Femtomolar dengue virus type-2 DNA detection in back-gated silicon nanowire field-effect transistor biosensor

Dengue is known as the most severe arboviral infection in the world spread by Aedes aegypti. However, conventional and laboratory-based enzyme-linked immunosorbent assays (ELISA) are the current approaches in detecting dengue virus (DENV), requiring skilled and well-trained personnel to operate. The...

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Main Authors: Abidin, Wan Amirah Basyarah Zainol, Nor, Mohammad Nuzaihan Md, Arshad, Mohd Khairuddin Md, Fathil, Mohamad Faris Mohamad, Parmin, Nor Azizah, Sisin, Noor Azrina Haji Talik, Ibau, Conlathan, Azlan, Aidil Shazereen
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Published: Bentham Science Publishers 2022
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Online Access:http://eprints.um.edu.my/33513/
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spelling my.um.eprints.335132022-08-04T07:42:17Z http://eprints.um.edu.my/33513/ Femtomolar dengue virus type-2 DNA detection in back-gated silicon nanowire field-effect transistor biosensor Abidin, Wan Amirah Basyarah Zainol Nor, Mohammad Nuzaihan Md Arshad, Mohd Khairuddin Md Fathil, Mohamad Faris Mohamad Parmin, Nor Azizah Sisin, Noor Azrina Haji Talik Ibau, Conlathan Azlan, Aidil Shazereen QC Physics T Technology (General) Dengue is known as the most severe arboviral infection in the world spread by Aedes aegypti. However, conventional and laboratory-based enzyme-linked immunosorbent assays (ELISA) are the current approaches in detecting dengue virus (DENV), requiring skilled and well-trained personnel to operate. Therefore, the ultrasensitive and label-free technique of the Silicon Nanowire (SiNW) biosensor was chosen for rapid detection of DENV. Methods: In this study, a SiNW field-effect transistor (FET) biosensor integrated with a back-gate of the low-doped p-type Silicon-on-insulator (SOI) wafer was fabricated through conventional photo- lithography and Inductively Coupled Plasma - Reactive Ion Etching (ICP-RIE) for Dengue Virus type-2 (DENV-2) DNA detection. The morphological characteristics of back-gated SiNW-FET were examined using a field-emission scanning electron microscope supported by the elemental analysis via energy-dispersive X-ray spectroscopy. Results and Discussion: A complementary (target) single-stranded deoxyribonucleic acid (ssDNA) was recognized when the target DNA was hybridized with the probe DNA attached to SiNW surfaces. Based on the slope of the linear regression curve, the back-gated SiNW-FET biosensor demonstrated the sensitivity of 3.3 nAM(-1 )with a detection limit of 10 fM. Furthermore, the drain and back-gate voltages were also found to influence the SiNW conductance changed. Conclusion: Thus, the results obtained suggest that the back-gated SiNW-FET shows good stability in both biosensing applications and medical diagnosis throughout the conventional photolithography method. Bentham Science Publishers 2022 Article PeerReviewed Abidin, Wan Amirah Basyarah Zainol and Nor, Mohammad Nuzaihan Md and Arshad, Mohd Khairuddin Md and Fathil, Mohamad Faris Mohamad and Parmin, Nor Azizah and Sisin, Noor Azrina Haji Talik and Ibau, Conlathan and Azlan, Aidil Shazereen (2022) Femtomolar dengue virus type-2 DNA detection in back-gated silicon nanowire field-effect transistor biosensor. Current Nanoscience, 18 (1). pp. 139-146. ISSN 1573-4137, DOI https://doi.org/10.2174/1573413717666210226120940 <https://doi.org/10.2174/1573413717666210226120940>. 10.2174/1573413717666210226120940
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 QC Physics
T Technology (General)
spellingShingle QC Physics
T Technology (General)
Abidin, Wan Amirah Basyarah Zainol
Nor, Mohammad Nuzaihan Md
Arshad, Mohd Khairuddin Md
Fathil, Mohamad Faris Mohamad
Parmin, Nor Azizah
Sisin, Noor Azrina Haji Talik
Ibau, Conlathan
Azlan, Aidil Shazereen
Femtomolar dengue virus type-2 DNA detection in back-gated silicon nanowire field-effect transistor biosensor
description Dengue is known as the most severe arboviral infection in the world spread by Aedes aegypti. However, conventional and laboratory-based enzyme-linked immunosorbent assays (ELISA) are the current approaches in detecting dengue virus (DENV), requiring skilled and well-trained personnel to operate. Therefore, the ultrasensitive and label-free technique of the Silicon Nanowire (SiNW) biosensor was chosen for rapid detection of DENV. Methods: In this study, a SiNW field-effect transistor (FET) biosensor integrated with a back-gate of the low-doped p-type Silicon-on-insulator (SOI) wafer was fabricated through conventional photo- lithography and Inductively Coupled Plasma - Reactive Ion Etching (ICP-RIE) for Dengue Virus type-2 (DENV-2) DNA detection. The morphological characteristics of back-gated SiNW-FET were examined using a field-emission scanning electron microscope supported by the elemental analysis via energy-dispersive X-ray spectroscopy. Results and Discussion: A complementary (target) single-stranded deoxyribonucleic acid (ssDNA) was recognized when the target DNA was hybridized with the probe DNA attached to SiNW surfaces. Based on the slope of the linear regression curve, the back-gated SiNW-FET biosensor demonstrated the sensitivity of 3.3 nAM(-1 )with a detection limit of 10 fM. Furthermore, the drain and back-gate voltages were also found to influence the SiNW conductance changed. Conclusion: Thus, the results obtained suggest that the back-gated SiNW-FET shows good stability in both biosensing applications and medical diagnosis throughout the conventional photolithography method.
format Article
author Abidin, Wan Amirah Basyarah Zainol
Nor, Mohammad Nuzaihan Md
Arshad, Mohd Khairuddin Md
Fathil, Mohamad Faris Mohamad
Parmin, Nor Azizah
Sisin, Noor Azrina Haji Talik
Ibau, Conlathan
Azlan, Aidil Shazereen
author_facet Abidin, Wan Amirah Basyarah Zainol
Nor, Mohammad Nuzaihan Md
Arshad, Mohd Khairuddin Md
Fathil, Mohamad Faris Mohamad
Parmin, Nor Azizah
Sisin, Noor Azrina Haji Talik
Ibau, Conlathan
Azlan, Aidil Shazereen
author_sort Abidin, Wan Amirah Basyarah Zainol
title Femtomolar dengue virus type-2 DNA detection in back-gated silicon nanowire field-effect transistor biosensor
title_short Femtomolar dengue virus type-2 DNA detection in back-gated silicon nanowire field-effect transistor biosensor
title_full Femtomolar dengue virus type-2 DNA detection in back-gated silicon nanowire field-effect transistor biosensor
title_fullStr Femtomolar dengue virus type-2 DNA detection in back-gated silicon nanowire field-effect transistor biosensor
title_full_unstemmed Femtomolar dengue virus type-2 DNA detection in back-gated silicon nanowire field-effect transistor biosensor
title_sort femtomolar dengue virus type-2 dna detection in back-gated silicon nanowire field-effect transistor biosensor
publisher Bentham Science Publishers
publishDate 2022
url http://eprints.um.edu.my/33513/
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score 13.160551