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基于中空通道纸分析器件的生物燃料电池驱动的自供电竞争免疫传感器。

Self-powered competitive immunosensor driven by biofuel cell based on hollow-channel paper analytical devices.

机构信息

Key Laboratory of Chemical Sensing & Analysis in Universities of Shandong, School of Chemistry and Chemical Engineering, University of Jinan, Jinan 250022, PR China.

Shandong Provincial Key Laboratory of Preparation and Measurement of Building Materials, School of Material Science and Engineering, University of Jinan, Jinan 250022, PR China.

出版信息

Biosens Bioelectron. 2015 Sep 15;71:18-24. doi: 10.1016/j.bios.2015.04.019. Epub 2015 Apr 7.

Abstract

A mediator-less and compartment-less glucose/O2 enzymatic biofuel cell (BFC) was introduced into microfluidic paper-based analytical devices (μ-PADs) that relies on flow in hollow channels with silver nanoparticles/graphene modified paper electrode as the anodic and cathodic substrate, to implement self-powered sensitive carcinoembryonic antigen (CEA) detection. Glucose dehydrogenase (GDH)-gold nanoparticles bioconjugate modified with CEA acted as a biocatalyst for enhancing glucose oxidation in the bioanode, as well as the transducing enzyme for signaling magnification. Similarly, nanoporous PtNi/bilirubin oxidase (BOD) acted as a biocatalyst for enhancing O2 reduction in the biocathode. With an increase in the concentration of CEA, the amount of CEA-Au-GDH bioconjugate on bioanode decreases, thus leading to the lower output of the as-prepared BFC. This proposed BFC-based self-powered immunosensor for CEA possessed largely increased linear detection range from 1 pg mL(-1) to 0.5 μg mL(-)(1) with a detection limit of 0.7 pg mL(-)(1). The proposed BFC-based self-powered immunosensor shows high sensitivity, stability, and reproducibility and can become a promising platform for other protein detection.

摘要

一种无介体和无隔室的葡萄糖/O2酶生物燃料电池(BFC)被引入微流控纸基分析器件(μ-PADs)中,该器件依赖于中空通道内的流动,以银纳米粒子/石墨烯修饰的纸电极作为阳极和阴极基底,实现自供电的灵敏癌胚抗原(CEA)检测。载有 CEA 的葡萄糖脱氢酶(GDH)-金纳米粒子生物缀合物作为生物阳极中葡萄糖氧化的生物催化剂,以及信号放大的转导酶。同样,纳米多孔 PtNi/胆红素氧化酶(BOD)作为生物阴极中 O2还原的生物催化剂。随着 CEA 浓度的增加,生物阳极上 CEA-Au-GDH 生物缀合物的量减少,从而导致所制备的 BFC 的输出降低。这种基于 BFC 的自供电免疫传感器用于 CEA 的线性检测范围从 1 pg mL-1增加到 0.5 μg mL-1,检测限为 0.7 pg mL-1。所提出的基于 BFC 的自供电免疫传感器具有高灵敏度、稳定性和重现性,并且可以成为其他蛋白质检测的有前途的平台。

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