尼日利亚阿库尔市微生物合成的银纳米颗粒对选定临床病原体的抗菌活性

E. Ekundayo, A. Adegbenro, F. Ekundayo, H. Onipede, O. Bello, I. A. Anuoluwa
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引用次数: 0

摘要

银纳米粒子(AgNPs)由于其广泛的应用,包括其潜在的抗菌活性,引起了科学家的兴趣。本研究考察了根际土壤和鱼塘沉积物微生物合成的AgNPs对选定临床病原体的抗菌活性。按照标准程序对样品进行培养并鉴定生物体。通过紫外-可见光谱分析监测AgNPs胶体溶液的合成。通过傅立叶变换红外光谱(FTIR)测定谱带的存在。使用琼脂扩散法测定合成的AgNPs对选定的临床分离株的抗菌活性。从样品中分离出10种细菌和真菌。AgNPs的形成通过从黄色到棕色的颜色转变来指示。所有合成的AgNPs在紫外-可见光谱中都显示出强烈的峰值,波长范围为410-440nm。FTIR在3395cm-1处显示谱带,在3300-3500cm-1处显示强峰。一些分离株合成的AgNPs对易感测试生物具有显著且不同程度的抗菌活性。本研究表明,从本研究中获得的微生物合成的AgNPs对所研究的大多数潜在病原体具有很高的抗菌效力,因此可用于开发新型抗菌剂。关键词:抗菌剂,微生物耐药性,微生物,病原体,银纳米粒子,抑制区。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Antimicrobial activities of microbially-synthesized silver nanoparticles against selected clinical pathogens in Akure, Nigeria
Silver nanoparticles (AgNPs) have stimulated interest of scientists due to their wide range of applications, including their potential antimicrobial activity. This study investigated the antimicrobial activities of AgNPs synthesized by rhizospheric soil and fish pond sediment microorganisms against selected clinical pathogens. The samples were cultured and organisms identified in accordance with standard procedures. The synthesis of AgNPs colloidal solution was monitored by UV-vis analysis. Presence of bands was determined by the Fourier Transform Infrared spectroscopy (FTIR). The antimicrobial activity of the synthesized AgNPs against selected clinical isolates was determined using agar well diffusion method. Ten species each of bacteria and fungi were isolated from the samples. Formation of AgNPs was indicated by colour transformation from yellow to brown. All synthesized AgNPs showed intense peak with wavelengths ranging of 410-440 nm in UV-vis. The FTIR revealed band at 3395 cm-1 and a strong peak at 3300-3500 cm-1. The AgNPs synthesized by some of the isolates exerted remarkable and varying degrees of antimicrobial activities against the susceptible test organisms. This study revealed that the microbially-synthesized AgNPs obtained from this study possess a high antimicrobial potency against most potential pathogens investigated, and, thus, can be exploited in the development of novel antimicrobial agents.   Key words: Antimicrobial agents, microbial resistance, microorganisms, pathogens, silver nanoparticles, zones of inhibition.
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