Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
6133105 | Journal of Virological Methods | 2015 | 5 Pages |
Abstract
The 2006 outbreaks of H5N1 avian influenza in Egypt interrupted poultry production and caused staggering economic damage. In addition, H5N1 avian influenza viruses represent a significant threat to public health. Therefore, the rapid detection of H5 viruses is very important in order to control the disease. In this study, a qualitative reverse transcription recombinase polymerase amplification (RT-RPA) assay for the detection of hemagglutinin gene of H5 subtype influenza viruses was developed. The results were compared to the real-time reverse transcription polymerase chain reaction (RT-PCR). An in vitro transcribed RNA standard of 970 nucleotides of the hemagglutinin gene was developed and used to determine the assay sensitivity. The developed H5 RT-RPA assay was able to detect one RNA molecule within 7Â min, while in real-time RT-PCR, at least 90Â min was required. H5 RT-RPA assay did not detect nucleic acid extracted from H5 negative samples or from other pathogens producing respiratory manifestation in poultry. The clinical performance of the H5 RT-RPA assay was tested in 30 samples collected between 2014 and 2015; the sensitivity of H5 RT-RPA and real-time RT-PCR was 100%. In conclusion, H5 RT-RPA was faster than real-time RT-PCR and easily operable in a portable device. Moreover, it had an equivalent sensitivity and specificity.
Keywords
AIVEID50RT-RPAIBVNDVHPAIRPART-LAMPILTcycle thresholdAvian influenzahighly pathogenic avian influenzaRecombinase polymerase amplificationReal-time RT-PCRInfectious laryngotracheitisMycoplasma gallisepticumNucleotideshemagglutininreal-time reverse transcription polymerase chain reactionavian influenza virusInfectious bronchitis virusNewcastle disease virus
Related Topics
Life Sciences
Immunology and Microbiology
Virology
Authors
Nahed Yehia, Abdel-Satar Arafa, Ahmed Abd El Wahed, Ahmed A. El-Sanousi, Manfred Weidmann, Mohamed A. Shalaby,