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Biosynthesis of Crystalline Silver and Gold Nanoparticles by Extremophilic Yeasts

机译:嗜热酵母生物合成结晶银和金纳米粒子

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摘要

The biosynthesis of Ag and Au nanoparticles (NPs) was investigated using an extremophilic yeast strain isolated from acid mine drainage in Portugal. Three distinct studies were performed, namely, the growth of yeast strain in presence of metal ions, the use of yeast biomass for the metal nanoparticles synthesis, and of the supernatant obtained after 24-hour incubation of yeast biomass in water. The extremophilic strain under study was able to grow up to an Ag ion concentration of 1.5 mM whereas an increase of Au ion concentration over 0.09 mM caused a strong inhibitory effect. A successful route for the metal NPs synthesis was obtained using the yeast biomass. When the washed yeast cells were in contact with Ag or Au solutions, AgNPs smaller than 20 nm were produced, as for the AuNPs diameter ranged from 30 to 100 nm, as determined through transmission electron microscopy and confirmed by energy-dispersive X-ray spectra. The supernatant-based strategy provided evidence that proteins were released to the medium by the yeasts, which could be responsible for the formation and stabilisation of the Ag NPs, although the involvement of the cell wall seems fundamental for AuNPs synthesis.
机译:Ag和Au纳米颗粒(NPs)的生物合成使用从葡萄牙酸性矿山排水中分离出的极端嗜热酵母菌株进行了研究。进行了三个不同的研究,即在金属离子存在下酵母菌株的生长,酵母生物量在金属纳米粒子合成中的应用以及在水中酵母生物量24小时孵育后获得的上清液。所研究的极端嗜热菌菌株能够生长到1.5µmM的Ag离子浓度,而Au离子浓度超过0.09µmM的增加会产生强烈的抑制作用。使用酵母生物质获得了金属NPs合成的成功途径。当清洗后的酵母细胞与Ag或Au溶液接触时,通过透射电子显微镜测定并通过能量色散X射线光谱证实,AuNP的直径范围为30至100 nm,因此产生的AgNP小于20 nm。 。基于上清液的策略提供了证据,表明蛋白质是由酵母释放到培养基中的,这可能负责Ag NP的形成和稳定,尽管细胞壁的参与似乎是AuNP合成的基础。

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