Synergistic antibacterial activity of biogenic AgNPs with antibiotics against multidrug resistant bacterial strains

IF 3.7 3区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES Journal of King Saud University - Science Pub Date : 2024-09-21 DOI:10.1016/j.jksus.2024.103461
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Abstract

The prevalence of hospital-acquired infections caused by drug resistant bacterial pathogens is a major health risk, leading to a considerable number of deaths and illnesses globally. Therefore, it is essential to develop new combinations of antimicrobial agents to effectively manage drug-resistant bacteria that are responsible for nosocomial infections. A current study aims to synthesize silver nanoparticles (AgNPs) from the seeds of Trigonella foenum-graecum (fenugreek). The AgNPs exhibited a spherical morphology and had an average particle size of 29.75 nm. In addition, XRD examination verified the presence of a face-centered cubic (fcc) lattice structure in the biosynthesized AgNPs, while FTIR study demonstrated the existence of several functional groups such as phenols, alkanes, and amines. The biogenic AgNPs exhibited the most potent antibacterial effect against E. coli strain, with relative inhibitory zone of 18.43 ± 0.35 mm and a minimum inhibitory concentration (MIC) of 50 µg/ml. In addition, the most potent antibacterial effect of AgNPs combined with colistin was observed against Acinetobacter baumannii strain, while the greatest combined efficacy of AgNPs with norfloxacin was found against Pseudomonas aeruginosa, resulting in a relative increase in the fold of inhibition area (IFA) of 0.53 and 0.35, respectively. In conclusion, the potent antibacterial and synergistic effect of AgNPs with antibiotics highlights their potential application of this combination in controlling nosocomial infections in health care settings.
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生物农药与抗生素对耐多药细菌菌株的协同抗菌活性
由耐药细菌病原体引起的医院感染是一个重大的健康风险,在全球范围内导致大量死亡和疾病。因此,必须开发新的抗菌剂组合,以有效控制造成院内感染的耐药细菌。目前的一项研究旨在从葫芦巴(Trigonella foenum-graecum)的种子中合成银纳米粒子(AgNPs)。AgNPs 呈球形,平均粒径为 29.75 nm。此外,X 射线衍射(XRD)检查验证了生物合成的 AgNPs 中存在面心立方(ccc)晶格结构,而傅立叶变换红外光谱(FTIR)研究则表明存在多个官能团,如酚、烷和胺。生物合成的 AgNPs 对大肠杆菌菌株的抗菌效果最强,相对抑菌区为 18.43 ± 0.35 mm,最低抑菌浓度 (MIC) 为 50 µg/ml。此外,AgNPs 与秋水仙碱联合使用对鲍曼不动杆菌的抗菌效果最强,而 AgNPs 与诺氟沙星联合使用对铜绿假单胞菌的抗菌效果最强,抑制面积(IFA)分别相对增加了 0.53 倍和 0.35 倍。总之,AgNPs 与抗生素的强效抗菌和协同作用突显了这种组合在控制卫生保健环境中的院内感染方面的潜在应用。
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来源期刊
Journal of King Saud University - Science
Journal of King Saud University - Science Multidisciplinary-Multidisciplinary
CiteScore
7.20
自引率
2.60%
发文量
642
审稿时长
49 days
期刊介绍: Journal of King Saud University – Science is an official refereed publication of King Saud University and the publishing services is provided by Elsevier. It publishes peer-reviewed research articles in the fields of physics, astronomy, mathematics, statistics, chemistry, biochemistry, earth sciences, life and environmental sciences on the basis of scientific originality and interdisciplinary interest. It is devoted primarily to research papers but short communications, reviews and book reviews are also included. The editorial board and associated editors, composed of prominent scientists from around the world, are representative of the disciplines covered by the journal.
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