RPB0296

Pathogen Description

Target Pathogen Pathogen Name NCBI Taxonomy ID Order Family Genus Species Pathogen type
Influenza A virus Influenza A virus, FLUAV, Human Influenza A Virus, Influenza virus type A 11320 Articulavirales Orthomyxoviridae Alphainfluenzavirus Influenza A virus 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
AIV-NP-F GAAATTAATACGACTCACTATAGGGACAATGGTGATGGAACTGATTCGGATGATAAA 57 10 μM 36.84 64.58 17720.6 562-593
AIV-NP-R TCCCAGGATTTCTGCTCTCTCGCACTTGAT 30 10 μM 50 64.69 9074.93 719-748

Gene Description

Target Gene GenBank ID
Nucleprotein (NP) gene MW265408.1

Assay Description

Application Assay Primer Designing Software Reaction Time(min) Assay Temperature(℃) Readout System(s) Limit of Detection(LoD) Sensitivity(%) Specificity(%)
rapid, simple, strong specificity, and high sensitivity, which provided a new visual method for AIV detection. RAA-CRISPR-Cas13a-LFD DNAMAN 30 min 39°C CRISPR-Cas13a-LFD 10⁰ copies/μL 100copies/μL \

Publication Description

Year of Publication Title Author(s) Journal PMID DOI
2024 Based on CRISPR-Cas13a system, to establish a rapid visual detection method for avian influenza viruses Zongshu Zhang,Chunguang Wang,Xi Chen,Zichuang Zhang,Guoqiang Shi,Xianghe Zhai,Tie Zhang Frontiers in Veterinary Science 38260192 10.3389/fvets.2023.1272612

Based on CRISPR-Cas13a system, to establish a rapid visual detection method for avian influenza viruses

Author(s):

Zongshu Zhang,Chunguang Wang,Xi Chen,Zichuang Zhang,Guoqiang Shi,Xianghe Zhai,Tie Zhang

Journal:

Frontiers in Veterinary Science

Year:

2024

Abstract:

To rapidly, specifically, and sensitively detect avian influenza virus (AIV), this research established a visual detection method of recombinase-aided amplification (RAA) based on Clustered Regularly Interspaced Short Palindromic Repeats (CRISPR) and CRISPR associated proteins 13a (Cas13a) system. In this study, specific primers and CRISPR RNA (crRNA) were designed according to the conservative sequence of AIV Nucleprotein (NP) gene. RAA technology was used to amplify the target sequence, and the amplification products were visually detected by lateral flow dipstick (LFD). The specificity, sensitivity, and reproducibility of RAA-CRISPR-Cas13a-LFD were evaluated. At the same time, this method and polymerase chain reaction (PCR)-agarose electrophoresis method were used to detect clinical samples, and the coincidence rate of the two detection methods was calculated. The results showed that the RAA-CRISPR-Cas13a-LFD method could achieve specific amplification of the target gene fragments, and the detection results could be visually observed through the LFD. Meanwhile, there was no cross-reaction with infectious bronchitis virus (IBV), infectious laryngotracheitis virus (ILTV), and Newcastle disease virus (NDV). The sensitivity reached 100 copies/μL, which was 1,000-fold higher than that of PCR-agarose electrophoresis method. The coincidence rate of clinical tests was 98.75 %, and the total reaction time was ~1 h. The RAA-CRISPR-Cas13a-LFD method established in this study had the advantages of rapid, simple, strong specificity, and high sensitivity, which provided a new visual method for AIV detection.