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A Universal Strategy for Aptamer-Based Nanopore Sensing through Host-Guest Interactions inside -Hemolysin

机译:通过溶血素内部的客体相互作用实现基于适体的纳米孔感知的通用策略

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Nanopore emerged as a powerful single-molecule technique over the past two decades, and has shown applications in the stochastic sensing and biophysical studies of individual molecules. Here, we report a versatile strategy for nanopore sensing by employing the combination of aptamers and host-guest interactions. An aptamer is first hybridized with a DNA probe which is modified with a ferrocene< subset of>cucurbit[7]uril complex. The presence of analytes causes the aptamer-probe duplex to unwind and release the DNA probe which can quantitatively produce signature current events when translocated through an -hemolysin nanopore. The integrated use of magnetic beads can further lower the detection limit by approximately two to three orders of magnitude. Because aptamers have shown robust binding affinities with a wide variety of target molecules, our proposed strategy should be universally applicable for sensing different types of analytes with nanopore sensors.
机译:在过去的二十年中,纳米孔已成为一种强大的单分子技术,并已显示出在单个分子的随机传感和生物物理研究中的应用。在这里,我们报告了通过结合适体和宿主-客体相互作用的纳米孔传感的通用策略。首先将适体与DNA探针杂交,该DNA探针用葫芦[7] uril复合物的二茂铁亚群修饰。分析物的存在会导致适体探针双链体解旋并释放出DNA探针,当其通过-溶血素纳米孔转移时,可以定量地产生标志性的电流事件。磁珠的集成使用可以将检测极限进一步降低大约2到3个数量级。由于适体已显示出与多种目标分子的牢固结合亲和力,因此我们提出的策略应普遍适用于使用纳米孔传感器感测不同类型的分析物。

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