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The Application of Hybridization Chain Reaction in the Detection of Foodborne Pathogens

Jinbin Zhao, Yulan Guo, Xueer Ma, Shitong Liu, Chunmeng Sun, Ming Cai, Yuyang Chi, Kun Xu

2023Foods14 citationsDOIOpen Access PDF

Abstract

Today, with the globalization of the food trade progressing, food safety continues to warrant widespread attention. Foodborne diseases caused by contaminated food, including foodborne pathogens, seriously threaten public health and the economy. This has led to the development of more sensitive and accurate methods for detecting pathogenic bacteria. Many signal amplification techniques have been used to improve the sensitivity of foodborne pathogen detection. Among them, hybridization chain reaction (HCR), an isothermal nucleic acid hybridization signal amplification technique, has received increasing attention due to its enzyme-free and isothermal characteristics, and pathogenic bacteria detection methods using HCR for signal amplification have experienced rapid development in the last five years. In this review, we first describe the development of detection technologies for food contaminants represented by pathogens and introduce the fundamental principles, classifications, and characteristics of HCR. Furthermore, we highlight the application of various biosensors based on HCR nucleic acid amplification technology in detecting foodborne pathogens. Lastly, we summarize and offer insights into the prospects of HCR technology and its application in pathogen detection.

Topics & Concepts

Loop-mediated isothermal amplificationFoodborne pathogenFood safetyNucleic acidPathogenBiologyBiotechnologyNucleic acid detectionPathogenic bacteriaPolymerase chain reactionComputational biologyBiochemical engineeringMicrobiologyBacteriaFood scienceGeneDNAGeneticsEngineeringListeria monocytogenesAdvanced biosensing and bioanalysis techniquesBiosensors and Analytical DetectionBacteriophages and microbial interactions
The Application of Hybridization Chain Reaction in the Detection of Foodborne Pathogens | Litcius