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树胶阿拉伯聚合物稳定和伽马射线辅助合成双金属银-金纳米粒子:对分离自糖尿病足患者的病原微生物具有强大的抗菌和抗生物膜活性。

Gum Arabic polymer-stabilized and Gamma rays-assisted synthesis of bimetallic silver-gold nanoparticles: Powerful antimicrobial and antibiofilm activities against pathogenic microbes isolated from diabetic foot patients.

机构信息

Drug Radiation Research Department, National Center for Radiation Research and Technology (NCRRT), Egyptian Atomic Energy Authority (EAEA), Cairo, Egypt.

Department of Electrical and Electronic Information Engineering, Toyohashi University of Technology, Toyohashi, Aichi 441-8580, Japan; Center for Nanotechnology (CNT), School of Engineering and Applied Sciences, Nile University, Sheikh Zayed, Giza 16453, Egypt.

出版信息

Int J Biol Macromol. 2020 Dec 15;165(Pt A):169-186. doi: 10.1016/j.ijbiomac.2020.09.160. Epub 2020 Sep 25.

Abstract

In this research, irradiation by gamma rays was employed as an eco-friendly route for the construction of bimetallic silver-gold nanoparticles (Ag-Au NPs), while Gum Arabic polymer was used as a capping agent. Ag-Au NPs were characterized through UV-Vis., XRD, EDX, HR-TEM, FTIR, SEM/mapping and EDX analysis. Antibiofilm and antimicrobial activities were examined against some bacteria and Candida sp. isolates from diabetic foot patients. Our results revealed that the synthesis of Ag-Au NPs depended on the concentrations of tetra-chloroauric acid and silver nitrate. HR-TEM analysis confirmed the spherical nature and an average diameter of 18.58 nm. FTIR results assured many functional groups in Gum Arabic which assisted in increasing the susceptibility of incorporation with Ag-Au NPs. Our results showed that, Ag-Au NPs exhibited the highest antimicrobial performance against B. subtilis (14.30 mm ZOI) followed by E. coli (12.50 mm ZOI) and C. tropicalis (11.90 mm ZOI). In addition, Ag-Au NPs were able to inhibit the biofilm formation by 99.64%, 94.15%, and 90.79% against B. subtilis, E. coli, and C. tropicalis, respectively. Consequently, based on the promising properties, they showed superior antimicrobial potential at low concentration and continued-phase durability, they can be extensively-used in many pharmaceutical and biomedical applications.

摘要

在这项研究中,伽马射线辐照被用作构建双金属银金纳米粒子(Ag-Au NPs)的环保途径,而阿拉伯树胶聚合物被用作包覆剂。Ag-Au NPs 通过 UV-Vis.、XRD、EDX、HR-TEM、FTIR、SEM/映射和 EDX 分析进行了表征。抗菌生物膜和抗菌活性针对一些来自糖尿病足患者的细菌和念珠菌分离株进行了检测。我们的结果表明,Ag-Au NPs 的合成取决于四氯金酸和硝酸银的浓度。HR-TEM 分析证实了球形性质和平均直径为 18.58nm。FTIR 结果保证了阿拉伯树胶中的许多功能基团,这些基团有助于增加与 Ag-Au NPs 结合的敏感性。我们的结果表明,Ag-Au NPs 对枯草芽孢杆菌(14.30mm ZOI)表现出最高的抗菌性能,其次是大肠杆菌(12.50mm ZOI)和热带念珠菌(11.90mm ZOI)。此外,Ag-Au NPs 能够抑制生物膜形成,对枯草芽孢杆菌、大肠杆菌和热带念珠菌的抑制率分别为 99.64%、94.15%和 90.79%。因此,基于其优异的性能,它们在低浓度和持续阶段的耐久性方面表现出优异的抗菌潜力,可广泛应用于许多制药和生物医学应用中。

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