SERS imaging-based aptasensor for ultrasensitive and reproducible detection of influenza virus A

  • Chen, Hao; 
  • Park, Sung-Gyu; 
  • Choi, Namhyun; 
  • Moon, Joung-Il; 
  • Dang, Hajun; 
  • ... Choo, Jaebum; 
  • 외 4명
Citations

WEB OF SCIENCE

170
Citations

SCOPUS

181

초록

Surface-enhanced Raman scattering (SERS)-based aptasensors display high sensitivity for influenza A/H1N1 virus detection but improved signal reproducibility is required. Therefore, in this study, we fabricated a three-dimensional (3D) nano-popcorn plasmonic substrate using the surface energy difference between a perfluorodecanethiol (PFDT) spacer and the Au layer. This energy difference led to Au nanoparticle self-assembly; neighboring nanoparticles then created multiple hotspots on the substrate. The localized surface plasmon effects at the hot spots dramatically enhanced the incident field. Quantitative evaluation of A/H1N1 virus was achieved using the decrease of Raman peak intensity resulting from the release of Cy3-labeled aptamer DNAs from nano-popcorn substrate surfaces via the interaction between the aptamer DNA and A/H1N1 virus. The use of a Raman imaging technique involving the fast mapping of all pixel points enabled the reproducible quantification of A/H1N1 virus on nano-popcorn substrates. Average ensemble effects obtained by averaging all randomly distributed hot spots mapped on the substrate made it possible to reliably quantify target viruses. The SERS-based imaging aptasensor platform proposed in this work overcomes the issues inherent in conventional approaches (the time-consuming and labor-intensiveness of RT-PCR and low sensitivity and quantitative analysis limits of lateral flow assay kits). Our SERS-based assay for detecting A/H1N1 virus had an estimated limit of detection of 97 PFU mL−1 (approximately three orders of magnitude more sensitive than that determined by the enzyme-linked immunosorbent assay) and the approximate assay time was estimated to be 20 min. Thus, this approach provides an ultrasensitive, reliable platform for detecting viral pathogens. © 2020 Elsevier B.V.

키워드

Aptasensor; Influenza A virus; SERS imaging sensor; SERS-based assay; Surface-enhanced Raman scattering (SERS); Gold; Gold nanoparticles; Nanoparticles; Pixels; Polymerase chain reaction; Raman scattering; Self assembly; Surface plasmons; Surface scattering; Viruses; Conventional approach; Enzyme linked immunosorbent assay; Localized surface plasmon; Quantitative evaluation; Surface energy differences; Surface enhanced Raman Scattering (SERS); Three orders of magnitude; Threedimensional (3-d); Substrates; aptamer; cyanine dye 3; gold nanoparticle; perfluorodecanethiol; thiol derivative; unclassified drug; Article; concentration (parameter); controlled study; enzyme linked immunosorbent assay; Influenza A virus (H1N1); limit of detection; nanofabrication; nonhuman; quantitative analysis; real time polymerase chain reaction; reproducibility; scanning electron microscopy; sensitivity and specificity; surface enhanced Raman spectroscopy; three-dimensional imaging; virus detection; virus titration
제목
SERS imaging-based aptasensor for ultrasensitive and reproducible detection of influenza virus A
저자
Chen, Hao; Park, Sung-Gyu; Choi, Namhyun; Moon, Joung-Il; Dang, Hajun; Das, Anupam; Lee, Seunghun; Kim, Do-Geun; Chen, Lingxin; Choo, Jaebum
DOI
10.1016/j.bios.2020.112496
발행일
2020-11
유형
Article
저널명
Biosensors and Bioelectronics
권
167