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Effect of Signaling Probe Conformation on Sensor Performance of a Displacement-Based Electrochemical DNA Sensor

机译:信号探针构型对基于位移的电化学DNA传感器的传感器性能的影响

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Here we report the effect of the signaling probe conformation on sensor performance of a "signal-on" folding-based electrochemical DNA sensor. The sensor is comprised of a methylene blue (MB)-modified signaling probe and an unlabeled capture probe that partially hybridize to each other at the distal end. In presence of the full-complement target which binds to the unlabeled capture probe, the labeled signaling probe is released. Two different signaling probes were used in this study, in which one is capable of assuming a stem-loop conformation (SLP-MB), whereas the other probe adopts a flexible linear conformation (LP-MB). In the presence of the full complement target DNA, both sensors showed a large increase in MB current when interrogated using alternating current (ac) voltammetry, verifying the release of the signaling probe. Overall, the SLP-MB sensor showed higher % signal enhancement; the LP-MB sensor, however, showed distinctly faster binding kinetics when interrogated under the same experimental conditions. The SLP-MB sensor displayed a wider usable ac frequency range when compared to the LP-MB sensor. Despite these differences, the detection limit and dynamic range were found to be similar among the two sensors. In addition to 6-mercapto-1-hexanol, longer chain hydroxyl-terminated alkanethiols were used to construct these sensors. Our results showed that sensors fabricated with longer chain diluents, independent of the sensor architecture, were not only functional, the signaling capability was significantly enhanced.
机译:在这里,我们报告信号探针构象对“信号”折叠式电化学DNA传感器的传感器性能的影响。该传感器由亚甲基蓝(MB)修饰的信号探针和未标记的捕获探针组成,这些探针在远端彼此部分杂交。在与未标记的捕获探针结合的完全互补靶标存在下,标记的信号探针被释放。在这项研究中使用了两种不同的信号探针,其中一种能够假定茎环构象(SLP-MB),而另一种探针则采用了柔性线性构象(LP-MB)。在存在完全互补的靶DNA的情况下,当使用交流(ac)伏安法进行询问时,两个传感器都显示MB电流大大增加,从而验证了信号探针的释放。总体而言,SLP-MB传感器显示出更高的信号增强百分比;然而,当在相同的实验条件下进行查询时,LP-MB传感器显示出明显更快的结合动力学。与LP-MB传感器相比,SLP-MB传感器显示了更宽的可用交流频率范围。尽管存在这些差异,但发现两个传感器之间的检测极限和动态范围相似。除6-巯基-1-己醇外,更长链的羟基封端的链烷硫醇还用于构建这些传感器。我们的结果表明,使用更长链稀释剂制造的传感器不仅功能强大,而且信号功能也得到了显着增强。

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