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Biodegradable Mg-Cu alloys with enhanced osteogenesis, angiogenesis, and long-lasting antibacterial effects

机译:可生物降解的Mg-Cu合金,具有增强的成骨性,血管生成和持久的抗菌作用

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A series of biodegradable Mg-Cu alloys is designed to induce osteogenesis, stimulate angiogenesis, and provide long-lasting antibacterial performance at the same time. The Mg-Cu alloys with precipitated Mg2Cu intermetallic phases exhibit accelerated degradation in the physiological environment due to galvanic corrosion and the alkaline environment combined with Cu release endows the Mg-Cu alloys with prolonged antibacterial effects. In addition to no cytotoxicity towards HUVECs and MC3T3-E1 cells, the Mg-Cu alloys, particularly Mg-0.03Cu, enhance the cell viability, alkaline phosphatase activity, matrix mineralization, collagen secretion, osteogenesis-related gene and protein expressions of MC3T3-E1 cells, cell proliferation, migration, endothelial tubule forming, angiogenesis-related gene, and protein expressions of HUVECs compared to pure Mg. The favorable osteogenesis and angiogenesis are believed to arise from the release of bioactive Mg and Cu ions into the biological environment and the biodegradable Mg-Cu alloys with osteogenesis, angiogenesis, and long-term antibacterial ability are very promising in orthopedic applications.
机译:设计了一系列可生物降解的Mg-Cu合金,以诱导成骨,刺激血管生成并同时提供持久的抗菌性能。带有析出的Mg2Cu金属间相的Mg-Cu合金由于电腐蚀而在生理环境中表现出加速的降解,而碱性环境与Cu的释放相结合,使Mg-Cu合金具有延长的抗菌作用。除了对HUVEC和MC3T3-E1细胞无细胞毒性外,Mg-Cu合金(尤其是Mg-0.03Cu)还增强了MC3T3-的细胞活力,碱性磷酸酶活性,基质矿化,胶原蛋白分泌,成骨相关基因和蛋白质表达。与纯Mg相比,HUVEC的E1细胞,细胞增殖,迁移,内皮小管形成,血管生成相关基因和蛋白质表达。据信良好的成骨作用和血管生成是由于将生物活性的Mg和Cu离子释放到生物环境中,在骨科应用中,具有成骨作用,血管生成和长期抗菌能力的可生物降解的Mg-Cu合金非常有前途。

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