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一种具有生物力学相容性、细胞相容性、抗菌能力以及体外和体内成骨能力的可生物降解 Zn-5Gd 合金,可用于骨科应用。

A biodegradable Zn-5Gd alloy with biomechanical compatibility, cytocompatibility, antibacterial ability, and in vitro and in vivo osteogenesis for orthopedic applications.

机构信息

Institute of Stomatology, School and Hospital of Stomatology, Wenzhou Medical University, Wenzhou 325027, 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 Mar 15;177:538-559. doi: 10.1016/j.actbio.2024.01.018. Epub 2024 Jan 20.

Abstract

Zinc (Zn) and some of its alloys are recognized as promising biodegradable implant materials due to their acceptable biocompatibility, facile processability, and moderate degradation rate. Nevertheless, the limited mechanical properties and stability of as-cast Zn alloys hinder their clinical application. In this work, hot-rolled (HR) and hot-extruded (HE) Zn-5 wt.% gadolinium (Zn-5Gd) samples were prepared by casting and respectively combining with hot rolling and hot extrusion for bone-implant applications. Their microstructure evolution, mechanical properties, corrosion behavior, cytotoxicity, antibacterial ability, and in vitro and in vivo osteogenesis were systematically evaluated. The HR and HE Zn-5Gd exhibited significantly improved mechanical properties compared with those of their pure Zn counterparts and the HR Zn-5Gd showed a unique combination of tensile properties with an ultimate tensile strength of ∼311.6 MPa, yield strength of ∼236.5 MPa, and elongation of ∼40.6%, all of which are greater than the mechanical properties required for bone-implant materials. The HR and HE Zn-5Gd showed higher corrosion resistance than their pure Zn counterpart in Hanks' solution and the HE Zn-5Gd had the lowest corrosion rate of 155 µm/y measured by electrochemical corrosion and degradation rate of 26.9 µm/y measured by immersion testing. The HR and HE Zn-5Gd showed high cytocompatibility toward MC3T3-E1 and MG-63 cells, high antibacterial effects against S. aureus, and better in vitro osteogenic activity than their pure Zn counterparts. Furthermore, the HE Zn-5Gd exhibited better in vivo biocompatibility, osteogenesis, and osteointegration ability than pure Zn and pure Ti. STATEMENT OF SIGNIFICANCE: This work reports the mechanical properties, corrosion behaviors, cytocompatibility, antibacterial ability, in vitro and in vivo osteogenesis of biodegradable Zn-Gd alloy for bone-implant applications. Our findings demonstrate that the hot-rolled (HR) Zn-5Gd showed a unique combination of tensile properties with an ultimate tensile strength of ∼311.6 MPa, yield strength of ∼236.5 MPa, and elongation of ∼40.6%. The HR and HE Zn-5Gd showed higher corrosion resistance than their pure Zn counterpart in Hanks' solution. The HR and HE Zn-5Gd showed high cytocompatibility toward MC3T3-E1 and MG-63 cells, good antibacterial effects against S. aureus, and better in vitro osteogenic activity. Furthermore, the HE Zn-5Gd exhibited better in vivo biocompatibility, osteogenesis, and osteointegration ability than pure Zn and pure Ti.

摘要

锌(Zn)及其一些合金因其良好的生物相容性、易于加工性和适中的降解速率而被认为是有前途的可生物降解植入材料。然而,铸态 Zn 合金的机械性能有限且稳定性差,限制了其临床应用。在这项工作中,通过铸造制备了热轧(HR)和热挤压(HE)Zn-5wt.%钆(Zn-5Gd)样品,并分别结合热轧和热挤压用于骨植入应用。系统评估了它们的微观结构演变、力学性能、腐蚀行为、细胞毒性、抗菌能力以及体外和体内成骨作用。与纯 Zn 相比,HR 和 HE Zn-5Gd 的力学性能得到了显著提高,而 HR Zn-5Gd 则具有独特的拉伸性能组合,其拉伸强度约为 311.6MPa,屈服强度约为 236.5MPa,伸长率约为 40.6%,均大于骨植入材料所需的机械性能。HR 和 HE Zn-5Gd 在 Hank's 溶液中的耐腐蚀性均高于纯 Zn,其中 HE Zn-5Gd 的腐蚀速率最低,电化学腐蚀测量为 155µm/y,浸泡试验测量的降解速率为 26.9µm/y。HR 和 HE Zn-5Gd 对 MC3T3-E1 和 MG-63 细胞具有高细胞相容性,对金黄色葡萄球菌具有高抗菌作用,体外成骨活性优于纯 Zn。此外,HE Zn-5Gd 表现出比纯 Zn 和纯 Ti 更好的体内生物相容性、成骨作用和骨整合能力。

本工作报道了可生物降解 Zn-Gd 合金在骨植入应用中的力学性能、腐蚀行为、细胞相容性、抗菌能力、体外和体内成骨作用。我们的研究结果表明,HR Zn-5Gd 具有独特的拉伸性能组合,拉伸强度约为 311.6MPa,屈服强度约为 236.5MPa,伸长率约为 40.6%。在 Hank's 溶液中,HR 和 HE Zn-5Gd 的耐腐蚀性均高于纯 Zn。HR 和 HE Zn-5Gd 对 MC3T3-E1 和 MG-63 细胞具有高细胞相容性,对金黄色葡萄球菌具有良好的抗菌作用,体外成骨活性较好。此外,HE Zn-5Gd 表现出比纯 Zn 和纯 Ti 更好的体内生物相容性、成骨作用和骨整合能力。

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