Department of Botany and Microbiology, Faculty of Science, Al-Azhar University, 11884, Cairo, Egypt.
Department of Botany and Microbiology, Faculty of Science, Al-Azhar University, 11884, Cairo, Egypt.
Microb Pathog. 2022 Dec;173(Pt A):105842. doi: 10.1016/j.micpath.2022.105842. Epub 2022 Oct 21.
This study aims to synthesize silver nanoparticles by the green method and test it against specific virulence factors in multi-drug resistant Enterococcus faecalis bacteria. virulence factors of E. faecalis clinical isolates were determined and the most potent isolate was selected for further investigations. The prepared Ag-NPs were characterized using UV spectroscopy, FTIR spectroscopy, dynamic light scattering, and transmission electron microscopy (TEM). The result revealed the concentration of 0.0625 mg/ml Ag-NPs was significantly reducing virulence factors in multidrug-resistant E. faecalis without affecting planktonic cell growth. UV-Visible spectroscopy characterization revealed a characteristic surface Plasmon band [SPR] at a wavelength ranging from 256 to 345 and 510 nm in the prepared Ag-NPs. dynamic light scattering indicated it tended to an electrostatic attraction between nanoparticles in the prepared solution. TEM images revealed the average size of Ag-NPs were prepared to be 28.8 nm and the shape was spherical. Green synthesized Ag-NPs have the ability to combat multi-drug-resistant E. faecalis via reducing virulence factors, which is considered a good approach toward resolving the multidrug resistance crisis.
本研究旨在通过绿色方法合成银纳米粒子,并对多药耐药粪肠球菌细菌中的特定毒力因子进行测试。测定了粪肠球菌临床分离株的毒力因子,并选择最有效的分离株进行进一步研究。采用紫外分光光度法、傅里叶变换红外光谱法、动态光散射和透射电子显微镜(TEM)对制备的 Ag-NPs 进行了表征。结果表明,浓度为 0.0625mg/ml 的 Ag-NPs 可显著降低多药耐药粪肠球菌的毒力因子,而不影响浮游细胞生长。紫外可见光谱表征显示,在制备的 Ag-NPs 中,在 256 至 345nm 和 510nm 范围内存在特征表面等离子体带[SPR]。动态光散射表明,在制备的溶液中,纳米粒子之间存在静电吸引力。TEM 图像显示,Ag-NPs 的平均尺寸为 28.8nm,形状为球形。绿色合成的 Ag-NPs 具有通过降低毒力因子来对抗多药耐药粪肠球菌的能力,这被认为是解决多药耐药危机的一种很好的方法。