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电化学 DNA 生物传感器检测食源性病原体的研究综述。

Review of Electrochemical DNA Biosensors for Detecting Food Borne Pathogens.

机构信息

College of Food Science and Technology, Hebei Agricultural University, Baoding 071001, China.

College of Science and Technology, Hebei Agricultural University, Cangzhou 061100, China.

出版信息

Sensors (Basel). 2019 Nov 12;19(22):4916. doi: 10.3390/s19224916.

Abstract

The vital importance of rapid and accurate detection of food borne pathogens has driven the development of biosensor to prevent food borne illness outbreaks. Electrochemical DNA biosensors offer such merits as rapid response, high sensitivity, low cost, and ease of use. This review covers the following three aspects: food borne pathogens and conventional detection methods, the design and fabrication of electrochemical DNA biosensors and several techniques for improving sensitivity of biosensors. We highlight the main bioreceptors and immobilizing methods on sensing interface, electrochemical techniques, electrochemical indicators, nanotechnology, and nucleic acid-based amplification. Finally, in view of the existing shortcomings of electrochemical DNA biosensors in the field of food borne pathogen detection, we also predict and prospect future research focuses from the following five aspects: specific bioreceptors (improving specificity), nanomaterials (enhancing sensitivity), microfluidic chip technology (realizing automate operation), paper-based biosensors (reducing detection cost), and smartphones or other mobile devices (simplifying signal reading devices).

摘要

快速准确地检测食源性病原体至关重要,这推动了生物传感器的发展,以防止食源性疾病的爆发。电化学 DNA 生物传感器具有快速响应、高灵敏度、低成本和易于使用等优点。本综述涵盖以下三个方面:食源性病原体和常规检测方法、电化学 DNA 生物传感器的设计和制造以及几种提高生物传感器灵敏度的技术。我们重点介绍了传感界面上的主要生物受体和固定方法、电化学技术、电化学指示剂、纳米技术和基于核酸的扩增。最后,针对电化学 DNA 生物传感器在食源性病原体检测领域存在的现有缺点,我们还从以下五个方面预测和展望未来的研究重点:特定的生物受体(提高特异性)、纳米材料(提高灵敏度)、微流控芯片技术(实现自动化操作)、纸基生物传感器(降低检测成本)和智能手机或其他移动设备(简化信号读取设备)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c1b3/6891683/646b3546faa9/sensors-19-04916-g001.jpg

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