Electronic Detection of DNA Hybridization by Coupling Organic Field-Effect Transistor-Based Sensors and Hairpin-Shaped Probes
In this paper, the electronic transduction of DNA hybridization is presented by coupling organic charge-modulated field-effect transistors (OCMFETs) and hairpin-shaped probes. These probes have shown interesting properties in terms of sensitivity and selectivity in other kinds of assays, in the form...
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doaj-19cd060e81e347a2978f50d85b3864012020-11-25T00:38:34ZengMDPI AGSensors1424-82202018-03-0118499010.3390/s18040990s18040990Electronic Detection of DNA Hybridization by Coupling Organic Field-Effect Transistor-Based Sensors and Hairpin-Shaped ProbesCorrado Napoli0Stefano Lai1Ambra Giannetti2Sara Tombelli3Francesco Baldini4Massimo Barbaro5Annalisa Bonfiglio6Department of Electrical and Electronic Engineering, Università di Cagliari, 09123 Cagliari, ItalyDepartment of Electrical and Electronic Engineering, Università di Cagliari, 09123 Cagliari, ItalyIstituto di Fisica Applicata “Nello Carrara”, Consiglio Nazionale delle Ricerche, 50019 Sesto Fiorentino, ItalyIstituto di Fisica Applicata “Nello Carrara”, Consiglio Nazionale delle Ricerche, 50019 Sesto Fiorentino, ItalyIstituto di Fisica Applicata “Nello Carrara”, Consiglio Nazionale delle Ricerche, 50019 Sesto Fiorentino, ItalyDepartment of Electrical and Electronic Engineering, Università di Cagliari, 09123 Cagliari, ItalyDepartment of Electrical and Electronic Engineering, Università di Cagliari, 09123 Cagliari, ItalyIn this paper, the electronic transduction of DNA hybridization is presented by coupling organic charge-modulated field-effect transistors (OCMFETs) and hairpin-shaped probes. These probes have shown interesting properties in terms of sensitivity and selectivity in other kinds of assays, in the form of molecular beacons (MBs). Their integration with organic-transistor based sensors, never explored before, paves the way to a new class of low-cost, easy-to-use, and portable genetic sensors with enhanced performances. Thanks to the peculiar characteristics of the employed sensor, measurements can be performed at relatively high ionic strengths, thus optimizing the probes’ functionality without affecting the detection ability of the device. A complete electrical characterization of the sensor is reported, including calibration with different target concentrations in the measurement environment and selectivity evaluation. In particular, DNA hybridization detection for target concentration as low as 100 pM is demonstrated.http://www.mdpi.com/1424-8220/18/4/990organic field-effect transistorsDNA hybridization detectionhairpin-shaped oligonucleotideselectronic sensors |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Corrado Napoli Stefano Lai Ambra Giannetti Sara Tombelli Francesco Baldini Massimo Barbaro Annalisa Bonfiglio |
spellingShingle |
Corrado Napoli Stefano Lai Ambra Giannetti Sara Tombelli Francesco Baldini Massimo Barbaro Annalisa Bonfiglio Electronic Detection of DNA Hybridization by Coupling Organic Field-Effect Transistor-Based Sensors and Hairpin-Shaped Probes Sensors organic field-effect transistors DNA hybridization detection hairpin-shaped oligonucleotides electronic sensors |
author_facet |
Corrado Napoli Stefano Lai Ambra Giannetti Sara Tombelli Francesco Baldini Massimo Barbaro Annalisa Bonfiglio |
author_sort |
Corrado Napoli |
title |
Electronic Detection of DNA Hybridization by Coupling Organic Field-Effect Transistor-Based Sensors and Hairpin-Shaped Probes |
title_short |
Electronic Detection of DNA Hybridization by Coupling Organic Field-Effect Transistor-Based Sensors and Hairpin-Shaped Probes |
title_full |
Electronic Detection of DNA Hybridization by Coupling Organic Field-Effect Transistor-Based Sensors and Hairpin-Shaped Probes |
title_fullStr |
Electronic Detection of DNA Hybridization by Coupling Organic Field-Effect Transistor-Based Sensors and Hairpin-Shaped Probes |
title_full_unstemmed |
Electronic Detection of DNA Hybridization by Coupling Organic Field-Effect Transistor-Based Sensors and Hairpin-Shaped Probes |
title_sort |
electronic detection of dna hybridization by coupling organic field-effect transistor-based sensors and hairpin-shaped probes |
publisher |
MDPI AG |
series |
Sensors |
issn |
1424-8220 |
publishDate |
2018-03-01 |
description |
In this paper, the electronic transduction of DNA hybridization is presented by coupling organic charge-modulated field-effect transistors (OCMFETs) and hairpin-shaped probes. These probes have shown interesting properties in terms of sensitivity and selectivity in other kinds of assays, in the form of molecular beacons (MBs). Their integration with organic-transistor based sensors, never explored before, paves the way to a new class of low-cost, easy-to-use, and portable genetic sensors with enhanced performances. Thanks to the peculiar characteristics of the employed sensor, measurements can be performed at relatively high ionic strengths, thus optimizing the probes’ functionality without affecting the detection ability of the device. A complete electrical characterization of the sensor is reported, including calibration with different target concentrations in the measurement environment and selectivity evaluation. In particular, DNA hybridization detection for target concentration as low as 100 pM is demonstrated. |
topic |
organic field-effect transistors DNA hybridization detection hairpin-shaped oligonucleotides electronic sensors |
url |
http://www.mdpi.com/1424-8220/18/4/990 |
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