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Biogenic production of silver nanoparticles by Enterobacter cloacae Ism26

机译:阴沟肠杆菌Ism26生物生产银纳米颗粒

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摘要

A bacterial isolate capable of tolerating 30 mM silver nitrate (AgNO3) was recovered from soil contaminated with industrial waste. The isolate was identified by 16S rRNA as Enterobacter cloacae Ism26 () and its capability to synthesize silver nanoparticles (AgNPs) was investigated. AgNPs were produced by mixing 1 mM AgNO3 solution with bacterial cell lysate under light conditions. The UV-Vis spectrum of the aqueous medium containing AgNPs exhibited a peak at 440 nm corresponding to the surface plasmon resonance of the AgNPs. The crystalline nature of the particles was confirmed by X-ray difractometer. High-resolution transmission electron microscopy revealed that the AgNPs were spherical and well dispersed and ranged in size from 7 to 25 nm. The average size range of the produced AgNPs was confirmed by dynamic light scattering. Fourier transform infrared spectroscopy revealed possible involvement of reductive groups on the surface of the nanoparticles. The biosynthesized AgNPs were stable for 6 months and inhibited both gram-positive and gram-negative bacteria. This work describes the exploitation of a low-cost biomaterial and an easy method for the synthesis of AgNPs with desirable and advantageous characteristics.
机译:从工业废物污染的土壤中回收了一种能够耐受30 mM硝酸银(AgNO3)的细菌分离株。该分离物通过16S rRNA鉴定为阴沟肠杆菌Ism26(),并研究了其合成银纳米颗粒(AgNPs)的能力。通过在光照条件下将1 mM AgNO3溶液与细菌细胞裂解液混合来生产AgNP。含有AgNPs的水性介质的UV-Vis光谱在440nm处显示出峰,其对应于AgNPs的表面等离子体激元共振。颗粒的结晶性质通过X射线衍射仪确认。高分辨率透射电子显微镜显示,AgNPs呈球形且分散良好,尺寸范围为7至25 nm。通过动态光散射确认了产生的AgNP的平均尺寸范围。傅立叶变换红外光谱法揭示了纳米颗粒表面上的还原基团的可能参与。生物合成的AgNP稳定6个月,同时抑制革兰氏阳性和革兰氏阴性细菌。这项工作描述了低成本生物材料的开发和用于合成具有所需和有利特性的AgNPs的简便方法。

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