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Uranium (VI) detection in groundwater using a gold nanoparticle/paper-based lateral flow device

机译:使用金纳米颗粒/纸基侧向流动装置检测地下水中的铀(VI)

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摘要

The contamination in groundwater due to the presence of uranium is nowadays a subject of concern due to the severe health problems associated with renal failure, genotoxicity and cancer. The standard methods to detect uranium require time-consuming processes and expensive non-portable equipment, so these measurements are rarely performed in-field, which increases the time until water samples are analysed. Furthermore, the few portable methods available do not allow quantitative analysis and the detection limit is often not low enough to reach the recommendations for drinking water (30 ppb or 126 nM of uranium). For the first time, we propose a portable, fast, inexpensive and sensitive paper-based biosensor able to detect in situ U(VI) in water samples: U(VI) selective gold nanoparticle-based lateral flow strips. Antibody-coated gold nanoparticles are used as labels in the proposed lateral flow system because of their biocompatibility; in addition, these nanoparticles provide high sensitivity due to their intense plasmonic effect. The antibody used in the assay recognizes soluble U(VI) complexed to the chelator, 2,9-dicarboxyl-1,10-phenanthroline (DCP). Because of the small size of the U(VI)-DCP complex, this assay employs a competitive format that reaches a limit of detection of 36.38 nM, lower than the action level (126 nM) established by the World Health Organization and the U.S. Environmental Protection Agency for drinking waters.
机译:由于存在与肾衰竭,遗传毒性和癌症相关的严重健康问题,如今由于铀的存在而对地下水造成的污染成为人们关注的问题。检测铀的标准方法需要耗时的过程和昂贵的非便携式设备,因此这些测量很少在现场进行,这增加了分析水样之前的时间。此外,现有的几种便携式方法无法进行定量分析,检测限通常不足以达到饮用水推荐标准(30 ppb或126 nM铀)。首次,我们提出了一种便携式,快速,廉价且灵敏的纸质生物传感器,该传感器能够检测水样品中的原位U(VI):U(VI)选择性金纳米颗粒基侧向流动条。抗体包被的金纳米颗粒由于其生物相容性而在拟议的侧向流动系统中用作标记。另外,这些纳米颗粒由于其强烈的等离子体效应而提供了高灵敏度。分析中使用的抗体识别与螯合剂2,9-二羧基-1,10-菲咯啉(DCP)络合的可溶性U(VI)。由于U(VI)-DCP复合物的体积很小,因此该分析采用的竞争形式达到了36.38 nM的检出限,低于世界卫生组织和美国环境部制定的行动水平(126 nM)。饮用水保护机构。

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