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Carbon Nanotube-Bilirubin Oxidase Bioconjugate as a New Biofuel Cell Label for Self-Powered Immunosensor

机译:碳纳米管-胆红素氧化酶生物共轭物作为自供电免疫传感器的新型生物燃料电池标签。

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摘要

We demonstrated a biofuel cells (BFCs)-based self-powered sensing system for the detection of N epsilon-(carboxymethyl)lysine (CML), in which the bilirubin oxidase (BOD)-carbon nanotube (CNT) bioconjugate modified with antibody acted as a biocatalyst for enhancing O-2 reduction in the biocathode, as well as the transducing enzyme for signaling magnification. With an increase in the concentration of CML, the amount of BOD labels on biocathode surface increases, thus leading to the higher output of the as-prepared BFCs. This novel BFCs-based self-powered sensor showed a wide linear range for analyzing CML from 1 nM to 100 mu M with a detection limit of 0.2 nM, which was 50 times more sensitive than that determined from the conventional ELISA. Most importantly, our new self-powered sensing platform can determine the level of CML in serum samples from multiple healthy donors and multiple sclerosis patients, being well in accordance with that from the commercial ELISA analysis.
机译:我们展示了一种基于生物燃料电池(BFCs)的自供电传感系统,用于检测Nε-(羧甲基)赖氨酸(CML),其中用抗体修饰的胆红素氧化酶(BOD)-碳纳米管(CNT)生物缀合物充当用于增强生物阴极中O-2还原的生物催化剂,以及用于信号放大的转导酶。随着CML浓度的增加,生物阴极表面上BOD标签的数量增加,从而导致所制备BFC的产量更高。这种新颖的基于BFC的自供电传感器显示了从1 nM到100μM的CML分析的宽线性范围,检测限为0.2 nM,比常规ELISA灵敏度高50倍。最重要的是,我们新的自供电传感平台可以确定来自多个健康供体和多个硬化症患者的血清样品中的CML水平,与商业ELISA分析的结果完全一致。

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