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Single step formation of biocompatible bimetallic alloy nanoparticles of gold and silver using isonicotinylhydrazide

机译:异烟酰肼一步一步形成金和银的生物相容性双金属合金纳米粒子

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Manufacturing nanoparticles with controlled physicochemical properties using environment-friendly routes have potential to open new prospects for a variety of applications. Accordingly, several approaches have been established for manufacturing metal nanoparticles. Many of these approaches entail the use of hazardous chemicals and could be toxic to the environment, and cannot be used readily for biomedical applications. In the present work, we report a single step bio-friendly approach to formulate gold (Au), silver (Ag), and Au-Ag alloy nanoparticles with desired surface corona and composition using isonicotinylhydrazide (INH) as a reducing agent. INH also functioned as a stabilizing agent by enabling a surface corona around the nanoparticles. Remarkably, within a single step INH could also provide a handle in regulating the composition of Au and Ag in bimetallic systems without any additional chemical modification. The physicochemical and surface properties of the different nanoparticles thus obtained have been examined by analytical, spectroscopic and microscopic techniques. Cell cytotoxicity (release of lactate dehydrogenase), cell viability and intracellular reactive oxygen species (ROS) assays confirmed that the Au, Ag, and Au-Ag bimetallic nanoparticles prepared with INH are biocompatible. Finally, the presence of organic surface corona of INH on the nanoparticles was found to impart nanozyme activity and antimycobacterial sensitivity to the nanoparticles.
机译:使用环境友好的路线生产具有可控理化性质的纳米粒子,有可能为各种应用打开新的前景。因此,已经建立了几种用于制造金属纳米颗粒的方法。这些方法中的许多方法都需要使用危险化学品,并且可能对环境有毒,并且不能轻易用于生物医学应用。在目前的工作中,我们报告了一步生物友好的方法,用异烟酰肼(INH)作为还原剂来配制具有所需表面电晕和组成的金(Au),银(Ag)和Au-Ag合金纳米粒子。 INH还通过在纳米颗粒周围形成表面电晕而起到稳定剂的作用。值得注意的是,在单个步骤中,INH还可以提供调节双金属体系中Au和Ag组成的方法,而无需任何其他化学修饰。由此获得的不同纳米颗粒的物理化学和表面性质已经通过分析,光谱和显微镜技术进行了检查。细胞的细胞毒性(释放乳酸脱氢酶),细胞活力和细胞内活性氧(ROS)分析证实了用INH制备的Au,Ag和Au-Ag双金属纳米颗粒具有生物相容性。最后,发现在纳米颗粒上INH的有机表面电晕的存在为纳米颗粒赋予了纳米酶活性和抗分枝杆菌敏感性。

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