含镁材料在骨修复中的作用及机制研究进展。

Biomaterials Translational Pub Date : 2025-06-25 eCollection Date: 2025-01-01 DOI:10.12336/bmt.24.00038
Yuanchao Zhu, Junyu Su, Tiantian Qi, Geng Zhang, Peng Liu, Haotian Qin, Qi Yang, Sen Yao, Yien Zheng, Jian Weng, Hui Zeng, Fei Yu
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引用次数: 0

摘要

骨骼具有运动、附着和保护内脏器官的功能。由于衰老、创伤、感染等原因引起的骨病可能严重影响患者的日常生活。镁离子与骨骼健康的维持密切相关。将镁离子整合到递送系统和水凝胶中可以提高镁离子的应用,从而直接作用于成骨细胞系,影响相关细胞的增殖和分化。镁离子的缓慢释放使其在靶部位的作用时间长,减少体内镁离子的清除,这对骨修复有重要作用。镁基生物合金支架因其良好的生物相容性、可降解性和成骨性而受到广泛关注,在骨再生和修复中发挥着重要作用。本文就含镁材料在骨修复和再生中的作用及机制作一综述。通过对含镁生物材料目前面临的挑战和未来发展方向的讨论,为含镁生物材料在骨科领域的发展提供了新的见解。综上所述,含镁生物材料在骨科中具有很大的应用价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Research progress on the role and mechanism of magnesium-containing materials in bone repair.

Research progress on the role and mechanism of magnesium-containing materials in bone repair.

Research progress on the role and mechanism of magnesium-containing materials in bone repair.

Research progress on the role and mechanism of magnesium-containing materials in bone repair.

Bones can fulfill functions in movement, attachment, and protection of internal organs. Bone diseases caused by ageing, trauma, infection, and other reasons may seriously affect the daily life of patients. Magnesium ions are closely associated with the maintenance of bone health. Integrating magnesium ions into delivery systems and hydrogels can improve their application, thus directly acting on the osteoblast cell lineage and influencing the proliferation and differentiation of relevant cells. The slow release of magnesium ions allows for their effects on the target site for a long time, reducing the clearance of magnesium ions in the body, which significantly contributes to bone repair. Magnesium-based bioalloy scaffolds have received widespread attention for their favourable biocompatibility, degradability, and bone-forming properties and play an important role in bone regeneration and repair. This article presents a review on the role and mechanism of magnesium-containing materials in bone repair and regeneration. By discussing the current challenges and future directions for magnesium-containing biomaterials, new insights are provided into the development of these materials in the field of orthopaedics. In conclusion, magnesium-containing biomaterials have great application value in orthopaedics.

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CiteScore
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