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Updated: Sep 19, 2025

Bacterial Detection & Identification Using Electrochemical Sensors
Published on: April 23, 2013
Bipolar Electrochemiluminescence Detection of Ampicillin Resistance Genes via HRCA-Mediated Precipitation-Induced
Bifang Yang1, Weiqiang Yang1, Fan Chen2
1Fujian Provincial Key Laboratory of Modern Analytical Science and Separation Technology, Fujian Provincial Key Laboratory of Pollution Monitoring and Control, College of Chemistry, Chemical Engineering and Environment, Minnan Normal University, Zhangzhou 363000, China.
Abstract:
Antibiotic resistance genes pose a significant threat to public health, highlighting the urgent need for rapid and sensitive detection methods. In this study, a bipolar electrochemiluminescence (BPE-ECL) sensing strategy was developed for detecting ampicillin resistance genes (ARGAMP) based on conductivity variation induced by the precipitation reaction from hyperbranched rolling circle amplification (HRCA). Initiated by ARGAMP, HRCA generates ultralong DNA chains with pyrophosphate as a byproduct. Since solution conductivity is ion-dependent, the subsequent pyrophosphate-magnesium precipitation consumes free magnesium ions, significantly altering the solution conductivity within the sensing cell. This change directly modulates ECL intensity in the reporting cell due to the charge balance of BPE. The proposed BPE-ECL biosensing platform demonstrates the selective and sensitive detection of ARGAMP in the range of 1 pM to 1 μM, with a low limit of detection (LOD) of 0.73 pM. Furthermore, the platform was successfully applied to detect ARGAMP extracted from Escherichia coli plasmid, with recovery tests demonstrating its potential application in real environmental samples.
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