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Degradation and Biocompatibility of AZ31 Magnesium Alloy Implants In Vitro and In Vivo: A Micro-Computed Tomography Study in Rats

机译:AZ31镁合金植入体外和体内的降解和生物相容性:大鼠微型计算机断层扫描研究

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In current orthodontic practice, miniscrew implants (MSIs) for anchorage and bone fixation plates (BFPs) for surgical orthodontic treatment are commonly used. MSIs and BFPs that are made of bioabsorbable material would avoid the need for removal surgery. We investigated the mechanical, degradation and osseointegration properties and the bone-implant interface strength of the AZ31 bioabsorbable magnesium alloy to assess its suitability for MSIs and BFPs. The mechanical properties of a Ti alloy (TiA), AZ31 Mg alloy (MgA), pure Mg and poly-L-lactic acid (PLA) were investigated using a nanoindentation test. Also, pH changes in the solution and degradation rates were determined using immersion tests. Three-dimensional, high-resolution, micro-computed tomography (CT) of implants in the rat femur was performed. Biomechanical push-out testing was conducted to calculate the maximum shear strength of the bone-implant interface. Scanning electron microscopy (SEM), histological analysis and an evaluation of systemic inflammation were performed. MgA has mechanical properties similar to those of bone, and is suitable for implants. The degradation rate of MgA was significantly lower than that of Mg. MgA achieved a significantly higher bone-implant bond strength than TiA. Micro-CT revealed no significant differences in bone density or bone-implant contact between TiA and MgA. In conclusion, the AZ31 Mg alloy is suitable for both MSIs and BFPs.
机译:在目前的正畸实践中,通常使用用于手术正畸治疗的锚固和骨固定板(BFP)的迷胃植入物(MSI)。由生物可吸收材料制成的MSIS和BFP将避免需要去除手术。我们研究了AZ31生物可吸收镁合金的机械,降解和骨整合性能和骨植入界面强度,以评估MSIS和BFP的适用性。使用纳米趋势试验研究了Ti合金(TIA),AZ31mg合金(MGA),纯Mg和聚乳酸(PLA)的机械性能。此外,使用浸渍试验测定溶液和降解速率的pH变化。进行了大鼠股骨植入物的三维,高分辨率,微计算断层扫描(CT)。进行生物力学推出测试以计算骨植入界面的最大剪切强度。扫描电子显微镜(SEM),组织学分析和对全身炎症的评估进行了。 MGA具有类似于骨骼的机械性能,适用于植入物。 MGA的降解率明显低于Mg。 MGA实现了比TIA更高的骨植入粘合强度。微型CT显示TIA和MGA之间的骨密度或骨植入接触没有显着差异。总之,AZ31 Mg合金适用于MSIS和BFP。

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