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Construction of sandwiched self-powered biosensor based on smart nanostructure and capacitor: Toward multiple signal amplification for thrombin detection

机译:基于智能纳米结构和电容器的三明治式自供电生物传感器的构建:趋向于凝血酶检测的多信号放大

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摘要

A self-powered electrochemical sensing platform is fabricated to sensitively detect protein based on capacitor signal amplification and one-compartment glucose/O-2 enzymatic biofuel cells (EBFCs). SnS2 nanoflowers/Au nanoparticles (AuNPs) and DNA-carbon nanotubes bioconjugate/AuNPs are prepared and modified on carbon paper as electrode substrates. The sandwiched structure to craft bioanodes is elaborately designed to dramatically enhance the open circuit voltage of the device, triggered by protein coupled with the DNA bioconjugate containing glucose oxidase and aptamer. The EBFCs-based aptasensor will subsequently catalyze glucose oxidation in the presence of the target thrombin (TB). More importantly, a commercial capacitor is also introduced into EBFCs to accumulate charge for a higher instantaneous current. This will result in a significantly amplified readout signal, which can be efficiently captured by digital multimeter. The open circuit voltage can be tuned with target TB concentration ranging from 0.02 to 5 ng/mL with a low detection limit of 7.90 pg/mL. Once the capacitor is charged by EBFCs, a sensitivity of 42.4 mu A/(ng/mL) can be discharged with an increase of 18.4 times than that of pure EBFCs. Furthermore, this capacitor/EBFC hybrid device can be extended as a common platform for the quantitative determination of other proteins and has a great clinical analysis potential.
机译:制造了一个自供电的电化学传感平台,可以基于电容器信号放大和一室葡萄糖/ O-2酶促生物燃料电池(EBFC)灵敏地检测蛋白质。制备了SnS2纳米花/ Au纳米颗粒(AuNPs)和DNA-碳纳米管生物共轭物/ AuNPs,并在碳纸上作为电极底物进行了改性。精心制作生物阳极的夹层结构经过精心设计,可显着提高设备的开路电压,该开路电压由蛋白质与包含葡萄糖氧化酶和适体的DNA生物共轭物偶联而触发。基于EBFC的适体传感器随后将在目标凝血酶(TB)存在的情况下催化葡萄糖氧化。更重要的是,还向EBFC中引入了商用电容器,以积累更高瞬时电流的电荷。这将导致显着放大的读出信号,可以由数字万用表有效捕获。开路电压可以在0.02至5 ng / mL的目标TB浓度范围内进行调节,检测限低至7.90 pg / mL。电容器通过EBFC充电后,其放电灵敏度为42.4μA /(ng / mL),是纯EBFC的18.4倍。此外,这种电容器/ EBFC混合设备可以扩展为定量测定其他蛋白质的通用平台,并具有很大的临床分析潜力。

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