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Mechanism study of silver nanoparticle production using Neurospora intermedia

机译:中间神经孢子产生银纳米颗粒的机理研究

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Elucidation of the molecular mechanism of silver nanoparticle (AgNP) synthesis is necessary to control nanoparticle size, shape, and monodispersity. In this study, the mechanism of AgNP formation by Neurospora intermedia was investigated. The higher production rate of AgNP formation using a culture supernatant heat-treated at 100° and 121°C relative to that with an un-treated culture supernatant indicated that the native form of the molecular species is not essential. The effect of the protein molecular weight (MW) on the nanoparticle size distribution and average size was studied by means of ultraviolet–visible spectroscopy and dynamic light scattering. Using un-treated and concentrated cell-free filtrate passed through 10 and 20 kDa cut-off filters led to the production of AgNPs with average sizes of 25, 30, and 34 nm, respectively. Also, using the permeate fraction of cell-free filtrate passed through a 100 kDa cut-off filter led to the formation of the smallest nanoparticles with the narrowest size distribution (average size of 16 nm and polydispersity index of 0.18). Sodium dodecyl sulphate polyacrylamide gel electrophoresis analysis of the fungal extracellular proteins showed two notable bands with the MWs of 15 and 23 kDa that are involved in the reduction and stabilisation of the nanoparticles, respectively.
机译:阐明银纳米颗粒(AgNP)合成的分子机制对于控制纳米颗粒的大小,形状和单分散性是必要的。在这项研究中,研究了中间神经孢菌形成AgNP的机理。与未经处理的培养上清液相比,在100°C和121°C热处理的培养上清液具有更高的AgNP生成速率,这表明分子形式的天然形式不是必需的。通过紫外可见光谱和动态光散射研究了蛋白质分子量(MW)对纳米粒径分布和平均粒径的影响。使用未经处理且浓缩的无细胞滤液,通过10kkDa和20kkDa截止滤光片可分别生产平均粒径为25、30和34nm的AgNP。同样,使用无细胞滤液的渗透物级分通过100 kDa截止过滤器,可以形成粒径分布最窄的最小纳米颗粒(平均粒径为16dispernm,多分散指数为0.18)。真菌胞外蛋白的十二烷基硫酸钠聚丙烯酰胺凝胶电泳分析显示,分子量分别为15和23 kDa的两个显着谱带分别与纳米颗粒的还原和稳定有关。

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