首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >Coupling of background reduction with rolling circle amplification for highly sensitive protein detection via terminal protection of small molecule-linked DNA
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Coupling of background reduction with rolling circle amplification for highly sensitive protein detection via terminal protection of small molecule-linked DNA

机译:通过小分子连接的DNA的末端保护,背景还原与滚环扩增相结合,可进行高度灵敏的蛋白质检测

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摘要

In this work, by coupling background current reduction with rolling circle amplification (RCA), we describe the development of an ultrasensitive electrochemical sensing method for protein detection based on a small molecule-linked DNA terminal protection strategy. Our detection platform employs a typical streptavidin (STV)-biotin interaction system. Biotin-linked single-stranded DNA (SH-ssDNA-biotin) is self-assembled on a gold electrode to capture the target protein, STV. The binding of STV with the biotin small molecule recognition element protects the SH-ssDNA-biotin against hydrolysis by exonuclease I (Exo I), while the unbound SH-ssDNA-biotin is effectively hydrolyzed and removed from the electrode surface. The bound STV further interacts with long, RCA-amplified biotin DNAs to facilitate the adsorption of numerous electroactive reporters, hexaammineruthenium(iii) chloride (RuHex) via electrostatic interactions, which results in significantly amplified signals for the quantitative determination of STV. Moreover, the removal of the unbound SH-ssDNA-biotin probes from the sensing electrode obviates the accumulation of RuHex and leads to a highly minimized background current. The simultaneous RCA signal amplification and background current reduction is expected to significantly enhance the signal-to-noise ratio and to achieve ultrahigh sensitivity. The results reveal that the developed strategy provides a low detection limit of 0.4 pM with high selectivity.
机译:在这项工作中,通过将背景电流降低与滚动环扩增(RCA)耦合,我们描述了基于小分子连接的DNA末端保护策略的蛋白质检测超灵敏电化学传感方法的发展。我们的检测平台采用了典型的链霉亲和素(STV)-生物素相互作用系统。生物素连接的单链DNA(SH-ssDNA-生物素)在金电极上自组装,以捕获目标蛋白STV。 STV与生物素小分子识别元件的结合可保护SH-ssDNA-生物素不受核酸外切酶I(Exo I)的水解,而未结合的SH-ssDNA-生物素可有效地水解并从电极表面去除。结合的STV进一步与RCA扩增的长生物素DNA相互作用,以促进许多电活性报告分子通过静电相互作用吸附六胺六氯化钌(RuHex),从而显着放大了用于STV定量测定的信号。此外,从感测电极上去除未结合的SH-ssDNA-生物素探针可避免RuHex的积累,并导致极低的背景电流。预计同时进行RCA信号放大和降低背景电流将显着提高信噪比并实现超高灵敏度。结果表明,开发的策略提供了0.4 pM的低检测限和高选择性。

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