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Graphene-Gold Hybrid Nanomaterial Based Impedimetric Immunosensor for H3N2 Influenza A Virus Detection

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Date

2022

Author

Tepeli Büyüksünetçi, Yudum
Anık, Ülkü

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Citation

Tepeli Büyüksünetçi, Yudum, and Ülkü Anık. 2022. “Graphene‐gold Hybrid Nanomaterial Based Impedimetric Immunosensor for H3N2 Influenza A Virus Detection”. Chemistryselect 7 (36). ChemistrySelect. doi:10.1002/slct.202202614.

Abstract

H3N2, known as "swine flu" is a kind of influenza A virus that can also infect humans. Therefore, rapid, practical and accurate techniques for H3N2 detection is needed. In this study, we fabricate Graphene-gold hybrid nanomaterial modified hemagglutinin-3 antibody (anti-H3) based electrochemical immunosensor for practical, sensitive, and selective detection of H3N2 virus. The specific interaction between anti-H3 and H3 protein on H3N2 virus was monitored with electrochemical impedance spectroscopy. After experimental parameters were optimized, analytical characteristics were searched. A linearity in the range of 1.0-17.5 mu g/mL with limit of detection value of 1.01 mu g/mL were obtained for the virus. Relative standard deviation value was found as 4.60 % for 15 mu g/mL H3N2 virus (n=3). By using synthetic saliva solution that was supplemented with the virus, matrix effect was also investigated. Lastly, the selectivity of developed anti-H3 based electrochemical influenza A immunosensor was investigated by applying it for H1N1 virus detection.

Source

CHEMISTRYSELECT

Volume

7

Issue

36

URI

https://doi.org/10.1002/slct.202202614
https://hdl.handle.net/20.500.12809/10309

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  • Kimya Bölümü Koleksiyonu [352]
  • Scopus İndeksli Yayınlar Koleksiyonu [6219]
  • WoS İndeksli Yayınlar Koleksiyonu [6466]



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