Carbon nanotube-based aptasensor for sensitive electrochemical detection of whole-cell Salmonella

In this study, an amino-modified aptasensor using multi-walled carbon nanotubes (MWCNTs)-deposited ITO electrode was prepared and evaluated for the detection of pathogenic Salmonella bacteria. An amino-modified aptamer (ssDNA) which binds selectively to whole-cell Salmonella was immobilised on the C...

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Main Authors: Hasan, Md Rakibul, Pulingam, Thiruchelvi, Appaturi, Jimmy Nelson, Zifruddin, Anis Nadyra, Teh, Swe Jyan, Lim, Teck Wei, Ibrahim, Fatimah, Leo, Bey Fen, Thong, Kwai Lin
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Published: Elsevier 2018
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Online Access:http://eprints.um.edu.my/21940/
https://doi.org/10.1016/j.ab.2018.06.001
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spelling my.um.eprints.219402019-08-19T01:09:48Z http://eprints.um.edu.my/21940/ Carbon nanotube-based aptasensor for sensitive electrochemical detection of whole-cell Salmonella Hasan, Md Rakibul Pulingam, Thiruchelvi Appaturi, Jimmy Nelson Zifruddin, Anis Nadyra Teh, Swe Jyan Lim, Teck Wei Ibrahim, Fatimah Leo, Bey Fen Thong, Kwai Lin Q Science (General) QH Natural history R Medicine In this study, an amino-modified aptasensor using multi-walled carbon nanotubes (MWCNTs)-deposited ITO electrode was prepared and evaluated for the detection of pathogenic Salmonella bacteria. An amino-modified aptamer (ssDNA) which binds selectively to whole-cell Salmonella was immobilised on the COOH-rich MWCNTs to produce the ssDNA/MWCNT/ITO electrode. The morphology of the MWCNT before and after interaction with the aptamers were observed using scanning electron microscopy (SEM). Cyclic voltammetry and electrochemical impedance spectroscopy techniques were used to investigate the electrochemical properties and conductivity of the aptasensor. The results showed that the impedance measured at the ssDNA/MWCNT/ITO electrode surface increased after exposure to Salmonella cells, which indicated successful binding of Salmonella on the aptamer-functionalised surface. The developed ssDNA/MWCNT/ITO aptasensor was stable and maintained linearity when the scan rate was increased from 10 mV s−1 to 90 mV s−1. The detection limit of the ssDNA/MWCNT/ITO aptasensor, determined from the sensitivity analysis, was found to be 5.5 × 101 cfu mL−1 and 6.7 × 101 cfu mL−1 for S. Enteritidis and S. Typhimurium, respectively. The specificity test demonstrated that Salmonella bound specifically to the ssDNA/MWCNT/ITO aptasensor surface, when compared with non-Salmonella spp. The prepared aptasensor was successfully applied for the detection of Salmonella in food samples. Elsevier 2018 Article PeerReviewed Hasan, Md Rakibul and Pulingam, Thiruchelvi and Appaturi, Jimmy Nelson and Zifruddin, Anis Nadyra and Teh, Swe Jyan and Lim, Teck Wei and Ibrahim, Fatimah and Leo, Bey Fen and Thong, Kwai Lin (2018) Carbon nanotube-based aptasensor for sensitive electrochemical detection of whole-cell Salmonella. Analytical Biochemistry, 554. pp. 34-43. ISSN 0003-2697 https://doi.org/10.1016/j.ab.2018.06.001 doi:10.1016/j.ab.2018.06.001
institution Universiti Malaya
building UM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Malaya
content_source UM Research Repository
url_provider http://eprints.um.edu.my/
topic Q Science (General)
QH Natural history
R Medicine
spellingShingle Q Science (General)
QH Natural history
R Medicine
Hasan, Md Rakibul
Pulingam, Thiruchelvi
Appaturi, Jimmy Nelson
Zifruddin, Anis Nadyra
Teh, Swe Jyan
Lim, Teck Wei
Ibrahim, Fatimah
Leo, Bey Fen
Thong, Kwai Lin
Carbon nanotube-based aptasensor for sensitive electrochemical detection of whole-cell Salmonella
description In this study, an amino-modified aptasensor using multi-walled carbon nanotubes (MWCNTs)-deposited ITO electrode was prepared and evaluated for the detection of pathogenic Salmonella bacteria. An amino-modified aptamer (ssDNA) which binds selectively to whole-cell Salmonella was immobilised on the COOH-rich MWCNTs to produce the ssDNA/MWCNT/ITO electrode. The morphology of the MWCNT before and after interaction with the aptamers were observed using scanning electron microscopy (SEM). Cyclic voltammetry and electrochemical impedance spectroscopy techniques were used to investigate the electrochemical properties and conductivity of the aptasensor. The results showed that the impedance measured at the ssDNA/MWCNT/ITO electrode surface increased after exposure to Salmonella cells, which indicated successful binding of Salmonella on the aptamer-functionalised surface. The developed ssDNA/MWCNT/ITO aptasensor was stable and maintained linearity when the scan rate was increased from 10 mV s−1 to 90 mV s−1. The detection limit of the ssDNA/MWCNT/ITO aptasensor, determined from the sensitivity analysis, was found to be 5.5 × 101 cfu mL−1 and 6.7 × 101 cfu mL−1 for S. Enteritidis and S. Typhimurium, respectively. The specificity test demonstrated that Salmonella bound specifically to the ssDNA/MWCNT/ITO aptasensor surface, when compared with non-Salmonella spp. The prepared aptasensor was successfully applied for the detection of Salmonella in food samples.
format Article
author Hasan, Md Rakibul
Pulingam, Thiruchelvi
Appaturi, Jimmy Nelson
Zifruddin, Anis Nadyra
Teh, Swe Jyan
Lim, Teck Wei
Ibrahim, Fatimah
Leo, Bey Fen
Thong, Kwai Lin
author_facet Hasan, Md Rakibul
Pulingam, Thiruchelvi
Appaturi, Jimmy Nelson
Zifruddin, Anis Nadyra
Teh, Swe Jyan
Lim, Teck Wei
Ibrahim, Fatimah
Leo, Bey Fen
Thong, Kwai Lin
author_sort Hasan, Md Rakibul
title Carbon nanotube-based aptasensor for sensitive electrochemical detection of whole-cell Salmonella
title_short Carbon nanotube-based aptasensor for sensitive electrochemical detection of whole-cell Salmonella
title_full Carbon nanotube-based aptasensor for sensitive electrochemical detection of whole-cell Salmonella
title_fullStr Carbon nanotube-based aptasensor for sensitive electrochemical detection of whole-cell Salmonella
title_full_unstemmed Carbon nanotube-based aptasensor for sensitive electrochemical detection of whole-cell Salmonella
title_sort carbon nanotube-based aptasensor for sensitive electrochemical detection of whole-cell salmonella
publisher Elsevier
publishDate 2018
url http://eprints.um.edu.my/21940/
https://doi.org/10.1016/j.ab.2018.06.001
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