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Biosens Bioelectron ; 264: 116642, 2024 Nov 15.
Article in English | MEDLINE | ID: mdl-39126905

ABSTRACT

Real-time, high-frequency measurements of pharmaceuticals, metabolites, exogenous antigens, and other biomolecules in biological samples can provide critical information for health management and clinical diagnosis. Electrochemical aptamer-based (EAB) sensor is a promising analytical technique capable of achieving these goals. However, the issues of insufficient sensitivity, frequent calibration and lack of adapted portable electrochemical device limit its practical application in immediate detection. In response we have fabricated an on-chip-integrated, cold-hot Janus EAB (J-EAB) sensor based on the thermoelectric coolers (TECs). Attributed to the Peltier effect, the enhanced/suppressed current response can be generated simultaneously on cold/hot sides of the J-EAB sensor. The ratio of the current responses on the cold and hot sides was used as the detection signal, enabling rapid on-site, calibration-free determination of small molecules (procaine) as well as macromolecules (SARS-CoV-2 spike protein) in single step, with detection limits of 1 µM and 10 nM, respectively. We have further demonstrated that the J-EAB sensor is effective in improving the ease and usability of the actual detection process, and is expected to provide a universal, low-cost, fast and easy potential analytical tool for other clinically important biomarkers, drugs or pharmaceutical small molecules.


Subject(s)
Aptamers, Nucleotide , Biosensing Techniques , Electrochemical Techniques , Limit of Detection , SARS-CoV-2 , Aptamers, Nucleotide/chemistry , Biosensing Techniques/instrumentation , Biosensing Techniques/methods , Electrochemical Techniques/methods , Electrochemical Techniques/instrumentation , SARS-CoV-2/isolation & purification , Humans , Spike Glycoprotein, Coronavirus/analysis , COVID-19/diagnosis , Equipment Design , Calibration , Betacoronavirus/isolation & purification , Cold Temperature , Coronavirus Infections/diagnosis , Coronavirus Infections/virology , Pandemics
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