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On-chip integrated graphene aptasensor with portable readout for fast and label-free COVID-19 detection in virus transport medium

Graphene field-effect transistor (GFET) biosensors exhibit high sensitivity due to a large surface-to-volume ratio and the high sensitivity of the Fermi level to the presence of charged biomolecules near the surface. For most reported GFET biosensors, bulky external reference electrodes are used whi...

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Autores principales: Xu, Lizhou, Ramadan, Sami, Rosa, Bruno Gil, Zhang, Yuanzhou, Yin, Tianyi, Torres, Elias, Shaforost, Olena, Panagiotopoulos, Apostolos, Li, Bing, Kerherve, Gwilherm, Kim, Dong Kuk, Mattevi, Cecilia, Jiao, Long R., Petrov, Peter K., Klein, Norbert
Formato: Online Artículo Texto
Lenguaje:English
Publicado: RSC 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9280445/
https://www.ncbi.nlm.nih.gov/pubmed/35923775
http://dx.doi.org/10.1039/d2sd00076h
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author Xu, Lizhou
Ramadan, Sami
Rosa, Bruno Gil
Zhang, Yuanzhou
Yin, Tianyi
Torres, Elias
Shaforost, Olena
Panagiotopoulos, Apostolos
Li, Bing
Kerherve, Gwilherm
Kim, Dong Kuk
Mattevi, Cecilia
Jiao, Long R.
Petrov, Peter K.
Klein, Norbert
author_facet Xu, Lizhou
Ramadan, Sami
Rosa, Bruno Gil
Zhang, Yuanzhou
Yin, Tianyi
Torres, Elias
Shaforost, Olena
Panagiotopoulos, Apostolos
Li, Bing
Kerherve, Gwilherm
Kim, Dong Kuk
Mattevi, Cecilia
Jiao, Long R.
Petrov, Peter K.
Klein, Norbert
author_sort Xu, Lizhou
collection PubMed
description Graphene field-effect transistor (GFET) biosensors exhibit high sensitivity due to a large surface-to-volume ratio and the high sensitivity of the Fermi level to the presence of charged biomolecules near the surface. For most reported GFET biosensors, bulky external reference electrodes are used which prevent their full-scale chip integration and contribute to higher costs per test. In this study, GFET arrays with on-chip integrated liquid electrodes were employed for COVID-19 detection and functionalized with either antibody or aptamer to selectively bind the spike proteins of SARS-CoV-2. In the case of the aptamer-functionalized GFET (aptasensor, Apt-GFET), the limit-of-detection (LOD) achieved was about 10(3) particles per mL for virus-like particles (VLPs) in clinical transport medium, outperforming the Ab-GFET biosensor counterpart. In addition, the aptasensor achieved a LOD of 160 aM for COVID-19 neutralizing antibodies in serum. The sensors were found to be highly selective, fast (sample-to-result within minutes), and stable (low device-to-device signal variation; relative standard deviations below 0.5%). A home-built portable readout electronic unit was employed for simultaneous real-time measurements of 12 GFETs per chip. Our successful demonstration of a portable GFET biosensing platform has high potential for infectious disease detection and other health-care applications.
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spelling pubmed-92804452022-08-01 On-chip integrated graphene aptasensor with portable readout for fast and label-free COVID-19 detection in virus transport medium Xu, Lizhou Ramadan, Sami Rosa, Bruno Gil Zhang, Yuanzhou Yin, Tianyi Torres, Elias Shaforost, Olena Panagiotopoulos, Apostolos Li, Bing Kerherve, Gwilherm Kim, Dong Kuk Mattevi, Cecilia Jiao, Long R. Petrov, Peter K. Klein, Norbert Sens Diagn Chemistry Graphene field-effect transistor (GFET) biosensors exhibit high sensitivity due to a large surface-to-volume ratio and the high sensitivity of the Fermi level to the presence of charged biomolecules near the surface. For most reported GFET biosensors, bulky external reference electrodes are used which prevent their full-scale chip integration and contribute to higher costs per test. In this study, GFET arrays with on-chip integrated liquid electrodes were employed for COVID-19 detection and functionalized with either antibody or aptamer to selectively bind the spike proteins of SARS-CoV-2. In the case of the aptamer-functionalized GFET (aptasensor, Apt-GFET), the limit-of-detection (LOD) achieved was about 10(3) particles per mL for virus-like particles (VLPs) in clinical transport medium, outperforming the Ab-GFET biosensor counterpart. In addition, the aptasensor achieved a LOD of 160 aM for COVID-19 neutralizing antibodies in serum. The sensors were found to be highly selective, fast (sample-to-result within minutes), and stable (low device-to-device signal variation; relative standard deviations below 0.5%). A home-built portable readout electronic unit was employed for simultaneous real-time measurements of 12 GFETs per chip. Our successful demonstration of a portable GFET biosensing platform has high potential for infectious disease detection and other health-care applications. RSC 2022-06-13 /pmc/articles/PMC9280445/ /pubmed/35923775 http://dx.doi.org/10.1039/d2sd00076h Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Xu, Lizhou
Ramadan, Sami
Rosa, Bruno Gil
Zhang, Yuanzhou
Yin, Tianyi
Torres, Elias
Shaforost, Olena
Panagiotopoulos, Apostolos
Li, Bing
Kerherve, Gwilherm
Kim, Dong Kuk
Mattevi, Cecilia
Jiao, Long R.
Petrov, Peter K.
Klein, Norbert
On-chip integrated graphene aptasensor with portable readout for fast and label-free COVID-19 detection in virus transport medium
title On-chip integrated graphene aptasensor with portable readout for fast and label-free COVID-19 detection in virus transport medium
title_full On-chip integrated graphene aptasensor with portable readout for fast and label-free COVID-19 detection in virus transport medium
title_fullStr On-chip integrated graphene aptasensor with portable readout for fast and label-free COVID-19 detection in virus transport medium
title_full_unstemmed On-chip integrated graphene aptasensor with portable readout for fast and label-free COVID-19 detection in virus transport medium
title_short On-chip integrated graphene aptasensor with portable readout for fast and label-free COVID-19 detection in virus transport medium
title_sort on-chip integrated graphene aptasensor with portable readout for fast and label-free covid-19 detection in virus transport medium
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9280445/
https://www.ncbi.nlm.nih.gov/pubmed/35923775
http://dx.doi.org/10.1039/d2sd00076h
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