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Ligating Dopamine as Signal Trigger onto the Substrate via Metal Catalyst-Free Click Chemistry for 'Signal-On' Photoelectrochemical Sensing of Ultralow MicroRNA Levels

机译:连接多巴胺作为信号触发信号,通过无金属点击化学作用实现超低MicroRNA水平的“信号接通”光电化学传感

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摘要

The efficiency of photon-to-electron conversion is extremely restricted by the electron hole recombinant. Here, a new photoelectrochemical (PEC) sensing platform has been established based on the signal amplification of click chemistry (CC) via hybridization chain reaction (HCR) for highly sensitive microRNA (miRNA) assay. In this proposal, a preferred electron donor dopamine (DA) was first assembled with designed ligation probe (probe-N-3) via amidation reaction to achieve DA-coordinated signal probe (P-DA-N-3). The P-DA-N-3 served as a flexible trigger to signal amplification through efficiently suppressing the electron hole recombinant. Specifically, the P-DA-N-3 can be successfully ligated into the trapped hairpins (H1 and H2) via the superior ligation method of metal-catalyst-free CC, in which the electron donor DA was introduced into the assay system. Moreover, the enzyme-free HCR, employed as a versatile amplification way, ensures that lots of P-DA-N-3 can be attached to the substrate. This PEC sensing for miRNA-141 detection illustrated the outstanding linear response to a concentration variation from 0.1 fM to 0.5 nM and a detection limit down to 27 aM, without additional electron donors. The sensor is further employed to monitor miRNA-141 from prostate carcinoma cell (22Rv1), showing good quantitative detection capability. This strategy exquisitely influences the analytical performance and offers a new PEC route to highly selective and sensitive detection of biological molecules.
机译:电子空穴重组极大地限制了光子到电子的转换效率。在此,基于点击化学(CC)通过杂交链反应(HCR)的点击化学(CC)信号放大,建立了一个新的光电化学(PEC)传感平台,用于高度敏感的microRNA(miRNA)分析。在该建议中,首先通过酰胺化反应将优选的电子供体多巴胺(DA)与设计的连接探针(probe-N-3)组装在一起,以获得DA配位信号探针(P-DA-N-3)。 P-DA-N-3通过有效抑制电子空穴重组体,成为信号放大的灵活触发。具体而言,可以通过无金属催化剂CC的优异连接方法将P-DA-N-3成功地连接到捕获的发夹(H1和H2)中,其中将电子供体DA引入测定系统中。此外,无酶HCR作为一种通用的扩增方法,可确保将许多P-DA-N-3附着在底物上。这种对miRNA-141检测的PEC感应说明了从0.1 fM到0.5 nM的浓度变化和低至27 aM的检测限的出色线性响应,而无需其他电子供体。该传感器还用于监测前列腺癌细胞(22Rv1)的miRNA-141,显示出良好的定量检测能力。该策略会极大地影响分析性能,并为高选择性和灵敏地检测生物分子提供了新的PEC途径。

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