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Clinical translation and challenges of biodegradable magnesium-based interference screws in ACL reconstruction

机译:可生物降解镁基干涉螺钉在ACL重建中的临床翻译与挑战

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As one of the most promising fixators developed for anterior cruciate ligament (ACL) reconstruction, biodegradable magnesium (Mg)-based interference screws have gained increasing attention attributed to their appropriate modulus and favorable biological properties during degradation after surgical insertion. However, its fast degradation and insufficient mechanical strength have also been recognized as one of the major causes to limit their further application clinically. This review focused on the following four parts. Firstly, the advantages of Mg or its alloys over their counterparts as orthopaedic implants in the fixation of tendon grafts in ACL reconstruction were discussed. Subsequently, the underlying mechanisms behind the contributions of Mg ions to the tendon-bone healing were introduced. Thirdly, the technical challenges of Mg-based interference screws towards clinical trials were discussed, which was followed by the introduction of currently used modification methods for gaining improved corrosion resistance and mechanical properties. Finally, novel strategies including development of Mg/Titanium (Ti) hybrid fixators and Mg-based screws with innovative structure for achieving clinically customized therapies were proposed. Collectively, the advancements in the basic and translational research on the Mg-based interference screws may lay the foundation for exploring a new era in the treatment of the tendon-bone insertion (TBI) and related disorders.
机译:作为为前十字韧带(ACL)重建开发的最有前途的固定器之一,可生物降解的镁(MG)基于手术插入后的降解期间的适当模量和有利的生物学性能造成的可生物降解的镁(Mg)。然而,它的快速降解和机械强度不足也被认为是临床限制其进一步应用的主要原因之一。本综述专注于以下四个部分。首先,讨论了MG或其合金在其对应物中作为骨科植入物在ACL重建中固定在肌腱移植物中的骨科植入物中的优点。随后,介绍了Mg离子贡献背后的潜在机制。第三,讨论了基于MG的干涉螺钉对临床试验的技术挑战,然后引入目前使用的改进方法,用于提高耐腐蚀性和机械性能。最后,提出了一种新的策略,包括MG /钛(TI)混合固定器和基于MG的螺钉,具有用于实现临床定制疗法的创新结构的MG基螺钉。统称,基于MG的干涉螺钉的基本和翻译研究的进步可能为探索肌腱骨插入(TBI)和相关疾病的治疗中的新时代奠定了基础。

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