Authors: Changwoo Park, Jina Lee, Zohaib Ul Hassan, Keun Bon Ku, Seong Jun Kim, Hong Gi Kim, Edmond Changkyun Park, Gun-Soo Park, Daeui Park, Seung-Hwa Baek, Dongju Park, Jihye Lee, Sangeun Jeon, Seungtaek Kim, Chang-Seop Lee, Hee Min Yoo, Seil Kim Published on:
25 Dec 2020
Publication:
Journal of microbiology and biotechnology DOI:
10.4014/jmb.2009.09006
The World Health Organization (WHO) has declared the Coronavirus disease 2019 (COVID-19) as an international health emergency. Current diagnostic tests are based on the reverse transcription-quantitative polymerase chain reaction (RT-qPCR) method, which is the gold standard test that involves the amplification of viral RNA. However, the RT-qPCR assay has limitations in terms of sensitivity and quantification. In this study, we tested both qPCR and droplet digital PCR (ddPCR) to detect low amounts of viral RNA. The cycle threshold (C
T
) of the viral RNA by RT-PCR significantly varied according to the sequences of the primer and probe sets with
in vitro
transcript (IVT) RNA or viral RNA as templates, whereas the copy number of the viral RNA by ddPCR was effectively quantified with IVT RNA, cultured viral RNA, and RNA from clinical samples. Furthermore, the clinical samples were assayed via both methods, and the sensitivity of the ddPCR was determined to be equal to or more than that of the RT-qPCR. However, the ddPCR assay is more suitable for determining the copy number of reference materials. These findings suggest that the qPCR assay with the ddPCR defined reference materials could be used as a highly sensitive and compatible diagnostic method for viral RNA detection.
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Additional Information
Journal:
Journal Article
Source:
PubMed: 33397829
issn_isbn:
1738-8872
Country:
Korea (South)
Language:
eng
article_id: 563411
More Info | #563411: Comparison of digital PCR and quantitative PCR with various SARS-CoV-2 primer-probe sets.
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