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首页> 外文期刊>Biomaterials >Biodegradable magnesium-hydroxyapatite metal matrix composites.
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Biodegradable magnesium-hydroxyapatite metal matrix composites.

机译:可生物降解的镁-羟基磷灰石金属基复合材料。

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摘要

Recent studies indicate that there is a high demand to design magnesium alloys with adjustable corrosion rates and suitable mechanical properties. An approach to this challenge might be the application of metal matrix composite (MMC) based on magnesium alloys. In this study, a MMC made of magnesium alloy AZ91D as a matrix and hydroxyapatite (HA) particles as reinforcements have been investigated in vitro for mechanical, corrosive and cytocompatible properties. The mechanical properties of the MMC-HA were adjustable by the choice of HA particle size and distribution. Corrosion tests revealed that HA particles stabilised the corrosion rate and exhibited more uniform corrosion attack in artificial sea water and cell solutions. The phase identification showed that all samples contained hcp-Mg, Mg(17)Al(12), and HA before and after immersion. After immersion in artificial sea water CaCO3 was found on MMC-HA surfaces, while no formation of CaCO3 was found after immersion in cell solutions with and without proteins. Co-cultivation of MMC-HA with human bone derived cells (HBDC), cells of an osteoblasts lineage (MG-63) and cells of a macrophage lineage (RAW264.7) revealed that RAW264.7, MG-63 and HBDC adhere, proliferate and survive on the corroding surfaces of MMC-HA. In summary, biodegradable MMC-HA are cytocompatible biomaterials with adjustable mechanical and corrosive properties.
机译:最近的研究表明,对设计具有可调节的腐蚀速率和合适的机械性能的镁合金有很高的要求。解决这一难题的方法可能是应用基于镁合金的金属基复合材料(MMC)。在这项研究中,已经对以镁合金AZ91D为基质和羟基磷灰石(HA)颗粒为增强材料的MMC进行了机械,腐蚀性和细胞相容性的体外研究。通过选择HA粒度和分布,可以调节MMC-HA的机械性能。腐蚀测试表明,HA颗粒可稳定腐蚀速率,并在人造海水和细胞溶液中表现出更均匀的腐蚀攻击。相鉴定表明,所有样品在浸没前后均含有hcp-Mg,Mg(17)Al(12)和HA。浸入人造海水中后,在MMC-HA表面发现CaCO3,而浸入有蛋白质和无蛋白质的细胞溶液中均未发现CaCO3的形成。 MMC-HA与人骨衍生细胞(HBDC),成骨细胞谱系细胞(MG-63)和巨噬细胞谱系(RAW264.7)共同培养显示RAW264.7,MG-63和HBDC粘附,在MMC-HA腐蚀表面上增殖并生存。总之,可生物降解的MMC-HA是具有可调节机械和腐蚀性的细胞相容性生物材料。

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