Mg-Zr-Sr-Ho alloys were both influenced by the Ho concentration in the Mg alloys; Mg1Zr2Sr3Ho exhibited lower degradation rates than Mg1Zr2Sr and displayed the best biocompatibility compared with the other alloys.
机译:我们以前的研究表明,Mg-Zr-Sr合金可望成为承重应用中极好的可生物降解的植入材料。通常,稀土元素(REE)被广泛用于镁(Mg)合金中,目的是增强Mg基合金的机械性能。在这项研究中,REE Ho(Ho)以不同浓度的Mg1Zr2SrxHo合金(x = 0,1,3,5 wt。%)添加到Mg-1Zr-2Sr合金中,并观察到其微观结构,力学性能,降解行为和系统地研究了合金的生物相容性。结果表明,向Mg1Zr2Sr中添加Ho导致形成金属间相MgHo3,Mg2Ho和Mg17Sr2,从而提高了机械强度,并降低了Mg-Zr-Sr-Ho合金的降解率。此外,在Mg-Zr-Sr-Ho合金中添加Ho(≤5wt。%)可以增强细胞粘附和成骨细胞的增殖。 Mg-Zr-Sr-Ho合金的体外生物降解和生物相容性均受Mg合金中Ho浓度的影响。与其他合金相比,Mg1Zr2Sr3Ho的降解速率低于Mg1Zr2Sr,并且具有最佳的生物相容性。

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