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Speeding up bioproduction of selenium nanoparticles by using Vibrio natriegens as microbial factory

机译:利用纳氏弧菌作为微生物工厂加快硒纳米颗粒的生物生产

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摘要

Selenium and selenium nanoparticles (SeNPs) are extensively used in biomedicine, electronics and some other industrial applications. The bioproduction of SeNPs is gaining interest as a green method to manufacture these biotechnologically relevant products. Several microorganisms have been used for the production of SeNPs either under aerobic or anaerobic conditions. Vibrio natriegens is a non-pathogenic fast-growing bacterium, easily cultured in different carbon sources and that has recently been engineered for easy genetic manipulation in the laboratory. Here we report that V. natriegens was able to perfectly grow aerobically in the presence of selenite concentrations up to 15 mM with a significant survival still observed at concentrations as high as 100 mM selenite. Electron microscopy and X-ray spectroscopy analyses demonstrate that V. natriegens cells growing aerobically in selenite-containing LB medium at 30 °C produced spherical electron-dense SeNPs whose size ranged from 100–400 nm. Selenite reduction just started at the beginning of the exponential growth phase and the release of SeNPs was observed after cell lysis. Remarkably, V. natriegens produced SeNPs faster than other described microorganisms that were proposed as model bioreactors for SeNPs production. Thus, the fast-growing V. natriegens bacterium becomes a suitable biocatalyst for bioremediation of selenite and for speeding-up the eco-friendly synthesis of SeNPs.
机译:硒和硒纳米颗粒(SeNPs)广泛用于生物医学,电子学和其他一些工业应用。 SeNPs的生物生产作为制造这些生物技术相关产品的绿色方法正受到关注。在好氧或厌氧条件下,几种微生物已被用于生产SeNPs。 Natriegens弧菌是一种非致病性的快速生长细菌,可在不同碳源中轻松培养,最近经过工程改造,可在实验室轻松进行基因操作。在这里,我们报告说,在亚硒酸盐浓度高达15μmM的情况下,纳特里冈弧菌能够完美地有氧生长,在高达100μmM的亚硒酸盐浓度下仍能观察到显着的存活率。电子显微镜和X射线光谱分析表明,在30°C含硒的LB培养基中需氧生长的纳特氏弧菌细胞产生球形电子致密SeNP,其大小范围为100-400nm。亚硒酸盐的还原仅在指数生长期开始时开始,并且在细胞裂解后观察到SeNPs的释放。值得注意的是,V。natriegens产生SeNP的速度比其他描述为SeNPs生产的模型生物反应器的微生物要快。因此,快速生长的纳曲菌细菌成为用于亚硒酸盐生物修复和加速SeNPs的生态友好合成的合适生物催化剂。

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