首页> 外文期刊>Arabian Journal for Science and Engineering. Section A, Sciences >Antibacterial, Antifungal andMosquitocidal Efficacy of Copper Nanoparticles Synthesized from Entomopathogenic Nematode: Insect-Host Relationship of Bacteria in Secondary Metabolites of Morganella morganii sp. (PMA1)
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Antibacterial, Antifungal andMosquitocidal Efficacy of Copper Nanoparticles Synthesized from Entomopathogenic Nematode: Insect-Host Relationship of Bacteria in Secondary Metabolites of Morganella morganii sp. (PMA1)

机译:铜纳米粒子合成的抗菌,抗真菌和莫核肽功效来自昆虫疗法的肺炎血管疗法:Morganella Morganii SP中次代谢物细菌的昆虫宿主关系。 (PMA1)

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The present study deals with the use of cell-free supernatant of bacteria Morganella morganii for synthesizing copper nanoparticles and analysing its larvicidal activity on mosquito larvae. A colour change from blue to pickle green specifies the synthesis production of CuNPs. The nanoparticles were characterized using ultraviolet-visible spectrophotometry, scanning electron microscopy (SEM), X-ray diffraction (XRD) and Fourier transform infrared spectroscopy (FTIR). XRD pattern shows the major peaks, viz. (111), (200) and (220). SEM analysis shows that nanoparticles are in a spherical shape with a small percentage of elongated particles and size of about 13.5±0.6 nm. A UV-Vis absorption peak was observed at 540 nm. FTIR analysis of nanoparticles exhibits functional groups such as aromatics, alkanes, ethers and alkyl halides. In EDaX (energy-dispersive X-ray) analysis, the peak signal confirms the presence of copper atoms that bound to the synthesized nanoparticles. The synthesized copper nanoparticles were tested for larvicidal efficacy at different time intervals. The above result shows that the copper nanoparticles produce increased toxicity in a time- and dose-dependent manner. An antibacterial and antifungal activity was tested against clinical pathogens, and the highest zone of inhibition was found to be in E. coli, B. subtilis, A. niger,M. anisopliae and Verticillium sp. This study shows that CuNPs possess a good antimicrobial and insecticidal activity which can be explored for commercial purpose.
机译:本研究涉及使用细胞无菌莫加尔霉菌的无细胞上清液,用于合成铜纳米粒子并分析其蚊子幼虫的幼虫活性。从蓝色到泡泡绿色的颜色变化指定了CUNP的合成生产。使用紫外 - 可见分光光度法,扫描电子显微镜(SEM),X射线衍射(XRD)和傅里叶变换红外光谱(FTIR)表征纳米颗粒。 XRD图案显示了主要峰,viz。 (111),(200)和(220)。 SEM分析表明,纳米颗粒处于球形形状,细长颗粒百分比小,尺寸为约13.5±0.6nm。在540nm中观察到UV-Vis吸收峰。纳米颗粒的FTIR分析表现出官能团,如芳烃,烷烃,醚和烷基卤化物。在eDAX(能量分散X射线)分析中,峰值信号证实存在与合成的纳米颗粒结合的铜原子。以不同的时间间隔测试合成的铜纳米颗粒以进行幼虫疗效。上述结果表明,铜纳米粒子以时间和剂量依赖性的方式产生增加的毒性。对临床病原体测试抗菌和抗真菌活性,发现最高的抑制区是大肠杆菌,B.枯草芽孢杆菌,A.尼日尔,M。 Anisopliae和Verticillium sp。本研究表明,CUNPS具有良好的抗微生物和杀虫活动,可以探索商业目的。

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