Electrochemical and Optical Multi-Detection of Escherichia coli Through Magneto-Optic Nanoparticles: A Pencil-on-Paper Biosensor

detection suffers from slow analysis time and high costs, along with the need for specificity. While state-of-the-art electrochemical biosensors are cost-efficient and easy to implement, their sensitivity and analysis time still require improvement. In this work, we present a paper-based electrochem...

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Veröffentlicht in:Biosensors (Basel) 2024-12, Vol.14 (12), p.603
Hauptverfasser: Soysaldı, Furkan, Dincyurek Ekici, Derya, Soylu, Mehmet Çağrı, Mutlugun, Evren
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Sprache:eng
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Zusammenfassung:detection suffers from slow analysis time and high costs, along with the need for specificity. While state-of-the-art electrochemical biosensors are cost-efficient and easy to implement, their sensitivity and analysis time still require improvement. In this work, we present a paper-based electrochemical biosensor utilizing magnetic core-shell Fe O @CdSe/ZnS quantum dots (MQDs) to achieve fast detection, low cost, and high sensitivity. Using electrochemical impedance spectroscopy (EIS) as the detection technique, the biosensor achieved a limit of detection of 2.7 × 10 CFU/mL for bacteria across a concentration range of 10 -10 CFU/mL, with a relative standard deviation (RSD) of 3.5781%. From an optical perspective, as concentration increased steadily from 10 to 10 CFU/mL, quantum dot fluorescence showed over 60% lifetime quenching. This hybrid biosensor thus provides rapid, highly sensitive detection with a fast analysis time of 30 min. This study, which combines the detection advantages of electrochemical and optical biosensor systems in a graphite-based paper sensor for the first time, has the potential to meet the needs of point-of-care applications. It is thought that future studies that will aim to examine the performance of the production-optimized, portable, graphite-based sensor system on real food samples, environmental samples, and especially medical clinical samples will be promising.
ISSN:2079-6374
2079-6374
DOI:10.3390/bios14120603