植物提取物鸡尾酒介导的纳米银对多重耐药细菌病原菌氨苄西林作用的体外激活

A. S. Adedeji, Samuel Akpa Akpa, N. U. Adabara, F. Sadiq, A. Usman, I. A. Adelere, F. Kuta
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摘要

背景:抗生素耐药性的出现和对新药耐药性的持续演变一直是一个全球性的挑战。在追求创新解决方案的过程中,人们对使用具有抗菌潜力的纳米材料来对抗这种威胁越来越感兴趣。目的:利用植物提取物鸡尾酒介导的纳米银颗粒(PAgNPs)刺激氨苄西林(AMP)对多药耐药(MDR)细菌病原体的抗菌作用。方法:采用琼脂孔扩散技术研究PAgNPs对多药耐药细菌(包括大肠杆菌、肺炎克雷伯菌、黄体微球菌和艰难梭菌)中AMP的抑菌活性。植物提取物鸡尾酒介导的银纳米颗粒是在明亮的阳光下,用1mm硝酸银9ml与柑桔汁和纽布尔迪亚水提取物各0.5 mL反应10分钟。利用紫外可见光谱(UV-Vis)和高分辨率透射电子显微镜(HRTEM)和能量色散x射线能谱(EDS)对植物提取物鸡尾酒介导的纳米银进行了表征。结果:植物提取物鸡尾酒介导的纳米银胶体溶液呈红褐色,表面等离子共振(SPR)吸收峰为441 nm;HRTEM显微图显示,银纳米颗粒形状各异,平均尺寸为23.49±10.49 nm。同样,能谱仪在3.0 keV处显示出较强的典型金属银纳米晶吸收峰。PAgNPs在耐多药大肠杆菌、黄体分枝杆菌、肺炎克雷伯菌和艰难梭菌中激活AMP活性。结论:目前的研究结果表明,PAgNPs可以被认为是开发新型抗菌药物的合适候选者,以对抗日益严重的抗生素耐药性威胁。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
In Vitro Activation of Ampicillin Effect with Plant Extract Cocktail-Mediated Silver Nanoparticles Against Multidrug-Resistant Bacteria Pathogens
Background: The emergence of antibiotic resistance and the continuing evolution of resistance even to newer drugs have always been a global challenge. In the pursuit of innovative solutions, there is growing interest in using nanomaterials with antibacterial potentials to combat this menace. Objectives: In this study, plant extract cocktail-mediated silver nanoparticles (PAgNPs) was used to stimulate the antibacterial effect of ampicillin (AMP) against multidrug-resistant (MDR) bacterial pathogens. Methods: The agar well diffusion technique was used to investigate the potentials of PAgNPs in activating the antibacterial activity of AMP in MDR bacteria, including Escherichia coli, Klebsiella pnuemoniae, Micrococcus luteus, and Clostridium difficile. Plant extract cocktail-mediated silver nanoparticles were synthesized by reacting 9 mL of 1 mM of silver nitrate with 0.5 mL each of Citrus limon juice and aqueous Newbouldia laevis extract under bright sunlight for 10 minutes. Plant extract cocktail-mediated silver nanoparticles were characterized using UV-visible spectroscopy (UV-Vis) and higher resolution transmission electron microscopy (HRTEM) with energy dispersive x-ray spectroscopy (EDS). Results: Plant extract cocktail-mediated silver nanoparticles colloidal solution was reddish-brown with a 441-nm surface plasmon resonance (SPR) absorption peak. The HRTEM micrograph showed the varied shaped silver nanoparticles (AgNPs) with the average size of 23.49 ± 10.49 nm. Similarly, EDS showed a strong typical metallic silver nanocrystallites absorption peak at 3.0 keV. The PAgNPs activate the AMP activity in MDR E. coli, M. luteus, K. pnuemoniae, and C. difficile. Conclusions: The present findings suggest that PAgNPs can be considered a suitable candidate for developing novel antibacterial drugs to combat the growing threat of antibiotic resistance.
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