Evaluation of the Diagnostic Accuracy of Nasal Cavity and Nasopharyngeal Swab Specimens for SARS-CoV-2 Detection via Rapid Antigen Test According to Specimen Collection Timing and Viral Load
- PMID: 35328263
- PMCID: PMC8947492
- DOI: 10.3390/diagnostics12030710
Evaluation of the Diagnostic Accuracy of Nasal Cavity and Nasopharyngeal Swab Specimens for SARS-CoV-2 Detection via Rapid Antigen Test According to Specimen Collection Timing and Viral Load
Abstract
The rapid diagnosis of SARS-CoV-2 is an essential aspect in the detection and control of the spread of COVID-19. We evaluated the accuracy of the rapid antigen test (RAT) using samples from the nasal cavity and nasopharynx based on sample collection timing and viral load. We enrolled 175 patients, of which 71 patients and 104 patients had tested positive and negative, respectively, based on real time-PCR. Nasal cavity and nasopharyngeal swab samples were tested using STANDARD Q COVID-19 Ag tests (Q Ag, SD Biosensor, Korea). The sensitivity of the Q Ag test was 77.5% (95% confidence interval [CI], 67.8−87.2%) for the nasal cavity and 81.7% (95% [CI, 72.7−90.7%) for the nasopharyngeal specimens. The RAT results showed a substantial agreement between the nasal cavity and nasopharyngeal specimens (Cohen’s kappa index = 0.78). The sensitivity of the RAT for nasal cavity specimens exceeded 89% for <5 days after symptom onset (DSO) and 86% for Ct of E and RdRp < 25. The Q Ag test performed fairly well, especially in the early DSO when a high viral load was present, and the nasal cavity swab can be considered an alternative site for the rapid diagnosis of COVID-19.
Keywords: COVID-19 testing; SARS-CoV-2; detection; nasal cavity; rapid antigen test.
Conflict of interest statement
No potential conflict of interest was reported by the authors.
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- NRF-2019R1C1C1006867, NRF-2021M3H4A1A02051048, NRF-2021M3E5E3080379, NRF-2021M3E5E3080382, NRF-2021R1I1A3044483, and NRF-2018M3A9E2022821/This research was supported by national R&D programs through the National Research Foundation (NRF) of Korea funded by the Ministry of Science and ICT (MSIT) of Korea
- H-GUARD_2013M3A6B2078950/Global Frontier Program through Center for BioNano Health Guard funded by MSIT of Korea
- 2021003370003/Technology Development Program for Biological Hazards Management in Indoor Air through Korea Environment Industry & Technology Institute (KEITI) funded by the Ministry of Environment (ME) of Korea
- CSM2105M101/Nanomedical Devices Development Program of National Nano Fab Center
- 1711401381/KRIBB Research Initiative Program
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