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简便一锅法微生物介导合成还原氧化石墨烯-银纳米复合物及其抗菌活性。

Facile one pot microbe-mediatedsynthesis and antibacterial activity of reduced graphene oxide-silver nanocomposite.

机构信息

Department of Microbiology, R. C. Patel Arts, Science and Commerce College, Shirpur, 425405, Maharashtra, India.

出版信息

Nanotechnology. 2022 Jan 7;33(13). doi: 10.1088/1361-6528/ac4521.

Abstract

The present research deals with the development of a novel bioinspiredfabrication of reduced graphene oxide (rGO)-silver nanoparticle (AgNPs) nanocomposite (rGO@AgNCs) using microbes namely(PA) and(SA). The fabricated rGO@AgNCs were characterized using Ultraviolet-visible (UV-Vis) spectroscopy, Fourier-transform infrared spectroscopy (FTIR), particle size analysis, polydispersity index (PDI), zeta potential analysis, energy dispersive x-ray analysis (EDAX), Raman spectroscopy, powder x-ray diffraction (PXRD), high-resolution transmission electron microscopy (HR-TEM) analysis, etc. Furthermore, the rGO@AgNCs-PA and rGO@AgNCs-SA interaction with serum protein, pH stability study, anddissolution of AgNPs were also performed. The research findings of the proposed study demonstrated the simultaneous reduction of graphene oxide (GO) and AgNPs and the formation of rGO@AgNCs in the presence of microbes. Thedissolution studies of rGO@AgNCs composites showed better AgNPs dissolution with controlled release and offered remarkable matrix integrity throughout the dissolution period. The size and stability of rGO@AgNCs-PA and rGO@AgNCs-SA had no significant changes at physiological pH 7.4. A minimal decrease in the zeta potential of rGO@AgNCs was observed, which may be due to the weak interaction of nanocomposites and albumin. The antibacterial application of the synthesized nanocomposite was evaluated against a pathogenic mastitis-forming bacterium. The obtained results suggested an admirable antibacterial activity of synthesized nanocomposites against the tested microbes. This knowledge will assist the scientific fraternity in designing novel antibacterial agents with enhanced antibacterial activity against various veterinary pathogens in near future.

摘要

本研究利用微生物(PA 和 SA)开发了一种新颖的基于生物灵感的还原氧化石墨烯 (rGO)-银纳米粒子 (AgNPs) 纳米复合材料 (rGO@AgNCs)。采用紫外-可见 (UV-Vis) 光谱、傅里叶变换红外光谱 (FTIR)、粒径分析、多分散指数 (PDI)、Zeta 电位分析、能量色散 X 射线分析 (EDAX)、拉曼光谱、粉末 X 射线衍射 (PXRD)、高分辨率透射电子显微镜 (HR-TEM) 分析等方法对制备的 rGO@AgNCs 进行了表征。此外,还对 rGO@AgNCs-PA 和 rGO@AgNCs-SA 与血清蛋白的相互作用、pH 值稳定性研究以及 AgNPs 的溶解进行了研究。该研究结果表明,在微生物的存在下,同时还原氧化石墨烯 (GO) 和 AgNPs,并形成 rGO@AgNCs。rGO@AgNCs 复合材料的溶解研究表明,AgNPs 的溶解具有更好的控制释放和在整个溶解过程中提供显著的基质完整性。rGO@AgNCs-PA 和 rGO@AgNCs-SA 的尺寸和稳定性在生理 pH 值 7.4 下没有显著变化。rGO@AgNCs 的 Zeta 电位略有下降,这可能是由于纳米复合材料与白蛋白的弱相互作用所致。还评估了合成纳米复合材料对致病性乳腺炎形成菌的抗菌应用。所得结果表明,合成纳米复合材料对测试微生物具有令人钦佩的抗菌活性。这一知识将有助于科学界在不久的将来设计出具有增强的对各种兽医病原体的抗菌活性的新型抗菌剂。

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