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Rapid and quantitative detection of human antibodies against the 2019 novel coronavirus sars cov2 and its variants as a result of vaccination and infection

  • Albany Medical College
  • Wadsworth Center for Laboratories and Research
  • SUNY Albany

Research output: Contribution to journalArticlepeer-review

4 Scopus citations

Abstract

Measuring the antibody response to 2019 SARS CoV2 is critical for diagnostic purposes, for monitoring the prevalence of infection, and for gauging the efficacy of the worldwide vaccination effort for COVID-19. In this study, a microchipbased grating-coupled fluorescent plasmonic (GC-FP) assay was used to measure antibody levels that resulted from COVID-19 infection and vaccination. In addition, we measured the relative antibody binding toward antigens from the CoV2 virus variants strains B.1.1.7 (Alpha) and B.1.351 (Beta). Antibody levels against multiple antigens within the SARS CoV2 spike protein were significantly elevated for both vaccinated and infected individuals, while those against the nucleocapsid (N) protein were only elevated for infected individuals. GC-FP was effective for monitoring the IgG-based serological response to vaccination throughout the vaccination sequence and also resolved acute (within hours) increases in antibody levels. A significant decrease in antibody binding to antigens from the B.1.351 variant, but not B.1.1.7, was observed for all vaccinated subjects when measured by GC-FP compared to the 2019 SARS CoV2 antigens. These results were corroborated by competitive enzymelinked immunosorbent assay (ELISA). Collectively, the findings suggest that GC-FP is a viable, rapid, and accurate method for measuring both overall antibody levels to SARS CoV2 and relative antibody binding to viral variants during infection or vaccination.

Original languageEnglish
Article numbere00890-21
JournalMicrobiology Spectrum
Volume9
Issue number2
DOIs
StatePublished - Oct 2021

Keywords

  • Antibody
  • Biosensor
  • COVID-19
  • CoV2
  • Detection
  • Diagnostic
  • Multiplex
  • Plasmonic
  • Quantitative
  • Vaccine
  • Variant

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