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Assessment of the degradation rates and effectiveness of different coated Mg-Zn-Ca alloy scaffolds for in vivo repair of critical-size bone defects

机译:评估不同涂覆的Mg-Zn-Ca合金支架在体内修复临界尺寸骨缺损的降解率和有效性

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摘要

Surgical repair of bone defects remains challenging, and the search for alternative procedures is ongoing. Devices made of Mg for bone repair have received much attention owing to their good biocompatibility and mechanical properties. We developed a new type of scaffold made of a Mg-Zn-Ca alloy with a shape that mimics cortical bone and can be filled with morselized bone. We evaluated its durability and efficacy in a rabbit ulna-defect model. Three types of scaffold-surface coating were evaluated: group A, no coating; group B, a 10-μm microarc oxidation coating; group C, a hydrothermal duplex composite coating; and group D, an empty-defect control. X-ray and micro-computed tomography(micro-CT) images were acquired over 12 weeks to assess ulnar repair. A mechanical stress test indicated that bone repair within each group improved significantly over time (P < 0.01). The degradation behavior of the different scaffolds was assessed by micro-CT and quantified according to the amount of hydrogen gas generated; these measurements indicated that the group C scaffold better resisted corrosion than did the other scaffold types (P < 0.05). Calcein fluorescence and histology revealed that greater mineral densities and better bone responses were achieved for groups B and C than for group A, with group C providing the best response. In conclusion, our Mg-Zn-Ca-alloy scaffold effectively aided bone repair. The group C scaffold exhibited the best corrosion resistance and osteogenesis properties, making it a candidate scaffold for repair of bone defects.
机译:骨缺损的外科手术修复仍然具有挑战性,并且寻找替代程序的工作正在进行中。由镁制成的用于骨修复的装置由于其良好的生物相容性和机械性能而备受关注。我们开发了一种新型的支架,该支架由Mg-Zn-Ca合金制成,其形状模仿皮质骨,并且可以填充有锯齿状的骨。我们在兔尺骨缺损模型中评估了其耐久性和功效。评价了三种类型的支架表面涂层:A组,无涂层; A组,无涂层。 B组,10微米的微弧氧化涂层; C组,水热双工复合涂层; D组,一个空缺陷控件。在12周内获取X线和微型计算机断层扫描(micro-CT)图像以评估尺骨修复。机械应力测试表明,随着时间的推移,各组内的骨修复均显着改善(P <0.01)。通过Micro-CT评估不同支架的降解行为,并根据产生的氢气量进行定量;这些测量结果表明,C组脚手架比其他脚手架类型具有更好的抗腐蚀能力(P <0.05)。钙黄绿素的荧光和组织学研究表明,与A组相比,B组和C组获得了更高的矿物质密度和更好的骨骼反应,而C组提供了最佳的响应。总之,我们的Mg-Zn-Ca-合金支架有效地帮助了骨修复。 C组支架表现出最佳的耐腐蚀性和成骨性,使其成为修复骨缺损的候选支架。

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