Aptameric Recognition-Modulated Electroactivity of Poly(4-Styrenesolfonic Acid)-Doped Polyaniline Films for Single-Shot Detection of Tetrodotoxin

The work being reported is the first electrochemical sensor for tetrodotoxin (TTX). It was developed on a glassy carbon electrodes (C) that was modified with poly(4-styrenesolfonic acid)-doped polyaniline film (PANI/PSSA). An amine-end functionalized TTX-binding aptamer, 5′-NH2-AAAAATTTCACACGGGTGCC...

Full description

Bibliographic Details
Main Authors: Gertrude Fomo, Tesfaye T. Waryo, Christopher E. Sunday, Abd A. Baleg, Priscilla G. Baker, Emmanuel I. Iwuoha
Format: Article
Language:English
Published: MDPI AG 2015-09-01
Series:Sensors
Subjects:
Online Access:http://www.mdpi.com/1424-8220/15/9/22547
id doaj-e3acf2d7b1874e75866874f2ce1a1897
record_format Article
spelling doaj-e3acf2d7b1874e75866874f2ce1a18972020-11-24T23:56:41ZengMDPI AGSensors1424-82202015-09-01159225472256010.3390/s150922547s150922547Aptameric Recognition-Modulated Electroactivity of Poly(4-Styrenesolfonic Acid)-Doped Polyaniline Films for Single-Shot Detection of TetrodotoxinGertrude Fomo0Tesfaye T. Waryo1Christopher E. Sunday2Abd A. Baleg3Priscilla G. Baker4Emmanuel I. Iwuoha5SensorLab, Chemistry Department, University of the Western Cape, P. Bag X17, Bellville, Cape Town 7535, South AfricaSensorLab, Chemistry Department, University of the Western Cape, P. Bag X17, Bellville, Cape Town 7535, South AfricaSensorLab, Chemistry Department, University of the Western Cape, P. Bag X17, Bellville, Cape Town 7535, South AfricaSensorLab, Chemistry Department, University of the Western Cape, P. Bag X17, Bellville, Cape Town 7535, South AfricaSensorLab, Chemistry Department, University of the Western Cape, P. Bag X17, Bellville, Cape Town 7535, South AfricaSensorLab, Chemistry Department, University of the Western Cape, P. Bag X17, Bellville, Cape Town 7535, South AfricaThe work being reported is the first electrochemical sensor for tetrodotoxin (TTX). It was developed on a glassy carbon electrodes (C) that was modified with poly(4-styrenesolfonic acid)-doped polyaniline film (PANI/PSSA). An amine-end functionalized TTX-binding aptamer, 5′-NH2-AAAAATTTCACACGGGTGCCTCGGCTGTCC-3′ (NH2-Apt), was grafted via covalent glutaraldehyde (glu) cross-linking. The resulting aptasensor (C//PANI+/PSSA-glu-NH2-Apt) was interrogated by cyclic voltammetry (CV) and electrochemical impedance spectroscopy (EIS) in sodium acetate buffer (NaOAc, pH 4.8) before and after 30 min incubation in standard TTX solutions. Both CV and EIS results confirmed that the binding of the analyte to the immobilized aptamer modulated the electrochemical properties of the sensor: particularly the charge transfer resistance (Rct) of the PANI+/PSSA film, which served as a signal reporter. Based on the Rct calibration curve of the TTX aptasensor, the values of the dynamic linear range (DLR), sensitivity and limit of detection (LOD) of the sensor were determined to be 0.23–1.07 ng·mL−1 TTX, 134.88 ± 11.42 Ω·ng·mL−1 and 0.199 ng·mL−1, respectively. Further studies are being planned to improve the DLR as well as to evaluate selectivity and matrix effects in real samples.http://www.mdpi.com/1424-8220/15/9/22547tetrodotoxin sensoraptamerpolyanilinepuffer fish
collection DOAJ
language English
format Article
sources DOAJ
author Gertrude Fomo
Tesfaye T. Waryo
Christopher E. Sunday
Abd A. Baleg
Priscilla G. Baker
Emmanuel I. Iwuoha
spellingShingle Gertrude Fomo
Tesfaye T. Waryo
Christopher E. Sunday
Abd A. Baleg
Priscilla G. Baker
Emmanuel I. Iwuoha
Aptameric Recognition-Modulated Electroactivity of Poly(4-Styrenesolfonic Acid)-Doped Polyaniline Films for Single-Shot Detection of Tetrodotoxin
Sensors
tetrodotoxin sensor
aptamer
polyaniline
puffer fish
author_facet Gertrude Fomo
Tesfaye T. Waryo
Christopher E. Sunday
Abd A. Baleg
Priscilla G. Baker
Emmanuel I. Iwuoha
author_sort Gertrude Fomo
title Aptameric Recognition-Modulated Electroactivity of Poly(4-Styrenesolfonic Acid)-Doped Polyaniline Films for Single-Shot Detection of Tetrodotoxin
title_short Aptameric Recognition-Modulated Electroactivity of Poly(4-Styrenesolfonic Acid)-Doped Polyaniline Films for Single-Shot Detection of Tetrodotoxin
title_full Aptameric Recognition-Modulated Electroactivity of Poly(4-Styrenesolfonic Acid)-Doped Polyaniline Films for Single-Shot Detection of Tetrodotoxin
title_fullStr Aptameric Recognition-Modulated Electroactivity of Poly(4-Styrenesolfonic Acid)-Doped Polyaniline Films for Single-Shot Detection of Tetrodotoxin
title_full_unstemmed Aptameric Recognition-Modulated Electroactivity of Poly(4-Styrenesolfonic Acid)-Doped Polyaniline Films for Single-Shot Detection of Tetrodotoxin
title_sort aptameric recognition-modulated electroactivity of poly(4-styrenesolfonic acid)-doped polyaniline films for single-shot detection of tetrodotoxin
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2015-09-01
description The work being reported is the first electrochemical sensor for tetrodotoxin (TTX). It was developed on a glassy carbon electrodes (C) that was modified with poly(4-styrenesolfonic acid)-doped polyaniline film (PANI/PSSA). An amine-end functionalized TTX-binding aptamer, 5′-NH2-AAAAATTTCACACGGGTGCCTCGGCTGTCC-3′ (NH2-Apt), was grafted via covalent glutaraldehyde (glu) cross-linking. The resulting aptasensor (C//PANI+/PSSA-glu-NH2-Apt) was interrogated by cyclic voltammetry (CV) and electrochemical impedance spectroscopy (EIS) in sodium acetate buffer (NaOAc, pH 4.8) before and after 30 min incubation in standard TTX solutions. Both CV and EIS results confirmed that the binding of the analyte to the immobilized aptamer modulated the electrochemical properties of the sensor: particularly the charge transfer resistance (Rct) of the PANI+/PSSA film, which served as a signal reporter. Based on the Rct calibration curve of the TTX aptasensor, the values of the dynamic linear range (DLR), sensitivity and limit of detection (LOD) of the sensor were determined to be 0.23–1.07 ng·mL−1 TTX, 134.88 ± 11.42 Ω·ng·mL−1 and 0.199 ng·mL−1, respectively. Further studies are being planned to improve the DLR as well as to evaluate selectivity and matrix effects in real samples.
topic tetrodotoxin sensor
aptamer
polyaniline
puffer fish
url http://www.mdpi.com/1424-8220/15/9/22547
work_keys_str_mv AT gertrudefomo aptamericrecognitionmodulatedelectroactivityofpoly4styrenesolfonicaciddopedpolyanilinefilmsforsingleshotdetectionoftetrodotoxin
AT tesfayetwaryo aptamericrecognitionmodulatedelectroactivityofpoly4styrenesolfonicaciddopedpolyanilinefilmsforsingleshotdetectionoftetrodotoxin
AT christopheresunday aptamericrecognitionmodulatedelectroactivityofpoly4styrenesolfonicaciddopedpolyanilinefilmsforsingleshotdetectionoftetrodotoxin
AT abdabaleg aptamericrecognitionmodulatedelectroactivityofpoly4styrenesolfonicaciddopedpolyanilinefilmsforsingleshotdetectionoftetrodotoxin
AT priscillagbaker aptamericrecognitionmodulatedelectroactivityofpoly4styrenesolfonicaciddopedpolyanilinefilmsforsingleshotdetectionoftetrodotoxin
AT emmanueliiwuoha aptamericrecognitionmodulatedelectroactivityofpoly4styrenesolfonicaciddopedpolyanilinefilmsforsingleshotdetectionoftetrodotoxin
_version_ 1725457177268715520