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Highly Robust Nanopore-Based Dual-Signal-Output Ion Detection System for Achieving Three Successive Calibration Curves

机译:基于鲁棒性的基于纳米孔的双信号输出离子检测系统,可实现三个连续的校准曲线

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In recent years, artificial stimuli-responsive bioinspired nanopores have attracted a lot of attention due to their unique property of confined spaces and flexibility in terms of shapes and sizes. Most of the nanopore systems demonstrated their transmembrane properties and applications in target detections. However, almost all of the nanopores can be used only once due to either the irreversible reactions between targets and probes or the plugged nanopores not easily being unplugged again. In this work, we propose a dual-signal-output nanopore system that could detect the cations (Hg2+) inducing the plugged nanopores. The detection system is highly recoverable by the anions (S2-) inducing the unplugged nanopores. More importantly, as far as we know, it is seldom reported for the same nanopores to achieve successive calibration curves for three times by subsequent reversible plug unplug processes, which strongly demonstrates the high robustness of this novel nanopore-detection system. In addition, unlike monitoring the plug-unplug phenomena by only one type of signal, we combined the ionic current signal with the fluorescence output and could directly observe that the change of ionic current does in fact correspond to the plug unplug of the nanopores by the target stimuli.
机译:近年来,人工刺激响应的生物启发性纳米孔由于其在有限空间内的独特性质以及形状和大小的灵活性而引起了广泛的关注。大多数纳米孔系统都证明了其跨膜特性以及​​在目标检测中的应用。然而,由于靶与探针之间不可逆的反应或被塞住的纳米孔不容易再次被拔出,几乎所有的纳米孔只能使用一次。在这项工作中,我们提出了一种双信号输出纳米孔系统,该系统可以检测诱导堵塞纳米孔的阳离子(Hg2 +)。该检测系统可通过阴离子(S2-)诱导未插入的纳米孔而高度回收。更重要的是,据我们所知,很少有相同的纳米孔通过随后的可逆插拔过程获得连续三次的连续校准曲线,这充分证明了这种新型纳米孔检测系统的高耐用性。此外,与仅通过一种信号监视拔出现象不同,我们将离子电流信号与荧光输出结合在一起,可以直接观察到离子电流的变化实际上与纳米孔的拔出现象相对应。目标刺激。

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