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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Highly sensitive electrochemical nuclear factor kappa B aptasensor based on target-induced dual-signal ratiometric and polymerase-assisted protein recycling amplification strategy
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Highly sensitive electrochemical nuclear factor kappa B aptasensor based on target-induced dual-signal ratiometric and polymerase-assisted protein recycling amplification strategy

机译:高敏感的电化学核因子Kappa B基于目标诱导的双信号比率和聚合酶辅助蛋白回收扩增策略的Aptasensor

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AbstractIn this work, an amplified electrochemical ratiometric aptasensor for nuclear factor kappa B (NF-κB) assay based on target binding-triggered ratiometric signal readout and polymerase-assisted protein recycling amplification strategy is described. To demonstrate the effect of “signal-off” and “signal-on” change for the dual-signal electrochemical ratiometric readout, the thiol-hairpin DNA (SH-HD) hybridizes with methylene blue (MB)-modified protection DNA (MB-PD) to form capture probes, which is rationally introduced for the construction of the assay platform. On the interface, the probes can specifically bind to target NF-κB and expose a toehold region which subsequently hybridizes with the ferrocene (Fc)-modified DNA strand to take the Fc group to the electrode surface, accompanied by displacing MB-PD to release the MB group from the electrode surface, leading to the both “signal-on” of Fc (IFc) and “signal-off” of MB (IMB). In order to improve the sensitivity of the electrochemical aptasensor, phi29-assisted target protein recycling amplification strategy was designed to achieve an amplified ratiometric signal. With the above advantages, the prepared aptasensor exhibits a wide linear range of 0.1pgmL?1to 15ngmL?1with a low detection limit of 0.03pgmL?1. This strategy provides a simple and ingenious approach to construct ratiometric electrochemical aptasensor and shows promising potential applications in multiple disease marker detection by changing the recognition probe.
机译:<![cdata [ 抽象 在这项工作中,基于目标结合触发的比例读数的核因子Kappa B(NF-κB)测定的放大的电化学比例Aptasensor描述了聚合酶辅助蛋白质再循环扩增策略。为了证明“信号关”和“信号 - on”改变对双信号电化学比例读出的影响,硫醇 - 发夹DNA(SH-HD)与亚甲基蓝(MB)制定的保护DNA(MB-)杂交PD)形成捕获探针,该探针是合理引入的,用于构建测定平台。在界面上,探针可以特异性地结合靶NF-κB,暴露于随后与二茂铁(Fc)制定的DNA链杂交的呼至杂交区域,以将Fc基团取向电极表面,伴随着释放MB-PD释放来自电极表面的MB组,导致FC的“信号-NON”( I FC )和MB的“信号关”( i MB )。为了提高电化学Aptasensor的敏感性,设计了PHI29辅助靶蛋白再循环扩增策略以实现扩增的比率信号。通过上述优点,制备的Aptasensor具有0.1pgml α1至15ngml Δ1低检测限为0.03pgml ?1 。该策略提供了一种简单且巧妙的方法来构建比例电化学Aptasensor,并通过改变识别探针来显示多种疾病标记检测中的有希望的潜在应用。

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