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The influence of storage and heat treatment on a magnesium-based implant material: An in vitro and in vivo study

机译:储存和热处理对镁基植入材料的影响:一项体外和体内研究

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摘要

Background: Magnesium alloys are recommended as a potential material for osteosynthesis. It is known that storage-induced property modifications can occur in materials like aluminum. Thus the aim of this study was to analyze the influence of storage durations of up to 48weeks on the biomechanical, structural, and degradation properties of the degradable magnesium alloy LAE442. Methods: Extruded implants (n=104; Ø 2.5mm×25mm) were investigated after storage periods of 0, 12, 24, and 48weeks in three different sub-studies: (I) immediately after the respective storage duration and after an additional (II) 56days of in vitro corrosion in simulated body fluid (SFB), and (III) 48weeks in vivo corrosion in a rabbit model, respectively. In addition, the influence of a T5-heat treatment (206°C for 15h in an argon atmosphere) was tested (n=26; 0week of storage). Evaluation was performed by three-point bending, scanning electron microscopy, radiography, μ-computed tomography, evaluation of the mean grain size, and contrast analysis of precipitations (such as aluminum or lithium). Results: The heat treatment induced a significant reduction in initial stability, and enhanced the corrosion resistance. In vivo experiments showed a good biocompatibility for all implants. During the storage of up to 48weeks, no significant changes occurred in the implant properties. Conclusions: LAE442 implants can be safely used after up to 48weeks of storage.
机译:背景:推荐使用镁合金作为骨合成的潜在材料。已知在诸如铝的材料中会发生储能引起的性质改变。因此,本研究的目的是分析长达48周的储存时间对可降解镁合金LAE442的生物力学,结构和降解性能的影响。方法:在三个不同的子研究中,分别在0、12、24和48周的储存期后对挤压植入物(n = 104;Ø2.5mm×25mm)进行了研究:(I)分别在各自的储存期后和之后( II)分别在模拟体液(SFB)中进行56天的体外腐蚀,以及(III)在兔模型中进行48周的体内腐蚀。另外,测试了T5热处理(在氩气中在206℃下保持15h)的影响(n = 26; 0周的储存)。通过三点弯曲,扫描电子显微镜,射线照相,μ计算机断层扫描,平均晶粒度评估以及沉淀物(例如铝或锂)的对比分析进行评估。结果:热处理显着降低了初始稳定性,并增强了耐腐蚀性。体内实验显示所有植入物都具有良好的生物相容性。在长达48周的储存过程中,植入物的性能没有明显变化。结论:LAE442植入物可在长达48周的储存后安全使用。

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