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首页> 外文期刊>Materials science & engineering, C. Materials for Biogical applications >Corrosion behavior, biocompatibility and biomechanical stability of a prototype magnesium-based biodegradable intramedullary nailing system
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Corrosion behavior, biocompatibility and biomechanical stability of a prototype magnesium-based biodegradable intramedullary nailing system

机译:原型镁基可生物降解髓内钉系统的腐蚀行为,生物相容性和生物力学稳定性

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摘要

Implants made of degradable magnesium alloys are a potential alternative to conventional orthopaedic implant materials, e.g. stainless steel or titanium. Intramedullary nails made of the magnesium alloy LAE442 were subjected to cyclic fatigue tests in both distilled water and Hank's Balanced Salt Solution (HBSS) at 37.5 degrees C until implant failure or a limit of 500,000 cycles was reached. In distilled water, four of the five nails were still intact after the end of the biomechanical test. In HBSS, a breakage within the first 70,000 bending cycles was observed. Additionally, the degradation rate of this alloy was determined in HBSS according to the weight loss method (0.24 +/- 0.12 mm year(-1)) and based on gas release (0.21 +/- 0.03 mm year(-1)) with a standard eudiometer. A cytotoxicity test with L929 cells was carried out in accordance with EN ISO 10993-5/12. This test demonstrated sufficient cell viability of the diluted extracts (50%, 25% and 12.5%). The relative metabolic activity of the 100% extract was reduced slightly below 70%, which is classified as a threshold value for cytotoxicity. In conclusion, this in vitro study indicates that intramedullary nails made of LAE442 may not have the required fatigue resistance for load-bearing applications and the development of a corrosion-protective coating may be necessary to prevent early failure of the implant. (C) 2015 Elsevier B.V. All rights reserved.
机译:由可降解镁合金制成的植入物可能是常规整形外科植入物材料的潜在替代品,例如不锈钢或钛。将镁合金LAE442制成的髓内钉在蒸馏水和汉克平衡盐溶液(HBSS)中于37.5摄氏度下进行循环疲劳测试,直到植入失败或达到500,000次循环的极限。在生物力学测试结束后,在蒸馏水中,五个指甲中的四个仍然完好无损。在HBSS中,观察到在最初的70,000个弯曲周期内出现了断裂。此外,该合金的降解率是根据失重法(0.24 +/- 0.12 mm年(-1))和气体释放量(0.21 +/- 0.03 mm年(-1))在HBSS中测定的,标准的硬度计。根据EN ISO 10993-5 / 12,对L929细胞进行了细胞毒性测试。该测试表明稀释的提取物(50%,25%和12.5%)具有足够的细胞活力。 100%提取物的相对代谢活性略低于70%,被分类为细胞毒性的阈值。总之,这项体外研究表明,LAE442制成的髓内钉可能不具有承重应用所需的抗疲劳性,并且可能需要开发防腐涂层来防止植入物的早期失效。 (C)2015 Elsevier B.V.保留所有权利。

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