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Integration of a capacitor to a 3-D DNA walker and a biofuel cell-based self-powered system for ultrasensitive bioassays of microRNAs

机译:集成电容器的DNA沃克和3 d生物燃料细胞自供电的系统超灵敏的生物小分子核糖核酸

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A self-powered microRNA biosensor with triple signal amplification systems was assembled through the integration of three-dimensional DNA walkers, enzymatic biofuel cells and a capacitor. The DNA walker is designed from an enzyme-free target triggered catalytic hairpin assembly of modified gold nanoparticles. When triggered by the target microRNA, the DNA walker will move along the catalytic hairpin track, resulting in a payload release of glucose oxidase. The enzymatic biofuel cell contains the glucose oxidase bioanode and a bilirubin oxidase biocathode that bring a dramatic open circuit voltage to realize the self-powered bioassays of microRNA. A capacitor is further coupled with the enzymatic biofuel cell to further amplify the electrochemical signal, and the sensitivity increases 28.82 times through optimizing the matching capacitor. Based on this design, the present biosensor shows high performance, especially for detection limit and sensitivity. Furthermore, the present biosensor was successfully applied for serum samples, directly demonstrating its good application in clinical biomedicine and disease diagnosis.
机译:与三重自供电的微rna生物传感器信号放大系统组装通过集成的三维DNA步行者、酶生物燃料电池和电容器。从一个enzyme-free DNA沃克设计目标引发催化发夹组装的修改后的金纳米粒子。沃克将目标微rna, DNA沿催化发夹,导致负载释放葡萄糖氧化酶。生物燃料电池含有葡萄糖氧化酶bioanode和胆红素氧化酶biocathode带来一个戏剧性的开路电压来实现微的自供电的生物分析。电容器是进一步加上酶生物燃料细胞进一步放大电化学信号,灵敏度通过优化增加28.82倍匹配电容。目前的生物传感器显示高性能,尤其是对检出限和敏感。此外,目前的生物传感器成功申请了血清样本,直接证明其良好的临床应用生物医学和疾病诊断。

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