首页> 外文期刊>Radiochimica Acta: International Journal for Chemical Aspects of Nuclear Science and Technology >Assessment of uranium and selenium speciation in human and bacterial biological models to probe changes in their structural environment
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Assessment of uranium and selenium speciation in human and bacterial biological models to probe changes in their structural environment

机译:评估人类和细菌生物学模型中的铀和硒形态,以探测其结构环境的变化

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摘要

This study illustrates the potential of physicochemical techniques to speciate uranium (U) and selenium (Se) in biological samples. Speciation, defined here as the study of structural environment, of both toxic elements, was characterized at several levels in biological media and directly in human cells or bacteria once the metal(loid)s were internalized. External speciation that is extracellular speciation in culture media was predicted by thermodynamic equilibrium computer modelling using the JChess software and validated by spectroscopic measurements (XANES and EXAFS). Internal speciation that is intracellular speciation in eukaryotic and prokaryotic cells was studied in vitro with a soil bacterium Cupriavidus metallidurans CH34 and ROS 17/2.8 osteoblasts, human cells responsible for bone formation. XANES, EXAFS, HPLC-ICP-MS and SDS-PAGE coupled to particle induced X-ray emission (PIXE) permitted the identification and quantification of complexes formed with organic or inorganic molecules and/or larger proteins.
机译:这项研究说明了物理化学技术在生物样品中检定铀(U)和硒(Se)的潜力。一旦金属(胶体)被内化,物种(在这里定义为对两种有毒元素的结构环境的研究)就在生物介质中以及直接在人类细胞或细菌中以多个水平表征。使用JChess软件通过热力学平衡计算机建模预测了作为培养基中细胞外物种的外部物种,并通过光谱测量(XANES和EXAFS)进行了验证。使用土壤细菌铜绿细菌CH34和ROS 17 / 2.8成骨细胞(人类细胞负责骨骼形成)体外研究了真核细胞和原核细胞中细胞内物种形成的内部物种形成。 XANES,EXAFS,HPLC-ICP-MS和SDS-PAGE结合颗粒诱导X射线发射(PIXE),可以鉴定和定量与有机或无机分子和/或较大蛋白质形成的复合物。

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