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Evaluation by latent class analysis of a magnetic capture based DNA extraction followed by real-time qPCR as a new diagnostic method for detection of Echinococcus multilocularis in definitive hosts

  • Miriam Maas*
  • , Annika van Roon
  • , Cecile Dam-Deisz
  • , Marieke Opsteegh
  • , Alessandro Massolo
  • , Gunita Deksne
  • , Peter Teunis
  • , Joke van der Giessen
  • *Corresponding author for this work
  • National Institute of Public Health and the Environment
  • University of Calgary
  • Institute of Food Safety Animal Health and Environment

Research output: Contribution to journalArticlepeer-review

17 Citations (Scopus)

Abstract

A new method, based on a magnetic capture based DNA extraction followed by qPCR, was developed for the detection of the zoonotic parasite Echinococcus multilocularis in definitive hosts. Latent class analysis was used to compare this new method with the currently used phenol-chloroform DNA extraction followed by single tube nested PCR. In total, 60 red foxes and coyotes from three different locations were tested with both molecular methods and the sedimentation and counting technique (SCT) or intestinal scraping technique (IST). Though based on a limited number of samples, it could be established that the magnetic capture based DNA extraction followed by qPCR showed similar sensitivity and specificity as the currently used phenol-chloroform DNA extraction followed by single tube nested PCR. All methods have a high specificity as shown by Bayesian latent class analysis. Both molecular assays have higher sensitivities than the combined SCT and IST, though the uncertainties in sensitivity estimates were wide for all assays tested. The magnetic capture based DNA extraction followed by qPCR has the advantage of not requiring hazardous chemicals like the phenol-chloroform DNA extraction followed by single tube nested PCR. This supports the replacement of the phenol-chloroform DNA extraction followed by single tube nested PCR by the magnetic capture based DNA extraction followed by qPCR for molecular detection of E. multilocularis in definitive hosts.

Original languageEnglish
Pages (from-to)20-24
Number of pages5
JournalVeterinary Parasitology
Volume230
DOIs
Publication statusPublished - 30 Oct 2016
Externally publishedYes

Keywords

  • Coyotes
  • Echinococcus multilocularis
  • Latent class analysis
  • Magnetic capture based DNA extraction
  • Real-time qPCR
  • Red foxes

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