首页> 美国卫生研究院文献>Scientific Reports >Strategic design of a Mussel-inspired in situ reduced Ag/Au-Nanoparticle Coated Magnesium Alloy for enhanced viability antibacterial property and decelerated corrosion rates for degradable implant Applications
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Strategic design of a Mussel-inspired in situ reduced Ag/Au-Nanoparticle Coated Magnesium Alloy for enhanced viability antibacterial property and decelerated corrosion rates for degradable implant Applications

机译:贻贝启发性原位还原Ag / Au-纳米涂层镁合金的战略设计旨在提高可降解植入物的生存能力抗菌性能和降低的腐蚀速率

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摘要

Magnesium (Mg) and its alloys have attracted much attention as a promising candidate for degradable implant applications however the rapid corrosion of magnesium inside the human body greatly limits its use as an implant material. Therefore, coating the alloy surface with a multifunctional film is a promising way to overcome the drawbacks. Here we propose for the first time a multifunction layer coating to enhance the cell viability, antibacterial property and decelerated corrosion rates to act as a novel material to be used for degradable implant Applications. For that, the magnesium alloy (AZ31) was first treated with hydrofluoric acid (HF) and then dopamine tris Hydrochloric acid (tris-HCL) solution. The reducing catechol groups in the polydopamine (PD) layer subsequently immobilize silver/gold ions in situ to form uniformly dispersed Ag/Au nanoparticles on the coating layer. The successful formation of Ag/Au nanoparticles on the HF-PD AZ31 alloy was confirmed using XPS and XRD, and the morphology of all the coated samples were investigated using SEM images. The alloy with HF-PDA exhibit enhanced cell attachment and proliferation. Moreover, the nanoparticle immobilized HF-PD alloy exhibited dramatic corrosion resistance enhancement with superior antibacterial properties and accountable biocompatibility. Thus the result suggest that HF-PD Ag/Au alloy has great potential in the application of degradable implant and the surface modification method is of great significance to determine its properties.
机译:镁(Mg)及其合金作为可降解植入物应用的有前途的候选物已经引起了广泛的关注,但是,镁在人体内部的快速腐蚀极大地限制了其作为植入物的用途。因此,用多功能膜涂覆合金表面是克服缺陷的一种有前途的方法。在这里,我们首次提出了一种多功能涂层,以增强细胞活力,抗菌性能和减缓的腐蚀速率,以用作可降解植入物应用中的新型材料。为此,首先用氢氟酸(HF)处理镁合金(AZ31),然后用多巴胺三盐酸(tris-HCL)溶液处理。聚多巴胺(PD)层中的还原邻苯二酚基团随后将银/金离子原位固定,从而在涂层上形成均匀分散的Ag / Au纳米颗粒。使用XPS和XRD证实了在HF-PD AZ31合金上成功形成了Ag / Au纳米颗粒,并使用SEM图像研究了所有涂层样品的形貌。具有HF-PDA的合金表现出增强的细胞附着和增殖。此外,纳米粒子固定的HF-PD合金表现出显着的耐蚀性增强,具有出色的抗菌性能和可证实的生物相容性。结果表明,HF-PD Ag / Au合金在可降解植入物的应用中具有很大的潜力,表面改性方法对确定其性能具有重要意义。

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