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Development of a Novel Loading Device for Studying Magnesium Degradation under Compressive Load for Implant Applications

机译:新型加载装置的研究用于研究植入物在压缩载荷下的镁降解

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摘要

Medical implants play a key role in treating bone fractures. Permanent implants are currently used for immobilization of fractures and bearing physiological loads during bone healing. After bone has healed, these implants, if not removed, often cause complications in the long run; and secondary surgeries for removing them pose additional discomfort and expenses for patients. Magnesium (Mg)-based bioresorbable implants, can potentially eliminate the need for additional surgeries by degrading safely over time in the human body. When studying the degradation behaviors of Mg-based implants in vitro, it is important to simulate physiological conditions in vivo closely, including loading. Considering that implants often carry physiological loads in vivo and mechanical stresses affect the degradation rate of Mg, a novel loading device was designed and manufactured for studying Mg degradation under load over a long period of time in a simulated body fluid in vitro. Degradation of Mg rods were investigated by immersing in a revised simulated body fluid (rSBF) for two weeks while a consistent compressive load was applied using the loading device. The results showed that the loading device provided a consistent load of 500 ± 45 N during the two weeks of immersion. Mg rods showed a significant faster degradation rate under the applied load, as demonstrated by a higher mass loss of the sample, a higher pH increase and Mg2+ ion release in the rSBF.
机译:医用植入物在治疗骨折中起关键作用。永久植入物目前用于固定骨折并在骨愈合过程中承受生理负荷。骨头愈合后,这些植入物(如果不去除)从长远来看通常会引起并发症;去除它们的二次手术给患者带来了额外的不适感和费用。基于镁(Mg)的生物可吸收植入物通过在人体中随时间安全降解,可以潜在地消除对其他手术的需求。当研究体外基于Mg的植入物的降解行为时,密切模拟体内的生理条件(包括负荷)非常重要。考虑到植入物通常在体内承受生理负荷,并且机械应力会影响Mg的降解速率,因此设计并制造了一种新型的负荷装置,用于研究体外模拟体液中长时间负荷下Mg的降解。通过在修正的模拟体液(rSBF)中浸泡两周来研究镁棒的降解情况,同时使用加载设备施加一致的压缩载荷。结果表明,加载设备在浸入的两周内提供了500±45 N的恒定负载。镁棒在外加载荷下表现出明显更快的降解速率,这表现为样品的质量损失较高,pH值较高以及rSBF中的Mg 2 + 离子释放。

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