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The effect of uranium on bacterial viability and cell surface morphology using atomic force microscopy in the presence of bicarbonate ions

机译:在碳酸氢根离子存在下使用原子力显微镜观察铀对细菌活力和细胞表面形态的影响

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Past disposal practices at nuclear production facilities have led to the release of liquid waste into the environment creating multiple radionuclide plumes. Microorganisms are known for the ability to interact with radionuclides and impact their mobility in soils and sediments. Gram-positive Arthrobacter sp. are one of the most common bacterial groups in soils and are found in large numbers in subsurface environments contaminated with radionuclides. This study experimentally analyzed changes on the bacteria surface at the nanoscale level after uranium exposure and evaluated the effect of aqueous bicarbonate ions on U(VI) toxicity of a low uranium-tolerant Arthrobacter oxydans strain G968 by investigating changes in adhesion forces and cell dimensions via atomic force microscopy (AFM). Experiments were extended to assess cell viability by the Live/Dead BacLight Bacterial Viability Kit (Molecular Probes) and quantitatively illustrate the effect of uranium exposure in the presence of varying concentrations of bicarbonate ions. AFM and viability studies showed that samples containing bicarbonate were able to withstand uranium toxicity and remained viable. Samples containing no bicarbonate exhibited deformed surfaces and a low height profile, which, in conjunction with viability studies, indicated that the cells were not viable. (C) 2015 Institut Pasteur. Published by Elsevier Masson SAS. All rights reserved.
机译:核生产设施过去的处置做法导致液体废物释放到环境中,形成了多个放射性核素羽。微生物以与放射性核素相互作用并影响其在土壤和沉积物中的迁移能力而闻名。革兰氏阳性节杆菌是土壤中最常见的细菌群之一,在被放射性核素污染的地下环境中大量发现。这项研究实验性地研究了暴露于铀后纳米级水平细菌表面的变化,并通过研究粘附力和细胞大小的变化,评估了碳酸氢根离子水溶液对低铀耐受性的拟南曲霉菌株G968的U(VI)毒性的影响。原子力显微镜(AFM)。通过活/死BacLight细菌生存力试剂盒(分子探针)扩展了评估细胞生存力的实验,并定量说明了在不同浓度的碳酸氢根离子存在下铀暴露的影响。原子力显微镜和可行性研究表明,含碳酸氢盐的样品能够承受铀毒性并保持活力。不包含碳酸氢盐的样品表现出变形的表面和低的高度轮廓,结合活力研究表明,这些细胞不具有活力。 (C)2015年巴斯德研究所。由Elsevier Masson SAS发布。版权所有。

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