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Label-free tri-luminophores electrochemiluminescence sensor for microRNAs detection based on three-way DNA junction structure

机译:基于三元DNA结结构的MicroRNAS检测的无标记三光电影电化学传感器

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A label-free microRNAs (miRNAs) electrochemiluminescence sensor was developed based on the synergistically enhanced ECL signal using novel ECL nanomaterial assembled by tri-luminophores perylenetetracarboxylic acid (PTCA) graphite-like carbon nitride nanosheet (g-C3N4NS) and graphene carbon quantum dots (GQDs). The ECL intensity of our proposed nanocomposites increased significantly, by taking advantages of the synergistic promotion ECL mechanism of PTCA g-C3N4and GQDs. Meanwhile, a three-way junction (TWJ) structure was introduced into the sensor design, whose conformation can be specifically induced in the presence of target miRNA. Thus, the formation of TWJ structure can hinder the contact between the co-reactant Na2S2O8in the solution phase and the luminescent substrate, which produce a quenched ECL signal. Our proposed ECL biosensor provided a highly sensitive detection of miRNA-21 with a detection limit of 96 aM ranging from 100 aM to 1?nM. Furthermore, this ECL sensing system was able to successfully distinguish the target RNA from its homologous family and presented a promising response in human real samples. With excellent properties, the proposed ECL biosensor provided an efficient and ultrasensitive method for miRNAs detection.
机译:基于协同增强的ECL信号,利用三发光体苝四羧酸(PTCA)、类石墨碳氮化物纳米片(g-C3N4NS)和石墨烯碳量子点(GQD)组装的新型ECL纳米材料,开发了一种无标记微RNA(miRNAs)电化学发光传感器。利用PTCA g-C3N4和GQD的协同促进ECL机制,我们提出的纳米复合材料的ECL强度显著增加。同时,在传感器设计中引入了三向连接(TWJ)结构,其构象可以在靶miRNA存在下特异性诱导。因此,TWJ结构的形成会阻碍溶液相中的共反应物Na2S2O8与发光衬底之间的接触,从而产生猝灭的ECL信号。我们提出的ECL生物传感器提供了对miRNA-21的高灵敏度检测,检测限为96μm,范围从100μm到1μm?纳米。此外,该ECL传感系统能够成功地将目标RNA与其同源家族区分开来,并在人类真实样本中呈现出良好的响应。ECL生物传感器具有优异的性能,为miRNA检测提供了一种高效、超灵敏的方法。

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