Biosynthesis, Characterization and Antibacterial Properties of CuO Nanoparticles of Psychrotrophic Bacteria

Bashir Ahmad Aseem, Mohammad Arif Ahsas, Abdul Sattar Danishyar
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Abstract

Copper oxide nanoparticles have many applications in industry and medicine. Nevertheless, few studies have been conducted in relation to the biological production of these nanoparticles. In the present study, the ability of isolated Psychrotrophic (cold-resistant) prokaryotes from the Zagros highlands located in Lorestan province of Iran and some isolated Streptomyces strains from the Oman Sea has been evaluated in the synthesis of copper oxide nanoparticles. The maximum lethal concentration of copper salts was determined for the strains and the strains with the highest level of resistance were selected. The biosynthesis of copper oxide nanoparticles was done extracellularly by inoculating Psychrotrophic and Streptomyces strains in liquid TSB culture medium containing 0.01 M copper sulfate salt and keeping the culture medium in a shaker incubator at 20 °C at 150 rpm. The production of copper oxide nanoparticles was evaluated by changing the color of the reaction solution from light blue to dark green. From the 44 cold-resistant strains and the investigated Streptomyces strains, all strains were able to tolerate concentrations higher than 5 mM. Of these, the strain OSNP13 belonging to the genus Microbacterium liquefaciens (X77444) has been able to synthesize the highest amount of copper oxide nanoparticles. The optical absorption of the solution containing synthesized nanoparticles was determined in the range of 250-350 nm by UV-vis spectrophotometer, which had a specific peak at 288 nm. And the copper oxide nanoparticles have an average size of 63.21 nm based on DLS analysis. The crystallographic characteristics of copper oxide nanoparticles were also determined by using XRD analysis, which showed that the prepared nanoparticles had a hexagonal crystal structure with a size of 31.29 nanometers. Then, the antibacterial activity of produced nanoparticles was evaluated. The MIC values ​​of copper oxide nanoparticles for E. coli and S. aureus bacteria were calculated as 125 and 250 micrograms per milliliter, respectively. The produced copper oxide nanoparticles have shown a good antimicrobial properties and can be suitable candidates for use as antimicrobial agents.
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冷养细菌纳米氧化铜的合成、表征及抗菌性能研究
氧化铜纳米粒子在工业和医学上有许多应用。然而,很少有研究涉及这些纳米颗粒的生物生产。在本研究中,评估了来自伊朗洛雷斯坦省扎格罗斯高地的分离的嗜冷(抗寒)原核生物和来自阿曼海的一些分离的链霉菌菌株在合成氧化铜纳米颗粒方面的能力。测定菌株铜盐的最大致死浓度,并选择具有最高抗性水平的菌株。氧化铜纳米颗粒的生物合成是通过将嗜冷菌和链霉菌菌株接种在含有0.01M硫酸铜盐的液体TSB培养基中,并将培养基保持在20°C、150rpm的摇瓶培养箱中进行的。通过将反应溶液的颜色从浅蓝色变为深绿色来评估氧化铜纳米颗粒的生产。从44株抗寒菌株和所研究的链霉菌菌株中,所有菌株都能够耐受高于5mM的浓度。其中,属于液化微杆菌属的菌株OSNP13(X77444)能够合成最高量的氧化铜纳米颗粒。用紫外-可见分光光度计测定了含有合成纳米颗粒的溶液在250-350nm范围内的光学吸收,其在288nm处具有特定的峰值。基于DLS分析,氧化铜纳米颗粒的平均尺寸为63.21nm。通过XRD分析还测定了氧化铜纳米颗粒的结晶特性,结果表明所制备的纳米颗粒具有尺寸为31.29纳米的六边形晶体结构。然后,对所制备的纳米颗粒的抗菌活性进行了评价。MIC值​​氧化铜纳米颗粒对大肠杆菌和金黄色葡萄球菌的浓度分别计算为125和250微克/毫升。所制备的氧化铜纳米颗粒显示出良好的抗菌性能,可以作为抗菌剂的合适候选者。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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