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铜掺杂沸石咪唑酯骨架材料-8/羟基磷灰石复合涂层赋予镁合金优异的耐腐蚀性、抗菌能力和生物相容性。

Copper-doped zeolitic imidazolate frameworks-8/hydroxyapatite composite coating endows magnesium alloy with excellent corrosion resistance, antibacterial ability and biocompatibility.

作者信息

Ling Lei, Cai Shu, Zuo You, Tian Meng, Meng Tengfei, Tian Hao, Bao Xiaogang, Xu Guohua

机构信息

Key Laboratory for Advanced Ceramics and Machining Technology of Ministry of Education, Tianjin University, Tianjin, China.

Key Laboratory for Advanced Ceramics and Machining Technology of Ministry of Education, Tianjin University, Tianjin, China.

出版信息

Colloids Surf B Biointerfaces. 2022 Nov;219:112810. doi: 10.1016/j.colsurfb.2022.112810. Epub 2022 Aug 27.

Abstract

Magnesium (Mg) and its alloys exhibit an excellent prospect for orthopedic clinical application due to their outstanding biodegradability and mechanical adaptability. However, the rapid corrosion rate/latent device-associated infections may lead to a failed internal fixation of Mg-based implants. Herein, a novel composite coating consisted of outer copper-doped zeolitic imidazolate frameworks-8 and inner hydroxyapatite (Cu@ZIF-8/HA) was in situ constructed on AZ31B Mg alloy via a two-step approach of hydrothermal treatment and seeded solvothermal method. The results verified that the electrochemical impedance of the obtained Cu@ZIF-8/HA composite coating increased by two orders of magnitude to 6.6013 × 10 Ω·cm compared to that of bare Mg alloy. This was attributed to the reduced particle size of ZIF-8 nanoparticles due to the doped copper ions, which could be effectively grown in situ on the micro-nano flower-like structure of the HA-coated Mg alloy. Meanwhile, the Cu@ZIF-8/HA coating exhibited excellent antibacterial properties due to the release of copper ions and zinc ions from Cu@ZIF-8 dissolved in bacterial culture solution. The ICP results unraveled that the released concentration of copper and zinc ions could enhance the activity of alkaline phosphatase in the appropriate range during MC3T3-E1 cell culture in vitro for 7 days. This research revealed that the preparation of multifunctional metal-organic frameworks coating doped with antimicrobial metal ions via the seed layer solvothermal method was significant for studying the antimicrobial properties, osteogenic performance and corrosion resistance of Mg-based bioactive coatings.

摘要

镁(Mg)及其合金因其出色的生物可降解性和机械适应性,在骨科临床应用中展现出良好的前景。然而,快速的腐蚀速率/潜在的与装置相关的感染可能导致镁基金属植入物内固定失败。在此,通过水热处理和种子溶剂热法两步法,在AZ31B镁合金上原位构建了一种新型复合涂层,该涂层由外层铜掺杂的沸石咪唑酯骨架-8和内层羟基磷灰石(Cu@ZIF-8/HA)组成。结果证实,与裸镁合金相比,所得Cu@ZIF-8/HA复合涂层的电化学阻抗增加了两个数量级,达到6.6013×10 Ω·cm。这归因于掺杂的铜离子使ZIF-8纳米颗粒的粒径减小,其能够在羟基磷灰石涂层镁合金的微纳花状结构上有效地原位生长。同时,由于溶解在细菌培养液中的Cu@ZIF-8释放铜离子和锌离子,Cu@ZIF-8/HA涂层表现出优异的抗菌性能。电感耦合等离子体质谱(ICP)结果表明,在体外MC3T3-E1细胞培养7天期间,铜离子和锌离子的释放浓度在适当范围内可增强碱性磷酸酶的活性。该研究表明,通过种子层溶剂热法制备掺杂抗菌金属离子的多功能金属有机框架涂层,对于研究镁基生物活性涂层的抗菌性能、成骨性能和耐腐蚀性具有重要意义。

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