The Biological Effects of Magnesium-Based Implants on the Skeleton and Their Clinical Implications in Orthopedic Trauma Surgery.

IF 8.1 Q1 ENGINEERING, BIOMEDICAL
Biomaterials research Pub Date : 2024-12-23 eCollection Date: 2024-01-01 DOI:10.34133/bmr.0122
Elena Müller, Till Schoberwalter, Konrad Mader, Jan-Marten Seitz, Alexander Kopp, Anke Baranowsky, Johannes Keller
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Abstract

Magnesium (Mg)-based implants have evolved as a promising innovation in orthopedic trauma surgery, with the potential to revolutionize the treatment of bone diseases, including osteoporotic fractures and bone defects. Available clinical studies mostly show excellent patient outcomes of resorbable Mg-based implants, without the need for subsequent implant removal. However, the occurrence of radiolucent zones around Mg-based implants seems to be a noticeable drawback for a more widespread clinical use. Mechanistically, both in vivo and in vitro studies demonstrated beneficial effects on the formation of new bone, a unique characteristic of Mg-based implants. In this regard, Mg has been shown to exert pleiotropic functions on osteogenic differentiation and migration of osteoblasts and their precursors. Additionally, collective evidence suggests that Mg-based implants promote angiogenesis in newly formed bone and exert immunomodulatory effects in the bone microenvironment. Likewise, Mg-based implants and their degradation products were shown to inhibit bone resorption by impairing osteoclastogenesis. The purpose of this review is to provide a state-of-the-art summary of the clinical and basic science evidence regarding the performance of currently used Mg-based implants. In addition to the status of in vivo and in vitro research and clinical applications, future challenges and perspectives of Mg-based orthopedic implants are discussed.

镁基植入物对骨骼的生物学效应及其在骨科创伤手术中的临床意义。
基于镁(Mg)的植入物已经发展成为骨科创伤手术中有前途的创新,有可能彻底改变骨疾病的治疗,包括骨质疏松性骨折和骨缺陷。现有的临床研究大多表明,可吸收的镁基种植体的患者预后良好,无需随后的种植体移除。然而,镁基植入物周围的放射透光区似乎是更广泛临床应用的一个明显缺点。在机械上,体内和体外研究都证明了对新骨形成的有益作用,这是镁基植入物的独特特征。因此,镁对成骨细胞及其前体的成骨分化和迁移具有多效性。此外,集体证据表明,镁基植入物促进新生骨的血管生成,并在骨微环境中发挥免疫调节作用。同样,镁基植入物及其降解产物被证明通过破坏破骨细胞生成来抑制骨吸收。本综述的目的是提供关于目前使用的镁基植入物性能的临床和基础科学证据的最新总结。除了体内、体外研究和临床应用的现状外,还讨论了镁基骨科植入物未来的挑战和前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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