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Biomedical Magnesium Alloys: A review of material properties, surface modifications and potential as a biodegradable orthopaedic implant

机译:生物医学镁合金:材料性能,表面改性和作为可生物降解的骨科植入物的潜力的评论

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摘要

Magnesium and magnesium based alloys are lightweight metallic materials that are extremely biocompatible and have similar mechanical properties to natural bone. These materials have the potential to function as an osteoconductive and biodegradable substitute in load bearing applications in the field of hard tissue engineering. However, the effects of corrosion and degradation in the physiological environment of the body has prevented their wide spread application to date. The aim of this review is to examine the properties, chemical stability, degradation in situ and methods of improving the corrosion resistance of magnesium and its alloys for potential application in the orthopaedic field. To be an effective implant, the surface and sub-surface properties of the material needs to be carefully selected so that the degradation kinetics of the implant can be efficiently controlled. Several surface modification techniques are presented and their effectiveness in reducing the corrosion rate and methods of controlling the degradation period are discussed. Ideally, balancing the gradual loss of material and mechanical strength during degradation, with the increasing strength and stability of the newly forming bone tissue is the ultimate goal. If this goal can be achieved, then orthopaedic implants manufactured from magnesium based alloys have the potential to deliver successful clinical outcomes without the need for revision surgery.
机译:镁和镁基合金是轻质金属材料,具有极强的生物相容性,并具有与天然骨骼相似的机械性能。这些材料有潜力在硬组织工程领域的承重应用中充当骨传导性和可生物降解的替代物。然而,迄今为止,在人体生理环境中腐蚀和降解的影响阻止了它们的广泛应用。这篇综述的目的是研究性能,化学稳定性,原位降解以及提高镁及其合金的耐腐蚀性的方法,以在骨科领域中潜在应用。为了成为有效的植入物,需要仔细选择材料的表面和亚表面特性,以便可以有效地控制植入物的降解动力学。介绍了几种表面改性技术,并讨论了它们在降低腐蚀速率方面的有效性以及控制降解时间的方法。理想情况下,最终目标是在降解过程中逐渐减少材料和机械强度之间的损失,以及增加新形成的骨组织的强度和稳定性。如果能够实现这一目标,那么由镁基合金制成的整形外科植入物将有可能实现成功的临床结果,而无需进行翻修手术。

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