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新型 Zn-0.8%Li-(Mg,Ag) 合金用于引导性骨再生的微观结构、力学性能、体外降解行为和生物相容性研究。

Investigation on the microstructure, mechanical properties, in vitro degradation behavior and biocompatibility of newly developed Zn-0.8%Li-(Mg, Ag) alloys for guided bone regeneration.

机构信息

School of Materials Science and Engineering, Central South University, Changsha 410083, China; Department of Materials Science and Engineering, Yantai Nanshan University, Yantai 265713, China.

School of Materials Science and Engineering, Central South University, Changsha 410083, China.

出版信息

Mater Sci Eng C Mater Biol Appl. 2019 Jun;99:1021-1034. doi: 10.1016/j.msec.2019.01.120. Epub 2019 Feb 20.

Abstract

In order to develop a biodegradable guided bone regeneration membrane with the required mechanical properties and high corrosion resistance, Zn-0.8%Li(wt), Zn-0.8%Li-0.2%Mg(wt), and Zn-0.8%Li-0.2%Ag(wt) alloys were cast and hot rolled into 0.1-mm thick sheets. The main secondary phase in Zn-0.8%Li-(Mg, Ag) alloys was the LiZn nanoprecipitate. Following the addition of minimal amounts of Mg, the tensile strength of the Zn-0.8%Li-0.2%Mg alloy improved, albeit with a greatly reduced elongation and corrosion resistance. The addition of minimal amounts of Ag refined the microstructure, producing fine equiaxed grains (2.3 μm) in the Zn-0.8%Li-0.2%Ag alloy, and promoted a uniform distribution of LiZn nanoprecipitates with increased density and refined size. Therefore, the Zn-0.8%Li-0.2%Ag alloy exhibited optimal tensile strength and the highest corrosion resistance, with its elongation reaching 97.9 ± 8.7%. The corrosion products of Zn-0.8%Li-(Mg, Ag) alloys immersed in Ringer's solution for 35 days mainly consisted of zinc oxide and zinc carbonate. In addition, the cytotoxicity test using L929 cells and the evaluation of bone marrow mesenchymal stem cell proliferation indicated that the Zn-0.8%Li-0.2%Ag alloy had good biocompatibility.

摘要

为了开发具有所需机械性能和高耐腐蚀性的可生物降解引导骨再生膜,我们将 Zn-0.8%Li(wt)、Zn-0.8%Li-0.2%Mg(wt) 和 Zn-0.8%Li-0.2%Ag(wt) 合金铸造成 0.1-mm 厚的板材,并进行热轧。Zn-0.8%Li-(Mg, Ag) 合金中的主要次生相是 LiZn 纳米沉淀物。在添加少量 Mg 后,Zn-0.8%Li-0.2%Mg 合金的拉伸强度提高了,尽管伸长率和耐腐蚀性大大降低。添加少量 Ag 细化了微观结构,在 Zn-0.8%Li-0.2%Ag 合金中产生了细小的等轴晶粒(2.3μm),并促进了 LiZn 纳米沉淀物的均匀分布,增加了密度和细化了尺寸。因此,Zn-0.8%Li-0.2%Ag 合金表现出最佳的拉伸强度和最高的耐腐蚀性,其伸长率达到 97.9±8.7%。在 Ringer 溶液中浸泡 35 天后,Zn-0.8%Li-(Mg, Ag) 合金的腐蚀产物主要由氧化锌和碳酸锌组成。此外,使用 L929 细胞进行的细胞毒性试验和骨髓间充质干细胞增殖评估表明,Zn-0.8%Li-0.2%Ag 合金具有良好的生物相容性。

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