Effect of copper nanoparticles green-synthesized using Ocimum basilicum against Pseudomonas aeruginosa in mice lung infection model

IF 2.1 4区 化学 Q3 CHEMISTRY, MULTIDISCIPLINARY Open Chemistry Pub Date : 2024-07-15 DOI:10.1515/chem-2024-0062
Wei Wang, Liping Liu, Zhiying Han
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Abstract

The frequency of lung infection induced by multi-drug resistant strains of Pseudomonas aeruginosa has significantly risen, primarily due to the inadequate effectiveness of powerful chemotherapeutic methods. This study demonstrates that the Ocimum basilicum aqueous extract and copper nanoparticles (CuNPs) exhibited significant antioxidant and anti-infectious properties under in vivo conditions. To analyze the characteristics of the CuNPs synthesized from the reaction between copper nitrate solution and the aqueous O. basilicum extract, various techniques such as energy dispersive X-ray analysis, field emission scanning electron microscopy, Fourier transform infrared spectroscopy, X-ray diffraction analysis, and transmission electron microscopy were employed. The in vivo study encompasses the assessment of P. aeruginosa lethal dose in mice and the disease manifestation analysis, which comprises reduction in body weight, hypothermia, bacteremia, and other parameters, over a 48 h infection period. The infected mice exhibited a notable decrease in body temperature, measuring at 25°C after 48 h, compared to the initial temperature of 39°C. Additionally, a 30% reduction in weight was seen at the conclusion of the study. To assess the effectiveness of CuNPs on lung infection caused by the calculated lethal dose and bacteremia, histopathology analysis was employed. The bacterial load in the CuNPs group was determined to be 0.5 Log10CFU/mL on Day 8, indicating a notable decrease from the initial measurement of 1.5 Log10CFU/mL on Day 1. The histopathological findings revealed a widespread and sporadic buildup of alveolar space inflammatory cells, with infiltrates observed throughout all lung sections in infected mice. Enhanced lung histology was observed in the group of animal treated with reduced exudates noted at 200 µg/kg. CuNPs demonstrated inhibitory effects on the growth of P. aeruginosa at 8 µg/mL, while at 16 µg/mL, they effectively eradicated P. aeruginosa. The research unequivocally demonstrates the efficacy of CuNPs extract in combating lung infections induced by P. aeruginosa at 200 µg/kg. The recent survey aims to further explore the biomedical characteristics of these CuNPs in order to develop a powerful treatment against this dangerous pathogen.
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利用金缕梅绿色合成的纳米铜颗粒对小鼠肺部感染模型中铜绿假单胞菌的影响
铜绿假单胞菌的多重耐药菌株诱发肺部感染的频率显著上升,主要原因是强效化疗方法效果不佳。本研究表明,金盏花水提取物和纳米铜粒子(CuNPs)在体内条件下具有显著的抗氧化和抗感染特性。为了分析由硝酸铜溶液和罗勒草提取物水溶液反应合成的 CuNPs 的特性,研究人员采用了能量色散 X 射线分析、场发射扫描电子显微镜、傅立叶变换红外光谱、X 射线衍射分析和透射电子显微镜等多种技术。体内研究包括对小鼠铜绿假单胞菌致死剂量的评估和疾病表现分析,其中包括在 48 小时感染期内体重减轻、体温过低、菌血症和其他参数。受感染的小鼠体温明显下降,48 小时后的体温为 25°C,而最初的体温为 39°C。此外,研究结束时,小鼠体重下降了 30%。为了评估 CuNPs 对计算出的致死剂量和菌血症引起的肺部感染的效果,采用了组织病理学分析。第 8 天,CuNPs 组的细菌量被测定为 0.5 Log10CFU/mL,这表明与第 1 天最初测定的 1.5 Log10CFU/mL 相比,细菌量明显减少。组织病理学检查结果显示,肺泡间隙炎症细胞广泛零星聚集,在感染小鼠的所有肺部切片中均可观察到浸润。在 200 微克/千克浓度下,渗出物减少的动物组中观察到肺组织学特征增强。8 微克/毫升的 CuNPs 可抑制铜绿假单胞菌的生长,而 16 微克/毫升的 CuNPs 则可有效根除铜绿假单胞菌。这项研究明确表明,在 200 微克/千克的浓度下,CuNPs 提取物对铜绿假单胞菌诱发的肺部感染有抑制作用。最近的调查旨在进一步探索这些 CuNPs 的生物医学特性,以便开发出针对这种危险病原体的强效疗法。
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来源期刊
Open Chemistry
Open Chemistry CHEMISTRY, MULTIDISCIPLINARY-
CiteScore
3.80
自引率
4.30%
发文量
90
审稿时长
6 weeks
期刊介绍: Open Chemistry is a peer-reviewed, open access journal that publishes original research, reviews and short communications in the fields of chemistry in an ongoing way. The central goal is to provide a hub for researchers working across all subjects to present their discoveries, and to be a forum for the discussion of the important issues in the field. The journal is the premier source for cutting edge research in fundamental chemistry and it provides high quality peer review services for its authors across the world. Moreover, it allows for libraries everywhere to avoid subscribing to multiple local publications, and to receive instead all the necessary chemistry research from a single source available to the entire scientific community.
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