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Synthesis of Isolated DNA Aptamer and Its Application of AC-Electrothermal Flow-Based Rapid Biosensor for the Detection of Dengue Virus in a Spiked Sample

Authors
Park, HanbinLee, HoseokLee, MyoungroBaek, ChangyoonPark, Jeong AhJang, MoonbongKwon, YeinMin, JunhongLee, Taek
Issue Date
16-Aug-2023
Publisher
American Chemical Society
Citation
Bioconjugate Chemistry, v.34, no.8, pp 1486 - 1497
Pages
12
Journal Title
Bioconjugate Chemistry
Volume
34
Number
8
Start Page
1486
End Page
1497
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/67892
DOI
10.1021/acs.bioconjchem.3c00249
ISSN
1043-1802
1520-4812
Abstract
Dengue fever is an infectious disease caused by the dengue virus (DENV) and is transmitted by mosquitoes in tropical and subtropical regions. The early detection method at a low cost is essential. To address this, we synthesized the isolated DENV aptamer for fabricating a rapid electrochemical biosensor on a Au interdigitated microgap electrode (AuIMGE). The DENV aptamers were generated using the SELEX (systemic evolution of ligands by exponential enrichment) method for binding to DENV surface envelope proteins. To reduce the manufacturing cost, unnecessary nucleotide sequences were excluded from the isolation process of the DENV aptamer. To reduce the detection time, the alternating current electrothermal flow (ACEF) technique was applied to the fabricated biosensor, which can shorten the detection time to 10 min. The performance of the biosensor was evaluated using cyclic voltammetry (CV) and electrochemical impedance spectroscopy (EIS). In the diluted DENV protein solution, the linear range of the concentrations was from 1 pM to 1 μM and the LOD was 76.7 fM. Moreover, the proposed biosensor detected DENV in a diluted spiked sample at a linear range of 10-6 to 106 TCID50/mL, while the detection performance was proven with an LOD of 1.74 × 10-7 TCID50/mL along with high selectivity. © 2023 American Chemical Society
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