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双层水滑石修饰镁合金的互补协同设计及其多功能骨科植入物应用

Complementary and Synergistic Design of Bi-Layered Double Hydroxides Modified Magnesium Alloy toward Multifunctional Orthopedic Implants.

机构信息

State Key Laboratory of High Performance Ceramics and Superfine Microstructure, Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai, 200050, China.

Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

Adv Healthc Mater. 2023 Jan;12(2):e2201367. doi: 10.1002/adhm.202201367. Epub 2022 Nov 9.

Abstract

Magnesium (Mg)-based alloys have been regarded as promising implants for future clinic orthopedics, however, how to endow them with good anti-corrosion and biofunctions still remains a great challenge, especially for complicated bone diseases. Herein, three transition metals (M = Mn, Fe, and Co)-containing layered double hydroxides (LDH) (LDH-Mn, LDH-Fe, and LDH-Co) with similar M content are prepared on Mg alloy via a novel two-step method, then systematic characterizations and comparisons are conducted in detail. Results showed that LDH-Mn exhibited the best corrosion resistance, LDH-Mn and LDH-Co possessed excellent photothermal and enzymatic activities, LDH-Fe revealed better cytocompatibility and antibacterial properties, while LDH-Co demonstrated high cytotoxicity. Based on these results, an optimized bilayer LDH coating enriched with Fe and Mn (LDH-MnFe) from top to bottom have been designed for further in vitro and in vivo analysis. The top Fe-riched layer provided biocompatibility and antibacterial properties, while the bottom Mn-riced layer provided excellent anti-corrosion, photothermal and enzymatic effects. In addition, the released Mg, Fe, and Mn ions have a positive influence on angiogenesis and osteogenesis. Thus, the LDH-MnFe showed complementary and synergistic effects on anti-corrosion and multibiofunctions (antibacteria, antitumor, and osteogenesis). The present work offers a novel multifunctional Mg-based implant for treating bone diseases.

摘要

镁(Mg)基合金已被视为未来临床骨科有前途的植入物,然而,如何赋予它们良好的耐腐蚀性和生物功能仍然是一个巨大的挑战,尤其是对于复杂的骨病。在此,通过一种新的两步法在镁合金上制备了三种含有过渡金属(M = Mn、Fe 和 Co)的层状双氢氧化物(LDH)(LDH-Mn、LDH-Fe 和 LDH-Co),然后对其进行了详细的系统表征和比较。结果表明,LDH-Mn 表现出最佳的耐腐蚀性,LDH-Mn 和 LDH-Co 具有优异的光热和酶活性,LDH-Fe 具有更好的细胞相容性和抗菌性能,而 LDH-Co 则具有较高的细胞毒性。基于这些结果,设计了一种从顶部到底部富含 Fe 和 Mn 的优化双层 LDH 涂层(LDH-MnFe)用于进一步的体外和体内分析。富含 Fe 的顶层提供生物相容性和抗菌性能,而富含 Mn 的底层提供优异的耐腐蚀性、光热和酶效应。此外,释放的 Mg、Fe 和 Mn 离子对血管生成和成骨有积极影响。因此,LDH-MnFe 在抗腐蚀和多生物功能(抗菌、抗肿瘤和成骨)方面表现出互补和协同作用。本工作为治疗骨病提供了一种新型多功能镁基植入物。

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