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基于适配体的技术在食源性病原体检测中的应用

Aptamer-Based Technologies in Foodborne Pathogen Detection.

作者信息

Teng Jun, Yuan Fang, Ye Yingwang, Zheng Lei, Yao Li, Xue Feng, Chen Wei, Li Baoguang

机构信息

College of Food Science and Engineering, Hefei University of Technology, Hefei China.

Animal Quarantine Laboratory, Jiangsu Entry-Exit Inspection and Quarantine Bureau, Nanjing China.

出版信息

Front Microbiol. 2016 Sep 12;7:1426. doi: 10.3389/fmicb.2016.01426. eCollection 2016.

Abstract

Aptamers are single stranded DNA or RNA ligands, which can be selected by a method called systematic evolution of ligands by exponential enrichment (SELEX); and they can specifically recognize and bind to their targets. These unique characteristics of aptamers offer great potentials in applications such as pathogen detection and biomolecular screening. Pathogen detection is the critical means in detecting and identifying the problems related to public health and food safety; and only the rapid, sensitive and efficient detection technologies can enable the users to make the accurate assessments on the risks of infections (humans and animals) or contaminations (foods and other commodities) caused by various pathogens. This article reviews the development in the field of the aptamer-based approaches for pathogen detection, including whole-cell SELEX and Genomic SELEX. Nowadays, a variety of aptamer-based biosensors have been developed for pathogen detection. Thus, in this review, we also cover the development in aptamer-based biosensors including optical biosensors for multiple pathogen detection by multiple-labeling or label-free models such as fluorescence detection and surface plasmon resonance, electrochemical biosensors and lateral chromatography test strips, and their applications in pathogen detection and biomolecular screening. While notable progress has been made in the field in the last decade, challenges or drawbacks in their applications such as pathogen detection and biomolecular screening remain to be overcome.

摘要

适配体是单链DNA或RNA配体,可通过一种称为指数富集配体系统进化(SELEX)的方法筛选得到;它们能够特异性识别并结合其靶标。适配体的这些独特特性在病原体检测和生物分子筛选等应用中具有巨大潜力。病原体检测是检测和识别与公共卫生和食品安全相关问题的关键手段;只有快速、灵敏且高效的检测技术才能让使用者对各种病原体引起的感染(人和动物)或污染(食品和其他商品)风险做出准确评估。本文综述了基于适配体的病原体检测方法领域的发展,包括全细胞SELEX和基因组SELEX。如今,已开发出多种用于病原体检测的基于适配体的生物传感器。因此,在本综述中,我们还涵盖了基于适配体的生物传感器的发展,包括用于通过多标记或无标记模型(如荧光检测和表面等离子体共振)进行多种病原体检测的光学生物传感器、电化学生物传感器和横向色谱试纸条,以及它们在病原体检测和生物分子筛选中的应用。尽管在过去十年该领域取得了显著进展,但在其应用(如病原体检测和生物分子筛选)中仍存在挑战或缺点有待克服。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b49/5018482/9589803eaba3/fmicb-07-01426-g001.jpg

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