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用于可生物降解骨固定应用的热挤压 Zn-5RE(RE=Y、Ho 和 Er)合金的力学性能、腐蚀行为以及体外和体内生物相容性。

Mechanical properties, corrosion behavior, and in vitro and in vivo biocompatibility of hot-extruded Zn-5RE (RE = Y, Ho, and Er) alloys for biodegradable bone-fixation applications.

机构信息

Institute of Stomatology, School and Hospital of Stomatology, Wenzhou Medical University, Wenzhou 325000, China; School of Materials Science and Engineering, Xiangtan University, Xiangtan 411105, China.

Department of Orthopaedics, The Third Affiliated Hospital of Wenzhou Medical University (Ruian People's Hospital), Wenzhou 325016, China.

出版信息

Acta Biomater. 2024 Sep 1;185:55-72. doi: 10.1016/j.actbio.2024.07.006. Epub 2024 Jul 10.

Abstract

Biodegradable Zn alloys have significant application potential for hard-tissue implantation devices owing to their suitable degradation behavior and favorable biocompatibility. Nonetheless, pure Zn and its alloys in the as-cast state are mechanically instable and low in strength, which restricts their clinical applicability. Here, we report the exceptional mechanical, corrosion, and biocompatibility properties of hot-extruded Zn-5RE (wt.%, RE = rare earth of Y; or Ho; or Er) alloys intended for use in biodegradable bone substitutes. The microstructural characteristics, mechanical behavior, corrosion resistance, cytocompatibility, osteogenic differentiation, and capacity of osteogenesis in vivo of the Zn-5RE alloys are comparatively investigated. The Zn-5Y alloy demonstrates the best tensile properties, encompassing a 138 MPa tensile yield strength, a 302 MPa ultimate tensile strength, and 63% elongation, while the Zn-5Ho alloy shows the highest compression yield strength of 260 MPa and Vickers hardness of 104 HV. The Zn-5Er alloy shows a 126 MPa tensile yield strength, a 279 MPa ultimate tensile strength, 52% elongation, a 196 MPa compression yield strength, and a 101 HV Vickers microhardness. Further, the Zn-5Er alloy has a 130 µm per year corrosion rate in electrochemical tests and a 26 µm per year degradation rate in immersion tests, which is the lowest among the tested alloys. It also has the best in vitro osteogenic differentiation ability and capacity for osteogenesis and osteointegration in vivo after implantation in rat femurs among the Zn-5RE alloys, indicating promising potential in load-bearing biodegradable internal bone-fixation applications. STATEMENT OF SIGNIFICANCE: This work reports the exceptional mechanical, corrosion, and biocompatibility properties of hot-extruded (HE) Zn-5 wt.%-rare earth (Zn-5RE) alloys using single yttrium (Y), holmium (Ho), and erbium (Er) alloying for biodegradable bone-implant applications. Our findings demonstrate that the HE Zn-5Er alloy showed σ of 279 MPa, tensile yield strength of 126 MPa, elongation of 51.6%, compression yield strength of 196 MPa, and microhardness of 101.2 HV. Further, HE Zn-5Er showed the lowest electrochemical corrosion rate of 130 µm/y and lowest degradation rate of 26 µm/y, and the highest in vitro osteogenic differentiation ability, in vivo osteogenesis, and osteointegration ability after implantation in rat femurs among the Zn-5RE alloys, indicating promising potential in load-bearing biodegradable internal bone-fixation applications.

摘要

具有生物降解性的 Zn 合金由于其适宜的降解行为和良好的生物相容性,在硬组织植入装置中有显著的应用潜力。然而,铸态的纯 Zn 及其合金机械稳定性差、强度低,这限制了它们的临床应用。在这里,我们报告了经过热挤压的 Zn-5RE(wt.%,RE=钇;或 Ho;或 Er)合金的优异的机械、腐蚀和生物相容性,这些合金可用于生物可降解的骨替代物。比较研究了 Zn-5RE 合金的微观结构特征、力学性能、耐腐蚀性、细胞相容性、成骨分化能力以及体内成骨能力。Zn-5Y 合金表现出最好的拉伸性能,拉伸屈服强度为 138MPa,拉伸强度为 302MPa,伸长率为 63%,而 Zn-5Ho 合金表现出最高的压缩屈服强度 260MPa 和维氏硬度 104HV。Zn-5Er 合金的拉伸屈服强度为 126MPa,拉伸强度为 279MPa,伸长率为 52%,压缩屈服强度为 196MPa,维氏硬度为 101HV。此外,Zn-5Er 合金在电化学测试中的腐蚀速率为 130μm/年,在浸泡测试中的降解速率为 26μm/年,这是所有测试合金中最低的。在大鼠股骨内植入后,它还具有最好的体外成骨分化能力和体内成骨和骨整合能力,这表明其在用于承重的可生物降解的内部骨固定应用中具有潜在的应用前景。

意义声明:本工作报道了使用单重稀土元素(Y、Ho 和 Er)共掺杂的热挤压(HE)Zn-5wt%-RE(Zn-5RE)合金的优异机械、腐蚀和生物相容性。研究结果表明,HEZn-5Er 合金的σ值为 279MPa,拉伸屈服强度为 126MPa,伸长率为 51.6%,压缩屈服强度为 196MPa,维氏硬度为 101.2HV。此外,HEZn-5Er 合金具有最低的电化学腐蚀速率(130μm/y)和最低的降解速率(26μm/y),以及最高的体外成骨分化能力、体内成骨能力和大鼠股骨内植入后的骨整合能力,这表明其在用于承重的可生物降解的内部骨固定应用中具有潜在的应用前景。

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