Author: Zhao, Li; Li, Guiâ€xia; Wang, Ji; Zhao, Mengâ€chuan; Wang, Le; Feng, Zhiâ€shan; Ma, Xueâ€jun
Title: Development and evaluation of a panel of multiplex oneâ€tube nested real time PCR assay for simultaneous detection of 14 respiratory viruses in five reactions Cord-id: jjoq8fyj Document date: 2020_2_14
ID: jjoq8fyj
Snippet: Multiplex realâ€time quantitative polymerase chain reaction (mRTâ€qPCR) assay is commonly used to detect respiratory viruses, however, the sensitivity is limited for most reports. A panel of locked nucleic acid based multiplex closed oneâ€tube nested realâ€time PCR (mOTNRTâ€PCR) assay consisting of five separate internally controlled RTâ€qPCR assays was developed for detection of 14 respiratory viruses. The sensitivity and reproducibility of mOTNRTâ€PCR panel were evaluated using plasmid
Document: Multiplex realâ€time quantitative polymerase chain reaction (mRTâ€qPCR) assay is commonly used to detect respiratory viruses, however, the sensitivity is limited for most reports. A panel of locked nucleic acid based multiplex closed oneâ€tube nested realâ€time PCR (mOTNRTâ€PCR) assay consisting of five separate internally controlled RTâ€qPCR assays was developed for detection of 14 respiratory viruses. The sensitivity and reproducibility of mOTNRTâ€PCR panel were evaluated using plasmid standards and the specificity was evaluated using clinical samples. The clinical performance of mOTNRTâ€PCR panel was further evaluated with 468 samples collected from patients with an acute respiratory infection and compared with individual realâ€time PCR (RTâ€qPCR) assay. The analytical sensitivities of mOTNRTâ€PCR panel ranged from 2 to 20 copies/reaction, and no crossâ€reaction with common respiratory viruses was observed. The coefficients of variation of intraâ€assay and interâ€assay were between 0.35% and 8.29%. Totally 35 clinical samples detected by mOTNRTâ€PCR assay panel were missed by RTâ€qPCR and confirmed true positive by sequencing of nested PCR products. The mOTNRTâ€PCR assay panel provides a more sensitive and highâ€throughput method for the detection of 14 respiratory viruses.
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