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Detection of Influenza Virus Using a SOI-Nanoribbon Chip, Based on an N-Type Field-Effect Transistor

The detection of influenza A virions with a nanoribbon detector (NR detector) has been demonstrated. Chips for the detector have been fabricated based on silicon-on-insulator nanoribbon structures (SOI nanoribbon chip), using a complementary metal-oxide-semiconductor (CMOS)-compatible technology—by...

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Autores principales: Malsagova, Kristina A., Pleshakova, Tatyana O., Kozlov, Andrey F., Galiullin, Rafael A., Popov, Vladimir P., Tikhonenko, Fedor V., Glukhov, Alexander V., Ziborov, Vadim S., Shumov, Ivan D., Petrov, Oleg F., Generalov, Vladimir M., Cheremiskina, Anastasia A., Durumanov, Alexander G., Agafonov, Alexander P., Gavrilova, Elena V., Maksyutov, Rinat A., Safatov, Alexander S., Nikitaev, Valentin G., Pronichev, Alexander N., Konev, Vladimir A., Archakov, Alexander I., Ivanov, Yuri D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8069153/
https://www.ncbi.nlm.nih.gov/pubmed/33921281
http://dx.doi.org/10.3390/bios11040119
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author Malsagova, Kristina A.
Pleshakova, Tatyana O.
Kozlov, Andrey F.
Galiullin, Rafael A.
Popov, Vladimir P.
Tikhonenko, Fedor V.
Glukhov, Alexander V.
Ziborov, Vadim S.
Shumov, Ivan D.
Petrov, Oleg F.
Generalov, Vladimir M.
Cheremiskina, Anastasia A.
Durumanov, Alexander G.
Agafonov, Alexander P.
Gavrilova, Elena V.
Maksyutov, Rinat A.
Safatov, Alexander S.
Nikitaev, Valentin G.
Pronichev, Alexander N.
Konev, Vladimir A.
Archakov, Alexander I.
Ivanov, Yuri D.
author_facet Malsagova, Kristina A.
Pleshakova, Tatyana O.
Kozlov, Andrey F.
Galiullin, Rafael A.
Popov, Vladimir P.
Tikhonenko, Fedor V.
Glukhov, Alexander V.
Ziborov, Vadim S.
Shumov, Ivan D.
Petrov, Oleg F.
Generalov, Vladimir M.
Cheremiskina, Anastasia A.
Durumanov, Alexander G.
Agafonov, Alexander P.
Gavrilova, Elena V.
Maksyutov, Rinat A.
Safatov, Alexander S.
Nikitaev, Valentin G.
Pronichev, Alexander N.
Konev, Vladimir A.
Archakov, Alexander I.
Ivanov, Yuri D.
author_sort Malsagova, Kristina A.
collection PubMed
description The detection of influenza A virions with a nanoribbon detector (NR detector) has been demonstrated. Chips for the detector have been fabricated based on silicon-on-insulator nanoribbon structures (SOI nanoribbon chip), using a complementary metal-oxide-semiconductor (CMOS)-compatible technology—by means of gas-phase etching and standard optical photolithography. The surface of the SOI nanoribbon chip contains a matrix of 10 nanoribbon (NR) sensor elements. SOI nanoribbon chips of n-type conductance have been used for this study. For biospecific detection of target particles, antibodies against influenza virus have been covalently immobilized onto NRs. Influenza A virus detection was performed by real-time registration of the source-drain current through the NRs. The detection of the target viral particles was carried out in buffer solutions at the target particles concentration within the range from 10(7) to 10(3) viral particles per milliliter (VP/mL). The lowest detectable concentration of the target viral particles was 6 × 10(−16) M (corresponding to 10(4) VP/mL). The use of solutions containing ~10(9) to 10(10) VP/mL resulted in saturation of the sensor surface with the target virions. In the saturation mode, detection was impossible.
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spelling pubmed-80691532021-04-26 Detection of Influenza Virus Using a SOI-Nanoribbon Chip, Based on an N-Type Field-Effect Transistor Malsagova, Kristina A. Pleshakova, Tatyana O. Kozlov, Andrey F. Galiullin, Rafael A. Popov, Vladimir P. Tikhonenko, Fedor V. Glukhov, Alexander V. Ziborov, Vadim S. Shumov, Ivan D. Petrov, Oleg F. Generalov, Vladimir M. Cheremiskina, Anastasia A. Durumanov, Alexander G. Agafonov, Alexander P. Gavrilova, Elena V. Maksyutov, Rinat A. Safatov, Alexander S. Nikitaev, Valentin G. Pronichev, Alexander N. Konev, Vladimir A. Archakov, Alexander I. Ivanov, Yuri D. Biosensors (Basel) Article The detection of influenza A virions with a nanoribbon detector (NR detector) has been demonstrated. Chips for the detector have been fabricated based on silicon-on-insulator nanoribbon structures (SOI nanoribbon chip), using a complementary metal-oxide-semiconductor (CMOS)-compatible technology—by means of gas-phase etching and standard optical photolithography. The surface of the SOI nanoribbon chip contains a matrix of 10 nanoribbon (NR) sensor elements. SOI nanoribbon chips of n-type conductance have been used for this study. For biospecific detection of target particles, antibodies against influenza virus have been covalently immobilized onto NRs. Influenza A virus detection was performed by real-time registration of the source-drain current through the NRs. The detection of the target viral particles was carried out in buffer solutions at the target particles concentration within the range from 10(7) to 10(3) viral particles per milliliter (VP/mL). The lowest detectable concentration of the target viral particles was 6 × 10(−16) M (corresponding to 10(4) VP/mL). The use of solutions containing ~10(9) to 10(10) VP/mL resulted in saturation of the sensor surface with the target virions. In the saturation mode, detection was impossible. MDPI 2021-04-12 /pmc/articles/PMC8069153/ /pubmed/33921281 http://dx.doi.org/10.3390/bios11040119 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Malsagova, Kristina A.
Pleshakova, Tatyana O.
Kozlov, Andrey F.
Galiullin, Rafael A.
Popov, Vladimir P.
Tikhonenko, Fedor V.
Glukhov, Alexander V.
Ziborov, Vadim S.
Shumov, Ivan D.
Petrov, Oleg F.
Generalov, Vladimir M.
Cheremiskina, Anastasia A.
Durumanov, Alexander G.
Agafonov, Alexander P.
Gavrilova, Elena V.
Maksyutov, Rinat A.
Safatov, Alexander S.
Nikitaev, Valentin G.
Pronichev, Alexander N.
Konev, Vladimir A.
Archakov, Alexander I.
Ivanov, Yuri D.
Detection of Influenza Virus Using a SOI-Nanoribbon Chip, Based on an N-Type Field-Effect Transistor
title Detection of Influenza Virus Using a SOI-Nanoribbon Chip, Based on an N-Type Field-Effect Transistor
title_full Detection of Influenza Virus Using a SOI-Nanoribbon Chip, Based on an N-Type Field-Effect Transistor
title_fullStr Detection of Influenza Virus Using a SOI-Nanoribbon Chip, Based on an N-Type Field-Effect Transistor
title_full_unstemmed Detection of Influenza Virus Using a SOI-Nanoribbon Chip, Based on an N-Type Field-Effect Transistor
title_short Detection of Influenza Virus Using a SOI-Nanoribbon Chip, Based on an N-Type Field-Effect Transistor
title_sort detection of influenza virus using a soi-nanoribbon chip, based on an n-type field-effect transistor
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8069153/
https://www.ncbi.nlm.nih.gov/pubmed/33921281
http://dx.doi.org/10.3390/bios11040119
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