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Osteogenesis and degradation behavior of magnesium alloy plate in vivo

机译:体内镁合金板的成骨发生和降解行为

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Introduction: The magnesium alloy was fabricated into orthopedic plates, and used to repair tibial fractures of New Zealand white rabbits. The osteogenesis and degradation behavior of magnesium alloy plates were investigated in vivo . Methods: 38 rabbits were randomly divided into an experimental group using the magnesium alloy plate and control group using a titanium alloy plate. Tibial fractures in the experimental group and control group were fixed with magnesium alloy plates and titanium alloy plates, respectively. An X-ray of the fracture site was taken at 1, 2, 4, 8, and 16 weeks after surgery. The formation of callus and expression of bone morphogenetic protein (BMP-2) in each group were examined at 4, 8, and 16 weeks postoperatively. The degradation behavior of the magnesium alloy plate was observed using a scanning electron microscope with an energy dispersive spectroscopy system. Results: The results of X-ray showed that the fracture healed gradually and there was significant callus around the plate in the magnesium alloy plate group than that in the titanium alloy plate groups. The formation of callus and the expression of BMP-2 in the magnesium alloy plate group were more significant than that in the titanium plate group. The degradation behavior of the magnesium alloy plates deepened in vivo with the implantation time. Conclusion: The results demonstrated that the magnesium alloy plate implanted into the rabbit tibia could promote the formation of callus and result in osteogenesis in vivo . Meanwhile, the magnesium alloy plate was absorbed gradually in vivo .
机译:简介:镁合金制成骨科板,用于修复新西兰白兔的胫骨骨折。体内研究了镁合金板的骨质发生和降解行为。方法:使用镁合金板和对照组随机分为实验组,使用钛合金板随机分为实验组。实验组和对照组中的胫骨骨折分别用镁合金板和钛合金板固定。骨折部位的X射线在手术后1,2,4,8和16周拍摄。在术后4,8和16周检查每组中愈伤组织和骨形态发生蛋白(BMP-2)的表达。使用扫描电子显微镜具有能量分散光谱系统的扫描电子显微镜观察镁合金板的降解行为。结果:X射线的结果表明,骨折逐渐愈合,镁合金板组的板上存在显着的愈伤组织,而不是钛合金板基团。愈伤组织的形成和镁合金板组中BMP-2的表达比钛板基团更大。镁合金板的降解行为在体内加深了植入时间。结论:结果表明,植入兔胫骨的镁合金板可以促进愈伤组织的形成并导致体内骨质发生。同时,镁合金板在体内逐渐被吸收。

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