Development of a three-panel multiplex real-time PCR assay for simultaneous detection of nine canine respiratory

Junsheng Dong1, Wai Ning Tiffany Tsui2, Xue Leng3

  • 1Kansas State Veterinary Diagnostic Laboratory, Kansas State University, Manhattan, KS 66506, United States; Yangzhou University College of Veterinary Medicine, Yangzhou, Jiangsu, China.

Insights

A new multiplex real-time PCR assay accurately detects multiple canine infectious respiratory disease (CIRD) pathogens. This advanced diagnostic tool offers higher sensitivity and specificity than older methods for faster, more reliable canine disease identification.

Area of Science:

  • Veterinary Diagnostics
  • Molecular Biology
  • Canine Infectious Diseases

Background:

  • Canine infectious respiratory disease (CIRD) is a prevalent global issue in dogs.
  • Multiple bacterial and viral agents cause CIRD, presenting similar clinical signs, complicating diagnosis.
  • Accurate and rapid diagnostic tests are crucial for effective CIRD management.

Purpose of the Study:

  • To develop and validate a multiplex real-time PCR panel assay for simultaneous detection of nine common CIRD pathogens.
  • To evaluate the diagnostic sensitivity and specificity of the new assay compared to existing methods.

Main Methods:

  • Development of a multiplex real-time PCR assay with three subpanels targeting nine CIRD pathogens (Mycoplasma cynos, Mycoplasma canis, Bordetella bronchiseptica, canine adenovirus type 2, canine herpesvirus 1, canine parainfluenza virus, canine distemper virus, canine influenza virus, and canine respiratory coronavirus).
  • Assessed assay performance using correlation coefficients (R²), amplification efficiencies (E), and limit of detection (LOD) with plasmid and RNA templates.
  • Validated the assay on 740 clinical samples, comparing results with an older panel assay and confirming positive samples via Sanger sequencing.

Main Results:

  • The multiplex real-time PCR assay demonstrated high correlation coefficients (R² > 0.988) and amplification efficiencies (90.6–107.8%) comparable to singleplex assays.
  • The assay achieved low limits of detection, ranging from 1 to 24 copies/µL for DNA and RNA targets, with no observed cross-reactivity.
  • In clinical samples, the new assay exhibited significantly higher diagnostic sensitivity than the older panel assay while maintaining specificity.

Conclusions:

  • The developed multiplex real-time PCR assay is a sensitive, specific, and efficient tool for diagnosing canine infectious respiratory disease.
  • This assay facilitates rapid and accurate identification of multiple CIRD pathogens, improving diagnostic capabilities for canine respiratory illnesses.
  • The enhanced diagnostic performance supports better clinical decision-making and disease control strategies in veterinary medicine.