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Biological properties of Zn–0.04Mg–2Ag: a new degradable zinc alloy scaffold for repairing large-scale bone defects

机译:Zn-0.04mg-2ag的生物学性质:一种用于修复大规模骨缺损的新型可降解锌合金支架

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Treatment of large-scale bone defects remains a clinical challenge. In particular, it preferably requires an implantable material with porous, absorbable, biocompatible, and antibacterial activities. Here we report the mechanical and biological properties of a porous Zn-0.04Mg-2Ag (wt%) biodegradable zinc alloy scaffold, prepared by template replication technique. In the aspect of cytocompatibility, cytoskeleton staining of stem cells cocultured with Zn-0.04Mg-2Ag showed that the outline of cells and nuclei was clearly visible, and the interwoven network of linear fibers was abundant in the cells, which revealed lower cytotoxicity and less effect on cell proliferation. In the aspect of antibacterial properties, Zn-0.04Mg-2Ag alloy had little antibacterial effect on Escherichia coli, but had obvious antibacterial ability against Staphylococcus aureus and Staphylococcus epidermidis. In the aspect of bone induction, alizarin red staining and the expression of alkaline phosphatase showed no obvious increase;However, Zn-0.04Mg-2Ag alloy could significantly up-regulate the mRNA expression of osteoblast-specific transcription factors, osteocalcin and osteopontin. Zn-0.04Mg-2Ag degradable zinc alloy scaffold had excellent biocompatibility, and has significant antibacterial activity and fine osteogenic induction, which was an ideal bone substitute material for repairing large-scale bone defects.
机译:大规模骨缺损的治疗仍然是一个临床挑战。特别地,它优选需要具有多孔,可吸收,生物相容性和抗菌活性的可植入材料。在这里,我们通过模板复制技术制备了多孔Zn-0.04mg-2Ag(WT%)可生物降解的锌合金支架的机械和生物学性质。在细胞偶联的方面,用Zn-0.04mg-2Ag与Zn-0.04mg-2Ag共有的干细胞的细胞骨架染色表明,细胞和核的轮廓清晰可见,并且线性纤维的交织网络在细胞中丰富,揭示了细胞毒性较低的细胞毒性对细胞增殖的影响。在抗菌性能的方面,Zn-0.04mg-2Ag合金对大肠杆菌具有很少的抗菌作用,但对金黄色葡萄球菌和葡萄球菌表皮的抗菌能力具有明显的抗菌能力。在骨诱导方面,茜素红染色和碱性磷酸酶的表达显示出明显增加;然而,Zn-0.04mg-2Ag合金可以显着上调成骨细胞特异性转录因子,骨钙素和骨骨桥蛋白的mRNA表达。 Zn-0.04mg-2Ag可降解的锌合金支架具有优异的生物相容性,具有显着的抗菌活性和细粒性诱导,是一种用于修复大规模骨缺损的理想骨替代材料。

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