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Surface Modification of Pure Magnesium Mesh for Guided Bone Regeneration: In Vivo Evaluation of Rat Calvarial Defect

机译:用于引导骨再生的纯镁网的表面修饰:大鼠颅骨缺损的体内评估。

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摘要

Guided bone regeneration is a therapeutic method that uses a barrier membrane to provide space available for new bone formation at sites with insufficient bone volume. Magnesium with excellent biocompatibility and mechanical properties has been considered as a promising biodegradable material for guided bone regeneration; however, the rapid degradation rate in the physiological environment is a problem to be solved. In this study, surface modification of pure magnesium mesh was conducted by plasma electrolytic oxidation and hydrothermal treatment to form a densely protective layer on the Mg substrate. The protective layer mainly consisted of Mg(OH)2 with the amorphous calcium phosphate. Then, weight loss measurement and Micro-CT imaging were performed after an immersion test in a simulated body fluid. The effect of surface modification of the magnesium mesh on the guided bone regeneration was evaluated through an in vivo test using the rat calvarial defect model. The biodegradation of the magnesium mesh was identified to be significantly retarded. Additionally, the surface modification of Mg also can improve the bone volume and bone density of calvarial defect in comparison with that of the pristine Mg mesh.
机译:引导性骨再生是一种治疗方法,该方法使用屏障膜为骨量不足的部位提供可用于新骨形成的空间。具有良好的生物相容性和机械性能的镁被认为是有前途的可生物降解的材料,可用于引导骨的再生。然而,在生理环境中的快速降解速率是需要解决的问题。在这项研究中,通过等离子电解氧化和水热处理对纯镁网进行表面改性,以在Mg基底上形成致密的保护层。保护层主要由Mg(OH)2和无定形磷酸钙组成。然后,在模拟体液中进行浸没测试后,进行失重测量和Micro-CT成像。通过使用大鼠颅骨缺损模型的体内测试,评估了镁网表面改性对引导骨再生的影响。镁网的生物降解被确定为明显受阻。另外,与原始Mg网相比,Mg的表面改性还可以改善颅骨缺损的骨体积和骨密度。

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