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A reversible fluorescent logic gate for sensing mercury and iodide ions based on a molecular beacon

机译:基于分子信标的可逆荧光逻辑门,用于检测汞和碘离子

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摘要

A simple, rapid, and reversible fluorescent DNA INHIBIT logic gate has been developed for sensing mercury (Hg~(2+)) and iodide (I-) ions based on a molecular beacon (MB). In this logic gate, a mercury ion was introduced as the first input into the MB logic gate system to assist in the hybridization of the MB with an assistant DNA probe through the thymine-Hg ~(2+)-thymine interaction, which eventually restored the fluorescence of MB as the output. With this signal-on process, mercury ions can be detected with a limit of detection as low as 7.9 nM. Furthermore, when iodide ions were added to the Hg~(2+)/MB system as the second input, the fluorescence intensity decreased because Hg~(2+) in the thymine-Hg ~(2+)-thymine complex was grabbed by I~- due to a stronger binding force. Iodide ions can be detected with a limit of detection of 42 nM. Meanwhile, we studied the feasibility and basic performance of the DNA INHIBIT logic gate, optimized the logic gate conditions, and investigated its sensitivity and selectivity. The results showed that the MB based logic gate is highly selective and sensitive for the detection of Hg~(2+) and I~- over other interfering cations and anions.
机译:已经开发了一种简单,快速且可逆的荧光DNA抑制逻辑门,用于基于分子信标(MB)感测汞(Hg〜(2+))和碘离子(I-)离子。在该逻辑门中,汞离子作为MB逻辑门系统的第一个输入被引入,以通过胸腺嘧啶-Hg〜(2 +)-胸腺嘧啶相互作用帮助MB与辅助DNA探针杂交,最终恢复MB的荧光作为输出。通过这种信号接通过程,可以检测到汞离子,检出限低至7.9 nM。此外,当将碘离子作为第二输入添加到Hg〜(2 +)/ MB系统中时,荧光强度降低,这是因为胸腺嘧啶-Hg〜(2 +)-胸腺嘧啶络合物中的Hg〜(2+)被氟我〜-由于有更强的约束力。碘离子的检出限为42 nM。同时,我们研究了DNA INHIBIT逻辑门的可行性和基本性能,优化了逻辑门条件,并研究了其灵敏度和选择性。结果表明,基于MB的逻辑门对其他干扰阳离子和阴离子的Hg〜(2+)和I〜-的检测具有很高的选择性和敏感性。

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