RPB0405

Pathogen Description

Target Pathogen Pathogen Name NCBI Taxonomy ID Order Family Genus Species Pathogen type
SARS-CoV-2 SARS-CoV-2, 2019-nCoV, COVID-19, COVID-19 virus, SARS2, Wuhan coronavirus, Human coronavirus 2019, COVID19, HCoV-19, SARS-2, SARS-CoV4 2697049 Nidovirales Coronaviridae Betacoronavirus Severe acute respiratory syndrome-related coronavirus virus

Primer Description

Primer Name Sequence(5'-3') Length(bp) Primer Final Concentration(μM) GC Content(%) Predicted Melting Temperature(℃) Molecular Weight(g/moles) Positions in GenBank accession number
RPA-RdRp-F1 GTTGTAGCTTGTCACACCGTTTCTATAGATTAGC 34 400 nM 41.18 59.76 10413.82 \
RPA-RdRp-R1 CCTGGTTTAACATATAGTGAACCGCCACACAT 32 400 nM 43.75 61.61 9752.41 \
RdRP_SARSr-P2 FAM-CAGGTGGAACCTCATCAGGAGATGC-BHQ1 25 1200 nM 56 62 7716.07 \

Gene Description

Target Gene GenBank ID
RdRp \

Assay Description

Application Assay Primer Designing Software Reaction Time(min) Assay Temperature(℃) Readout System(s) Limit of Detection(LoD) Sensitivity(%) Specificity(%)
offering a more efficient strategy for detecting various types of viruses. RT-RAA-Cas12b \ 30 min 42 °C Cas12b 5 × 103 copies\mL 0.9916 1

Publication Description

Year of Publication Title Author(s) Journal PMID DOI
2023 CDetection.v2: One-pot assay for the detection of SARS-CoV-2 Xinge Wang,Yangcan Chen,Xuejia Cheng,Si-Qi Wang,Yanping Hu,Yingmei Feng,Ronghua Jin,Kangping Zhou,Ti Liu,Jianxing Wang,Kai Pan,Bing Liu,Jie Xiang,Yanping Wang,Qi Zhou,Ying Zhang,Weiye Pan,Wei Li Frontiers in Microbiology 37032875 10.3389/fmicb.2023.1158163

CDetection.v2: One-pot assay for the detection of SARS-CoV-2

Author(s):

Xinge Wang,Yangcan Chen,Xuejia Cheng,Si-Qi Wang,Yanping Hu,Yingmei Feng,Ronghua Jin,Kangping Zhou,Ti Liu,Jianxing Wang,Kai Pan,Bing Liu,Jie Xiang,Yanping Wang,Qi Zhou,Ying Zhang,Weiye Pan,Wei Li

Journal:

Frontiers in Microbiology

Year:

2023

Abstract:

Introduction: The ongoing 2019 coronavirus disease pandemic (COVID-19), caused by severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2) and its variants, is a global public health threat. Early diagnosis and identification of SARS-CoV-2 and its variants plays a critical role in COVID-19 prevention and control. Currently, the most widely used technique to detect SARS-CoV-2 is quantitative reverse transcription real-time quantitative PCR (RT-qPCR), which takes nearly 1 hour and should be performed by experienced personnel to ensure the accuracy of results. Therefore, the development of a nucleic acid detection kit with higher sensitivity, faster detection and greater accuracy is important. Methods: Here, we optimized the system components and reaction conditions of our previous detection approach by using RT-RAA and Cas12b. Results: We developed a Cas12b-assisted one-pot detection platform (CDetection.v2) that allows rapid detection of SARS-CoV-2 in 30 minutes. This platform was able to detect up to 5,000 copies/ml of SARS-CoV-2 without cross-reactivity with other viruses. Moreover, the sensitivity of this CRISPR system was comparable to that of RT-qPCR when tested on 120 clinical samples. Discussion: The CDetection.v2 provides a novel one-pot detection approach based on the integration of RT-RAA and CRISPR/Cas12b for detecting SARS-CoV-2 and screening of large-scale clinical samples, offering a more efficient strategy for detecting various types of viruses.