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A catalytic beacon sensor for uranium with parts-per-trillion sensitivity and millionfold selectivity

机译:用于铀的催化信标传感器具有百万分之几的灵敏度和百万倍的选择性

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摘要

Here, we report a catalytic beacon sensor for uranyl (UO22+) based on an in vitro-selected UO22+-specific DNAzyme. The sensor consists of a DNA enzyme strand with a 3′ quencher and a DNA substrate with a ribonucleotide adenosine (rA) in the middle and a fluorophore and a quencher at the 5′ and 3′ ends, respectively. The presence of UO22+ causes catalytic cleavage of the DNA substrate strand at the rA position and release of the fluorophore and thus dramatic increase of fluorescence intensity. The sensor has a detection limit of 11 parts per trillion (45 pM), a dynamic range up to 400 nM, and selectivity of >1-million-fold over other metal ions. The most interfering metal ion, Th(IV), interacts with the fluorescein fluorophore, causing slightly enhanced fluorescence intensity, with an apparent dissociation constant of ≈230 μM. This sensor rivals the most sensitive analytical instruments for uranium detection, and its application in detecting uranium in contaminated soil samples is also demonstrated. This work shows that simple, cost-effective, and portable metal sensors can be obtained with similar sensitivity and selectivity as much more expensive and sophisticated analytical instruments. Such a sensor will play an important role in environmental remediation of radionuclides such as uranium.
机译:在这里,我们报告了基于体外选择的UO2 2 + 特异性DNAzyme的铀酰(UO2 2 + )催化信标传感器。该传感器由具有3'淬灭剂的DNA酶链和中间带有核糖核苷酸腺苷(rA)的DNA底物以及分别位于5'和3'端的荧光团和淬灭剂组成。 UO2 2 + 的存在会导致rA位置的DNA底物链发生催化裂解并释放出荧光团,因此荧光强度急剧增加。该传感器的检测极限为11万亿分之一(45 pM),动态范围高达400 nM,选择性是其他金属离子的100万倍以上。干扰最大的金属离子Th(IV)与荧光素荧光团相互作用,导致荧光强度略有增强,表观解离常数约为230μM。该传感器可与用于铀检测的最灵敏的分析仪器相媲美,并且还证明了其在污染土壤样品中检测铀的应用。这项工作表明,与更昂贵和复杂的分析仪器相比,可以以相似的灵敏度和选择性获得简单,具有成本效益的便携式金属传感器。这种传感器将在放射性核素(例如铀)的环境修复中发挥重要作用。

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