Flexible nanopillar-based electrochemical sensors for genetic detection of foodborne pathogens

纳米柱 材料科学 生物传感器 纳米技术 食源性病原体 电极 纳米结构 化学 遗传学 生物 物理化学 细菌 单核细胞增生李斯特菌
作者
Yoo Min Park,Sun‐Young Lim,Soon Woo Jeong,Younseong Song,Nam Ho Bae,Seok Bok Hong,Bong Gill Choi,Seok Jae Lee,Kyoung G. Lee
出处
期刊:Nano Convergence [Springer Nature]
卷期号:5 (1): 15-15 被引量:43
标识
DOI:10.1186/s40580-018-0147-0
摘要

Flexible and highly ordered nanopillar arrayed electrodes have brought great interest for many electrochemical applications, especially to the biosensors, because of its unique mechanical and topological properties. Herein, we report an advanced method to fabricate highly ordered nanopillar electrodes produced by soft-/photo-lithography and metal evaporation. The highly ordered nanopillar array exhibited the superior electrochemical and mechanical properties in regard with the wide space to response with electrolytes, enabling the sensitive analysis. As-prepared gold and silver electrodes on nanopillar arrays exhibit great and stable electrochemical performance to detect the amplified gene from foodborne pathogen of Escherichia coli O157:H7. Additionally, lightweight, flexible, and USB-connectable nanopillar-based electrochemical sensor platform improves the connectivity, portability, and sensitivity. Moreover, we successfully confirm the performance of genetic analysis using real food, specially designed intercalator, and amplified gene from foodborne pathogens with high reproducibility (6% standard deviation) and sensitivity (10 × 1.01 CFU) within 25 s based on the square wave voltammetry principle. This study confirmed excellent mechanical and chemical characteristics of nanopillar electrodes have a great and considerable electrochemical activity to apply as genetic biosensor platform in the fields of point-of-care testing (POCT).
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