首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >An electrochemical biosensor for rapid detection of E. coli O157:H7 with highly efficient bifunctional glucose oxidase-polydopamine nanocomposites and Prussian blue modified screen-printed interdigitated electrodes
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An electrochemical biosensor for rapid detection of E. coli O157:H7 with highly efficient bifunctional glucose oxidase-polydopamine nanocomposites and Prussian blue modified screen-printed interdigitated electrodes

机译:用高效双功能葡萄糖氧化酶-聚多巴胺纳米复合材料和普鲁士蓝修饰丝网印刷叉指电极快速检测大肠杆菌O157:H7的电化学生物传感器

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摘要

The presence of pathogenic bacteria in foods has always been a great threat to the wellbeing of people and the revenue of food manufacturers. Therefore, the demand for advanced detection methods that can sensitively and rapidly detect these pathogens has been of great importance. This study reports an electrochemical biosensor for rapid detection of E. coli O157:H7 with the integration of bifunctional glucose oxidase (GOx)-polydopamine (PDA) based polymeric nanocomposites (PMNCs) and Prussian blue (PB) modified screen-printed interdigitated microelectrodes (SP-IDMEs). The core-shell magnetic beads (MBs)-GOx@PDA PMNCs were first synthesized by the self-polymerization of dopamine (DA). Gold nanoparticles (AuNPs) were dispersed on the surface of PMNCs through biochemical synthesis to achieve further highly efficient adsorption of antibodies (ABs) and GOx. The final product ABs/GOx(ext)/AuNPs/MBs-GOx@PDA PMNCs served as the carrier to separate target bacteria from food matrices as well as the amplifier for electrochemical measurement. The unbound PMNCs were separated by a filtration step and transferred into glucose solution to allow the enzymatic reaction to occur. The change of the current response was measured with an electrochemical detector using PB-modified SP-IDMEs. The constructed biosensor has been proven to be able to detect E. coli O157:H7 with the detection limit of 10(2) cfu ml(-1). The bifunctional PMNCs contain a high load of enzyme and can optimally utilize the binding sites on bacterial cells, which efficiently amplify the signals for measurement. The biosensor in this study exhibited good specificity, reproducibility, and stability and is expected to have a great impact on applications in the detection of foodborne pathogens.
机译:食品中的致病细菌一直对人们的福祉和食品生产商的收入构成巨大威胁。因此,对能够灵敏且快速地检测这些病原体的先进检测方法的需求变得非常重要。这项研究报告了一种电化学生物传感器,它结合了基于双功能葡萄糖氧化酶(GOx)-聚多巴胺(PDA)的聚合物纳米复合材料(PMNC)和普鲁士蓝(PB)修饰的丝网印刷叉指微电极( SP-IDME)。首先通过多巴胺(DA)的自聚合合成核-壳磁珠(MBs)-GOx @ PDA PMNC。金纳米颗粒(AuNPs)通过生化合成分散在PMNC的表面上,以实现抗体(ABs)和GOx的进一步高效吸附。最终产品ABs / GOx(ext)/ AuNPs / MBs-GOx @ PDA PMNC用作将目标细菌从食品基质中分离出来的载体,以及用于电化学测量的放大器。未结合的PMNC通过过滤步骤分离,并转移至葡萄糖溶液中以进行酶促反应。使用PB-修饰的SP-IDME,通过电化学检测器测量电流响应的变化。事实证明,构建的生物传感器能够以10(2)cfu ml(-1)的检出限检测E. coli O157:H7。双功能PMNC含有大量酶,可以最佳利用细菌细胞上的结合位点,从而有效地放大了测量信号。这项研究中的生物传感器具有良好的特异性,可重复性和稳定性,并有望对食源性病原体检测中的应用产生巨大影响。

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