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Challenges and opportunities for biodegradable magnesium alloy implants

机译:可生物降解镁合金植入物的挑战和机遇

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摘要

Magnesium (Mg) and its alloys posse's great potential for the application of biodegradable medical implants. It is due to their unique properties like low density and elastic modulus, good biocompatibility, etc. But still there are many challenges for Mg alloy based implants. Due to rapid degradation of Mg and its alloys in biological fluid, it loses its mechanical integrity and fails to perform before the complete healing of bone fracture (in orthopedics application) or removal of plaque in arteries (in case of vascular implants). Using suitable alloying elements mechanical strength and corrosion resistance of Mg-alloys can be enhanced but cytotoxicity and long term inflammatory consequences of these elements are the major concern. Further modifying the surface characteristics of Mg-alloy through various surface coating, machining, mechanical working, etc., corrosion behaviour can be manipulated. In this field of biodegradable implants, the various opportunities are yet to be explored in detail to improve the clinical performance of Mg alloy implants for orthopedics and vascular applications. This review paper summarises the various challenges and opportunities in design and development of biodegradable Mg alloy implants.
机译:镁(Mg)及其合金Posse对可生物降解的医疗植入物应用的巨大潜力。它是由于它们独特的性质,如低密度和弹性模量,良好的生物相容性等。但仍然存在许多挑战Mg合金的植入物。由于Mg及其生物液中的合金的快速降解,它会失去其机械完整性,并且在骨折(骨科应用中的完全愈合或在动脉中除去斑块(在血管植入物中除去斑块)之前失败。使用合适的合金元件,Mg-合金的机械强度和耐腐蚀性可以增强,但这些元素的细胞毒性和长期炎症后果是主要问题。通过各种表面涂层,加工,机械工作等进一步改变Mg-合金的表面特性,可以操纵腐蚀行为。在这种可生物降解的植入物领域中,尚不详细探索各种机会,以改善骨科和血管应用的Mg合金植入物的临床性能。该综述综述了可生物降解的Mg合金植入物的设计和开发的各种挑战和机遇。

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