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Development of a Sensitive Self-Powered Glucose Biosensor Based on an Enzymatic Biofuel Cell

机译:基于酶生物燃料细胞的敏感自我动力葡萄糖生物传感器的研制

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摘要

Biofuel cells allow for constructing sensors that leverage the specificity of enzymes without the need for an external power source. In this work, we design a self-powered glucose sensor based on a biofuel cell. The redox enzymes glucose dehydrogenase (NAD-GDH), glucose oxidase (GOx), and horseradish peroxidase (HRP) were immobilized as biocatalysts on the electrodes, which were previously engineered using carbon nanostructures, including multi-wall carbon nanotubes (MWCNTs) and reduced graphene oxide (rGO). Additional polymers were also introduced to improve biocatalyst immobilization. The reported design offers three main advantages: (i) by using glucose as the substrate for the both anode and cathode, a more compact and robust design is enabled, (ii) the system operates under air-saturating conditions, with no need for gas purge, and (iii) the combination of carbon nanostructures and a multi-enzyme cascade maximizes the sensitivity of the biosensor. Our design allows the reliable detection of glucose in the range of 0.1–7.0 mM, which is perfectly suited for common biofluids and industrial food samples.
机译:生物燃料细胞允许构建利用酶特异性的传感器,而无需外部电源。在这项工作中,我们设计基于生物燃料电池的自动血糖传感器。将氧化还原酶葡萄糖脱氢酶(NAD-GDH),葡萄糖氧化酶(GOX)和辣根过氧化物酶(HRP)固定为电极上的生物催化剂,其先前使用碳纳米结构(包括多壁碳纳米管(MWCNT)和降低)石墨烯氧化物(RGO)。还引入了另外的聚合物以改善生物催化剂固定化。报告的设计提供了三种主要优点:(i)通过使用葡萄糖作为阳极和阴极的基材,使能更紧凑且鲁棒的设计,(ii)该系统在空气饱和条件下运行,无需气体吹扫,(iii)碳纳米结构和多酶级联的组合可以最大限度地提高生物传感器的敏感性。我们的设计允许可靠地检测葡萄糖在0.1-7.0毫米的范围内,这非常适合普通生物流体和工业食品样品。

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