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A self-powered glucose biosensor based on pyrolloquinoline quinone glucose dehydrogenase and bilirubin oxidase operating under physiological conditions

机译:基于Pyrolloquinoline醌葡萄糖脱氢酶和生理病症的胆红素氧化酶的自我动力葡萄糖生物传感器

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A novel biosensing system capable of simultaneously sensing glucose and powering portable electronic devices such as a digital glucometer is described. The biosensing system consists of enzymatic glucose biofuel cell bioelectrodes functionalized with pyrolloquinoline quinone glucose dehydrogenase (PQQ-GDH) and bilirubin oxidase (BOD) at the bioanode and biocathode, respectively. A dual-stage power amplification circuit is integrated with the single biofuel cell to amplify the electrical power generated. In addition, a capacitor circuit was incorporated to serve as the transducer for sensing glucose. The open circuit voltage of the optimized biofuel cell reached 0.55 V, and the maximum power density achieved was 0.23 mW/cm~2 at 0.29 V. The biofuel cell exhibited a sensitivity of 0.312 mW/mM.cm~2 with a linear dynamic range of 3 mM - 20 mM glucose. The overall self-powered glucose biosensor is capable of selectively screening against common interfering species, such as ascorbate and urate and exhibited an operational stability of over 53 days, while maintaining 90% of its activity. These results demonstrate the system's potential to replace the current glucose monitoring devices that rely on external power supply, such as a battery.
机译:描述了一种能够同时感测葡萄糖和供电诸如数字血凝仪的便携式电子设备的新型生物传感系统。生物传感系统包括分别在生物潮和生物探剂和生物疗法的酶官能化的酶葡萄糖生物燃料细胞生物电池和胆红素氧化酶(BOD)。双级功率放大电路与单个生物燃料电池集成,以放大产生的电力。另外,掺入电容器电路以用作用于传感葡萄糖的换能器。优化的生物燃料电池的开路电压达到0.55V,实现的最大功率密度为0.29 V.29 V.生物燃料电池具有0.312mW / mm.cm〜2的灵敏度,线性动态范围3毫米 - 20毫米葡萄糖。整体自给自足的葡萄糖生物传感器能够选择性地筛选普通干扰物种,例如抗坏血酸和呼吸吻合物,并在53天内表现出可操作的稳定性,同时保持90%的活性。这些结果证明了系统的潜力,更换了依靠外部电源的当前葡萄糖监测设备,例如电池。

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