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首页> 外文期刊>Sensors >A Sensitive and Label-Free Pb(II) Fluorescence Sensor Based on a DNAzyme Controlled G-Quadruplex/Thioflavin T Conformation
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A Sensitive and Label-Free Pb(II) Fluorescence Sensor Based on a DNAzyme Controlled G-Quadruplex/Thioflavin T Conformation

机译:基于DNA酶控制的G四联体/硫黄素T构型的敏感和无标签的Pb(II)荧光传感器。

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Pb(II) can cause serious damaging effects to human health, and thus, the study of Pb 2+ detection methods to sensitively and selectively monitor Pb(II) pollution has significant importance. In this work, we have developed a label-free fluorescence sensing strategy based on a Pb(II) DNAzyme cleavage and the ThT/G-quadruplex complex. In the presence of Pb(II), a G-rich tail was cut and released from the substrate strand, which then would form a G-quadruplex structure by combination with ThT dye. The fluorescence signal increase was then measured for sensitive Pb(II) quantification with a limit of detection of 0.06 nM. Our sensor also demonstrated high selectivity against six different metal ions, which is very important for the analysis of complex samples.
机译:Pb(II)可能对人体健康造成严重破坏作用,因此,对Pb 2+检测方法进行灵敏和选择性监测Pb(II)污染的研究具有重要意义。在这项工作中,我们已经开发了一种基于Pb(II)DNAzyme裂解和ThT / G-四链体复合物的无标记荧光传感策略。在存在Pb(II)的情况下,将富G的尾巴切下并从底物链上释放出来,然后与ThT染料结合形成G-四链体结构。然后测量荧光信号的增加,以进行敏感的Pb(II)定量,检测极限为0.06 nM。我们的传感器还表现出对六种不同金属离子的高选择性,这对于分析复杂样品非常重要。

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