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Synergic bactericidal effects of reduced graphene oxide and silver nanoparticles against Gram-positive and Gram-negative bacteria

机译:还原的氧化石墨烯和银纳米颗粒对革兰氏阳性和革兰氏阴性细菌的协同杀菌作用

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摘要

(rGO) is a promising antibacterial material, the efficacy of which can be further enhanced by the addition of silver (nAg). In this study, the mechanisms of antibacterial activity of rGO–nAg nanocomposite against several important human pathogenic multi-drug resistant bacteria, namely Gram-positive coccal Staphylococcus aureus and Gram-negative rod-shaped Escherichia coli and Proteus mirabilis are investigated. At the same concentration (100 µg/ml), rGO–nAg nanocomposite was significantly more effective against all three pathogens than either rGO or nAg. The nanocomposite was equally active against P. mirabilis and S. aureus as systemic antibiotic nitrofurantoin, and significantly more effective against E. coli. Importantly, the inhibition was much faster in the case of rGO–nAg nanocomposite compared to nitrofurantoin, attributed to the synergistic effects of rGO–nAg mediated contact killing and oxidative stress. This study may provide new insights for the better understanding of antibacterial actions of rGO–nAg nanocomposite and for the better designing of graphene-based antibiotics or other biomedical applications.
机译:(rGO)是一种很有前途的抗菌材料,可以通过添加银(nAg)来进一步提高其功效。在这项研究中,研究了rGO-nAg纳米复合物对几种重要的人类致病多药耐药细菌(即革兰氏阳性球菌金黄色葡萄球菌和革兰氏阴性棒状大肠杆菌和奇异变形杆菌)的抗菌活性机制。在相同的浓度(100μg/ ml)下,rGO-nAg纳米复合材料对所有三种病原体的效力均显着高于rGO或nAg。纳米复合材料与全身性抗生素硝基呋喃妥因同等对P. mirabilis和S. aureus具有活性,并且对E. coli的作用明显更强。重要的是,与硝基呋喃妥因相比,rGO–nAg纳米复合材料的抑制作用要快得多,这归因于rGO–nAg介导的接触杀伤和氧化应激的协同作用。这项研究可能为更好地了解rGO-nAg纳米复合材料的抗菌作用以及更好地设计基于石墨烯的抗生素或其他生物医学应用提供新的见识。

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