研究编码 fli 和 fim 基因的多重耐药尿路致病菌中 zno 纳米粒子与鞭毛和指状体的相互作用。

IF 2.1 4区 生物学 Q3 MICROBIOLOGY
Brazilian Journal of Microbiology Pub Date : 2024-09-01 Epub Date: 2024-09-02 DOI:10.1007/s42770-024-01445-4
Maryam Bagheri Mohammadgholi Pour, Monir Doudi, Ali Mohammad Ahadi, Gholam Reza Amiri
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引用次数: 0

摘要

由于儿童尿路感染(UTI)耐药性的发生率越来越高,因此有必要研究其他有效的治疗方案,如纳米粒子。鞭毛和纤毛虫是导致尿路感染细菌毒性的主要因素。本研究旨在评估使用化学和绿色方法合成的氧化锌纳米粒子对编码 fli 和 fim 基因的多重耐药(MDR)尿路致病菌的抗菌效果,并研究其与细菌附属蛋白的结合能力。研究人员从确诊为尿路感染的两岁以下儿童中收集了 30 份尿培养样本。对分离物进行了抗生素敏感性评估,并对显示出 MDR 的分离物进行了 fimG(fimbrial)、fliD 和 fliT(flellal)基因的分子扩增。通过硝酸银染色确认了细胞附属物。使用微量稀释法和大量稀释法评估了合成纳米粒子的抗菌效果。通过迁移率转移和膜过滤试验证实了纳米粒子与细菌附属物蛋白的成功结合。经测量,化学合成的氧化锌纳米粒子和绿色纳米粒子的尺寸分别为 30 nm 和 85 nm,呈六边形几何结构。通过化学和绿色方法合成的纳米粒子的最低抑菌浓度(MIC)分别为 0.0062-0.025 g/L 和 0.3 g/L。氧化锌纳米粒子能与细菌附属蛋白结合,并能对抗MDR尿路致病菌,有望成为未来治疗儿童UTI的新方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Investigating the interaction of zno nanoparticles with flagellum and fimbriae in multi-drug resistant uropathogenic bacteria encoding fli and fim genes.

Investigating the interaction of zno nanoparticles with flagellum and fimbriae in multi-drug resistant uropathogenic bacteria encoding fli and fim genes.

Due to the increasing occurrence of drug resistant urinary tract infections (UTI) among children, there is a need to investigate alternative effective treatment protocols such as nanoparticles. Flagella and fimbriae are primary factors contributing the virulence of urinary tract infecting bacteria. The aim of this study was to assess the antibacterial effects of zinc oxide nanoparticles which have been synthesized using both chemical and green methods on multi-drug resistant (MDR) uropathogenic bacteria encoding fli and fim genes and investigating their binding ability to bacterial appendage proteins. A total of 30 urine culture samples were collected from children under 2 years old diagnosed with urinary tract infection. The isolates underwent antibiotic suseptibility assessment and the isolates demonstrating MDR were subjected to molecular amplification of fimG (fimbrial) and fliD and fliT (flagellal) genes. The confirmation of cellular appendages was achieved through silver nitrate staining. The antibacterial efficacy of the synthetized nanoparticles was assessed using the micro and macrodilution methods. The successful binding of nanoparticles to bacterial appendage proteins was confirmed through mobility shift and membrane filter assays. The dimensions of chemically synthesized ZnO nanoparticles and green nanoparticles were measured at 30 nm and 85 nm, respectively, with the exhibition of hexagonal geometries. The nanoparticles synthesized through chemical and green methods exhibited minimum inhibitory concentrations (MIC) of 0.0062-0.025 g/L and 0.3 g/L, respectively. The ability of ZnO nanoparticles to bind bacterial appendage proteins and to combat MDR uropathogenic bacteria are promising for new treatment protocols against UTI in children in future.

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来源期刊
Brazilian Journal of Microbiology
Brazilian Journal of Microbiology 生物-微生物学
CiteScore
4.10
自引率
4.50%
发文量
216
审稿时长
1.0 months
期刊介绍: The Brazilian Journal of Microbiology is an international peer reviewed journal that covers a wide-range of research on fundamental and applied aspects of microbiology. The journal considers for publication original research articles, short communications, reviews, and letters to the editor, that may be submitted to the following sections: Biotechnology and Industrial Microbiology, Food Microbiology, Bacterial and Fungal Pathogenesis, Clinical Microbiology, Environmental Microbiology, Veterinary Microbiology, Fungal and Bacterial Physiology, Bacterial, Fungal and Virus Molecular Biology, Education in Microbiology. For more details on each section, please check out the instructions for authors. The journal is the official publication of the Brazilian Society of Microbiology and currently publishes 4 issues per year.
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