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Biosynthesis of gold nanoparticles by the living freshwater diatom Eolimna minima, a species developed in river biofilms

机译:活的淡水硅藻Eolimna minima(一种在河流生物膜中发育的物种)对金纳米颗粒的生物合成

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摘要

Testing biotransformation capacities of living aquatic microalgae diatoms to naturally synthetize gold nanoparticles (AuNP) from gold salts and assessing aftereffects on their viability by microscope observations is a great challenge. In this work, a laboratory experiment was conducted, which aimed to observe (i) directly by transmission electronic and light microscopy and (ii) through indirect measurements (UV-visible spectroscopy) the periphytic freshwater diatom Eolimna minima exposed to gold salts. This work revealed the capacity of E. minima to intracellularly biosynthetize AuNP and to tolerate it. AuNP synthesis appears as a mechanism of detoxification to protect diatom from gold salt contamination. We also pointed out the risks associated with the spread of diatoms full of AuNP, through the trophic web of freshwater ecosystems. The preponderant part of the diatoms in natural biofilms associated with their position at the basis of the trophic webs in rivers could then make them responsible for the contamination of their consumers (grazer animals) and consequently for the potential release of AuNP through the entire food web.
机译:测试活的水生微藻硅藻的生物转化能力,以从金盐中自然合成金纳米颗粒(AuNP),并通过显微镜观察评估其生存能力的后效,是一个巨大的挑战。在这项工作中,进行了一项实验室实验,旨在观察(i)通过透射电子和光学显微镜直接观察,以及(ii)通过间接测量(紫外可见光谱)观察暴露于金盐中的附生淡水硅藻Eolimna minima。这项工作揭示了小肠埃希菌在细胞内生物合成AuNP并对其耐受的能力。 AuNP合成似乎是一种排毒机制,可保护硅藻免受金盐污染。我们还指出了通过淡水生态系统的营养网,充满AuNP的硅藻扩散所带来的风险。天然生物膜中硅藻的优势部分与其在河流营养网中的位置有关,可能使它们对消费者(放牧动物)的污染负责,并因此导致整个食品网中AuNP的潜在释放。

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