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采用粉末冶金法制备的 Zn-0.5Ti-0.5Fe 和 Zn-0.5Ti-0.5Mg 引导骨再生屏障膜的力学性能、微观结构、降解行为和生物相容性。

Mechanical Properties, Microstructure, Degradation Behavior, and Biocompatibility of Zn-0.5Ti-0.5Fe and Zn-0.5Ti-0.5Mg Guided Bone Regeneration Barrier Membranes Prepared Using a Powder Metallurgy Method.

机构信息

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

National Engineering Research Centre of Advanced Energy Storage Materials, Changsha, Hunan 410205, China.

出版信息

ACS Biomater Sci Eng. 2024 Oct 14;10(10):6520-6532. doi: 10.1021/acsbiomaterials.4c01068. Epub 2024 Oct 3.

Abstract

Pure zinc exhibits low mechanical properties, making it unsuitable for use in guided bone regeneration (GBR) membranes. The present study focused on the preparation of Zn alloy GBR films using powder metallurgy, resulting in Zn-0.5Ti-0.5Fe and Zn-0.5Ti-0.5Mg alloy GBR films. The tensile strength of the pure Zn GBR film measured 85.9 MPa, while an elongation at break was 13.5%. In contrast, Zn-0.5Ti-0.5Fe and Zn-0.5Ti-0.5Mg alloy GBR films demonstrated significantly higher tensile strengths of 145.3 and 164.4 MPa, respectively, whereas elongations at break were 30.2% and 19.3%. The addition of Ti, Fe, and Mg substantially enhanced the mechanical properties of the zinc alloys. Corrosion analysis revealed that Zn-0.5Ti-0.5Fe and Zn-0.5Ti-0.5Mg alloy GBR membranes exhibited corrosion potentials of -1.298 and -1.316 V, respectively, with corresponding corrosion current densities of 12.11 and 13.32 μA/cm. These values were translated to corrosion rates of 0.181 and 0.199 mm/year, indicating faster corrosion rates compared to pure Zn GBR membranes, which displayed a corrosion rate of 0.108 mm/year. Notably, both Zn-based alloy GBR membranes demonstrated excellent cytocompatibility, with a cytotoxicity rating of 0-1 in 25% leachate. Additionally, these membranes exhibited favorable osteogenic ability, as evidenced by the quantitative bone volume/tissue volume ratios (BV/TV) of new bone formation, which reached 30.3 ± 1.4% and 65.5 ± 1.8% for the Zn-0.5Ti-0.5Fe and Zn-0.5Ti-0.5Mg alloy GBR membranes, respectively, after 12 weeks of implantation. These results highlighted the significant potential for facilitating new bone growth. The proposed Zn-0.5Ti-0.5Fe and Zn-0.5Ti-0.5Mg alloy GBR membranes showed promise as viable biodegradable materials for future clinical studies.

摘要

纯锌表现出较低的机械性能,使其不适合用于引导骨再生(GBR)膜。本研究专注于使用粉末冶金制备 Zn 合金 GBR 膜,得到了 Zn-0.5Ti-0.5Fe 和 Zn-0.5Ti-0.5Mg 合金 GBR 膜。纯 Zn GBR 膜的拉伸强度测量值为 85.9 MPa,断裂伸长率为 13.5%。相比之下,Zn-0.5Ti-0.5Fe 和 Zn-0.5Ti-0.5Mg 合金 GBR 膜的拉伸强度分别显著提高到 145.3 和 164.4 MPa,而断裂伸长率分别为 30.2%和 19.3%。添加 Ti、Fe 和 Mg 大大提高了锌合金的机械性能。腐蚀分析表明,Zn-0.5Ti-0.5Fe 和 Zn-0.5Ti-0.5Mg 合金 GBR 膜的腐蚀电位分别为-1.298 和-1.316 V,相应的腐蚀电流密度分别为 12.11 和 13.32 μA/cm。这些值转化为腐蚀速率,分别为 0.181 和 0.199 mm/年,表明与纯 Zn GBR 膜相比,腐蚀速率更快,纯 Zn GBR 膜的腐蚀速率为 0.108 mm/年。值得注意的是,两种基于 Zn 的合金 GBR 膜均表现出优异的细胞相容性,在 25%浸提液中的细胞毒性评分为 0-1。此外,这些膜表现出良好的成骨能力,通过新骨形成的定量骨体积/组织体积比(BV/TV)证明,在植入 12 周后,Zn-0.5Ti-0.5Fe 和 Zn-0.5Ti-0.5Mg 合金 GBR 膜的新骨形成分别达到 30.3±1.4%和 65.5±1.8%。这些结果突出了促进新骨生长的巨大潜力。提出的 Zn-0.5Ti-0.5Fe 和 Zn-0.5Ti-0.5Mg 合金 GBR 膜有望成为未来临床研究中可行的可生物降解材料。

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