Construction and Application of Graphene Oxide-Bovine Serum Albumin Modified Extended Gate Field Effect Transistor Chiral Sensor

Chirality is an essential natural attribute of organisms. Chiral molecules exhibit differences in biochemical processes, pharmacodynamics, and toxicological properties, and their enantioselective recognition plays an important role in explaining life science processes and guiding drug design. Herein...

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Main Authors: Le Li, Xiaofei Ma, Yin Xiao, Yong Wang
Format: Article
Language:English
Published: MDPI AG 2021-06-01
Series:Sensors
Subjects:
Online Access:https://www.mdpi.com/1424-8220/21/11/3921
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spelling doaj-5ca1a715493442d79c0d1eb33b053b5e2021-06-30T23:29:36ZengMDPI AGSensors1424-82202021-06-01213921392110.3390/s21113921Construction and Application of Graphene Oxide-Bovine Serum Albumin Modified Extended Gate Field Effect Transistor Chiral SensorLe Li0Xiaofei Ma1Yin Xiao2Yong Wang3Tianjin Key Laboratory of Molecular Optoelectronic Science, Department of Chemistry, School of Science, Tianjin University, Tianjin 300072, ChinaTianjin Key Laboratory of Molecular Optoelectronic Science, Department of Chemistry, School of Science, Tianjin University, Tianjin 300072, ChinaSchool of Chemical Engineering and Technology, Tianjin Engineering Research Center of Functional Fine Chemicals, Tianjin University, Tianjin 300072, ChinaTianjin Key Laboratory of Molecular Optoelectronic Science, Department of Chemistry, School of Science, Tianjin University, Tianjin 300072, ChinaChirality is an essential natural attribute of organisms. Chiral molecules exhibit differences in biochemical processes, pharmacodynamics, and toxicological properties, and their enantioselective recognition plays an important role in explaining life science processes and guiding drug design. Herein, we developed an ultra-sensitive enantiomer recognition platform based on an extended-gate metal-oxide semiconductor field-effect-transistor (Nafion–GO@BSA–EG-MOSFET) that achieved effective chiral resolution of ultra-sensitive Lysine (Lys) and α-Methylbenzylamine (α-Met) enantiodiscrimination at the femtomole level. Bovine serum albumin (BSA) was immobilized on the surface of graphene oxide (GO) through amide bond coupling to prepare the GO@BSA complex. GO@BSA was drop-cast on deposited Au surfaces with a Nafion solution to afford the extended-gate sensing unit. Effective recognition of chiral enantiomers of mandelic acid (MA), tartaric acid (TA), tryptophan (Trp), Lys and α-Met was realized. Moreover, the introduction of GO reduced non-specific adsorption, and the chiral resolution concentration of α-Met reached the level of picomole in a 5-fold diluted fetal bovine serum (FBS). Finally, the chiral recognition mechanism of the as-fabricated sensor was proposed.https://www.mdpi.com/1424-8220/21/11/3921extended-gate field effect transistorbovine serum albumingraphene oxidechiral sensing
collection DOAJ
language English
format Article
sources DOAJ
author Le Li
Xiaofei Ma
Yin Xiao
Yong Wang
spellingShingle Le Li
Xiaofei Ma
Yin Xiao
Yong Wang
Construction and Application of Graphene Oxide-Bovine Serum Albumin Modified Extended Gate Field Effect Transistor Chiral Sensor
Sensors
extended-gate field effect transistor
bovine serum albumin
graphene oxide
chiral sensing
author_facet Le Li
Xiaofei Ma
Yin Xiao
Yong Wang
author_sort Le Li
title Construction and Application of Graphene Oxide-Bovine Serum Albumin Modified Extended Gate Field Effect Transistor Chiral Sensor
title_short Construction and Application of Graphene Oxide-Bovine Serum Albumin Modified Extended Gate Field Effect Transistor Chiral Sensor
title_full Construction and Application of Graphene Oxide-Bovine Serum Albumin Modified Extended Gate Field Effect Transistor Chiral Sensor
title_fullStr Construction and Application of Graphene Oxide-Bovine Serum Albumin Modified Extended Gate Field Effect Transistor Chiral Sensor
title_full_unstemmed Construction and Application of Graphene Oxide-Bovine Serum Albumin Modified Extended Gate Field Effect Transistor Chiral Sensor
title_sort construction and application of graphene oxide-bovine serum albumin modified extended gate field effect transistor chiral sensor
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2021-06-01
description Chirality is an essential natural attribute of organisms. Chiral molecules exhibit differences in biochemical processes, pharmacodynamics, and toxicological properties, and their enantioselective recognition plays an important role in explaining life science processes and guiding drug design. Herein, we developed an ultra-sensitive enantiomer recognition platform based on an extended-gate metal-oxide semiconductor field-effect-transistor (Nafion–GO@BSA–EG-MOSFET) that achieved effective chiral resolution of ultra-sensitive Lysine (Lys) and α-Methylbenzylamine (α-Met) enantiodiscrimination at the femtomole level. Bovine serum albumin (BSA) was immobilized on the surface of graphene oxide (GO) through amide bond coupling to prepare the GO@BSA complex. GO@BSA was drop-cast on deposited Au surfaces with a Nafion solution to afford the extended-gate sensing unit. Effective recognition of chiral enantiomers of mandelic acid (MA), tartaric acid (TA), tryptophan (Trp), Lys and α-Met was realized. Moreover, the introduction of GO reduced non-specific adsorption, and the chiral resolution concentration of α-Met reached the level of picomole in a 5-fold diluted fetal bovine serum (FBS). Finally, the chiral recognition mechanism of the as-fabricated sensor was proposed.
topic extended-gate field effect transistor
bovine serum albumin
graphene oxide
chiral sensing
url https://www.mdpi.com/1424-8220/21/11/3921
work_keys_str_mv AT leli constructionandapplicationofgrapheneoxidebovineserumalbuminmodifiedextendedgatefieldeffecttransistorchiralsensor
AT xiaofeima constructionandapplicationofgrapheneoxidebovineserumalbuminmodifiedextendedgatefieldeffecttransistorchiralsensor
AT yinxiao constructionandapplicationofgrapheneoxidebovineserumalbuminmodifiedextendedgatefieldeffecttransistorchiralsensor
AT yongwang constructionandapplicationofgrapheneoxidebovineserumalbuminmodifiedextendedgatefieldeffecttransistorchiralsensor
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