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Biodegradable Magnesium‐Based Implants in Orthopedics—A General Review and Perspectives

机译:骨科中可生物降解的镁基植入物的综述与展望

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摘要

Biodegradable Mg‐based metals may be promising orthopedic implants for treating challenging bone diseases, attributed to their desirable mechanical and osteopromotive properties. This Review summarizes the current status and future research trends for Mg‐based orthopedic implants. First, the properties between Mg‐based implants and traditional orthopedic implants are compared on the following aspects: in vitro and in vivo degradation mechanisms of Mg‐based implants, peri‐implant bone responses, the fate of the degradation products, and the cellular and molecular mechanisms underlying the beneficial effects of Mg ions on osteogenesis. Then, the preclinical studies conducted at the low weight bearing sites of animals are introduced. The innovative strategies (for example, via designing Mg‐containing hybrid systems) are discussed to address the limitations of Mg‐based metals prior to their clinical applications at weight‐bearing sites. Finally, the available clinical studies are summarized and the challenges and perspectives of Mg‐based orthopedic implants are discussed. Taken together, the progress made on the development of Mg‐based implants in basic, translational, and clinical research has laid down a foundation for developing a new era in the treatment of challenging and prevalent bone diseases.
机译:可生物降解的基于镁的金属可能具有良好的机械和骨促进特性,因此有望成为具有挑战性的骨科植入物,用于治疗具有挑战性的骨疾病。这篇综述总结了基于镁的骨科植入物的现状和未来的研究趋势。首先,从以下方面比较了基于Mg的植入物和传统的骨科植入物之间的特性:基于Mg的植入物的体外和体内降解机理,植入物周围的骨反应,降解产物的命运以及细胞和细胞镁离子对成骨作用有益的分子机制。然后,介绍了在动物低体重部位进行的临床前研究。讨论了创新策略(例如,通过设计含Mg的杂化系统)来解决基于Mg的金属在举重场所​​进行临床应用之前的局限性。最后,总结了可用的临床研究,并讨论了基于镁的骨科植入物的挑战和前景。综上所述,在基础,转化和临床研究中基于Mg的植入物的开发取得的进展,为发展具有挑战性和普遍性骨病的新时代奠定了基础。

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