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首页> 外文期刊>Analytica chimica acta >Amplified impedimetric aptasensor based on gold nanoparticles covalently bound graphene sheet for the picomolar detection of ochratoxin A
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Amplified impedimetric aptasensor based on gold nanoparticles covalently bound graphene sheet for the picomolar detection of ochratoxin A

机译:基于金纳米粒子共价键合石墨烯片的放大型阻抗适体传感器,用于皮摩尔检测曲霉毒素A

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摘要

An amplified electrochemical impedimetric aptasensor for ochratoxin A (OTA) was developed with picomolar sensitivity. A facile route to fabricate gold nanoparticles covalently bound reduced graphene oxide (AuNPs-rGO) resulted in a large number of well-dispersed AuNPs on graphene sheets with tremendous binding sites for DNA, since the single rGO sheet and each AuNP can be loaded with hundreds of DNA strands. An aptasensor with sandwich model was fabricated which involved thiolated capture DNA immobilized on a gold electrode to capture the aptamer, then the sensing interface was incubated with OTA at a desired concentration, followed by AuNPs-rGO functionalized reporter DNA hybridized with the residual aptamers. By exploiting the AuNPs-rGO as an excellent signal amplified platform, a single hybridization event between aptamer and reporter DNA was translated into more than 10~7 redox events, leading to a substantial increase in charge-transfer resistance (R_(ct)) by 7~ orders of magnitude compared with that of the free aptamer modified electrode. Such designed aptasensor showed a decreased response of R_(ct) to the increase of OTA concentrations over a wide range of 1 pg mL~(-1) -50 ng mL~(-1) and could detect extremely low OTA concentration, namely, 0.3 pgmL~(-1) or 0.74 pM, which was much lower than that of most other existed impedimetric aptasensors. The signal amplification platform presented here would provide a promising model for the aptamer-based detection with a direct impedimetric method.
机译:开发了一种用于pic曲霉毒素A(OTA)的扩增电化学阻抗适体传感器,具有皮摩尔灵敏度。一种易于制造的金纳米颗粒共价键合还原的氧化石墨烯(AuNPs-rGO)的简便方法导致石墨烯片上大量分散的AuNPs具有巨大的DNA结合位点,因为单个rGO片和每个AuNP可以装载数百个DNA链。制备了具有三明治模型的适体传感器,其涉及固定在金电极上的巯基化捕获DNA来捕获适体,然后将传感界面与所需浓度的OTA一起孵育,然后将AuNPs-rGO功能化的报告DNA与残留的适体杂交。通过利用AuNPs-rGO作为出色的信号放大平台,适体和报告基因之间的单个杂交事件被翻译成10〜7个以上的氧化还原事件,从而导致电荷转移电阻(R_(ct))大大增加。与游离适体修饰电极相比,降低了7〜几个数量级。这种设计的适体传感器在1 pg mL〜(-1)-50 ng mL〜(-1)的宽范围内显示出R_(ct)对OTA浓度增加的响应降低,并且可以检测到极低的OTA浓度,即0.3 pgmL〜(-1)或0.74 pM,远低于大多数其他现有的阻抗适体传感器。本文介绍的信号放大平台将为直接适配法基于适体的检测提供有希望的模型。

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