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首页> 外文期刊>Analytical Sciences >Ultrasensitive Biosensor for Detection of Mercury(II) Ions Based on DNA-Cu Nanoclusters and Exonuclease III-assisted Signal Amplification
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Ultrasensitive Biosensor for Detection of Mercury(II) Ions Based on DNA-Cu Nanoclusters and Exonuclease III-assisted Signal Amplification

机译:基于DNA-Cu纳米团簇和核酸外切酶III辅助信号放大的汞(II)离子超灵敏生物传感器

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This paper describes a novel method for label-free mercury(II) ion detection based on exonuclease III-induced target signal recycling amplification using double-stranded DNA templated copper nanoclusters. The synthesized DNA-Cu nanoclusters were used with exonuclease III loop amplification technology for ultra-high sensitivity detection of mercury(II) ions, which were detected by significantly decreased fluorescence intensity. Under the optimal experimental conditions, there was a clear linear relationship between Hg~(2+) concentration in the range of 0.04 to 8 nM and fluorescence intensity. The detection limit for Hg~(2+) was 4 pM. In addition, the interference of other metal ions on the mercury(II) ion detection was also studied. To confirm the application of the fluorescent sensor, it was applied to determine the concentrations of mercury(II) ions in tap water, and the results showed that the method can be used to detect mercury(II) ions in water samples successfully.
机译:本文介绍了一种新的无标记汞(II)离子检测方法,该方法基于核酸外切酶III诱导的目标信号回收扩增,使用双链DNA模板化铜纳米簇。合成的DNA-Cu纳米簇与核酸外切酶III环放大技术一起用于超高灵敏度检测汞(II)离子,该汞离子可通过显着降低的荧光强度进行检测。在最佳实验条件下,Hg〜(2+)在0.04至8 nM范围内的浓度与荧光强度之间存在明显的线性关系。 Hg〜(2+)的检出限为4 pM。此外,还研究了其他金属离子对汞(II)离子检测的干扰。为证实荧光传感器的应用,该方法用于测定自来水中汞(II)离子的浓度,结果表明该方法可成功检测水样中的汞(II)离子。

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