PCR testing of a ventilated caging system to detect murine fur mites

Eric S Jensen1, Kenneth P Allen, Kenneth S Henderson

  • 1Department of Pediatrics, Medical College of Wisconsin, Milwaukee, Wisconsin, USA. ejensen@mcw.edu

Insights

Monitoring rodent populations for fur mites can be improved by testing Individual Ventilated Caging (IVC) exhaust systems. This method offers a higher probability of detection than traditional soiled bedding sentinels.

Area of Science:

  • Laboratory animal science
  • Parasitology
  • Molecular diagnostics

Background:

  • Soiled bedding sentinels are standard for monitoring rodent infections.
  • This method is less reliable for low-prevalence pathogens or agents not easily transmitted via bedding.
  • Murine fur mites remain a common issue in research facilities.

Purpose of the Study:

  • To evaluate the efficacy of using Individual Ventilated Caging (IVC) exhaust systems for detecting rodent fur mites.
  • To compare this method with traditional soiled-bedding sentinel monitoring.

Main Methods:

  • Mice infested with Radfordia affinis or Myobia musculi were placed in IVC racks.
  • Horizontal exhaust manifolds were sampled weekly.
  • A sensitive and specific PCR assay was used to detect mite DNA in exhaust samples.

Main Results:

  • The PCR assay detected fur mites in exhaust samples with a 94.1% probability within 4 weeks.
  • This indicates efficient pathogen shedding into the IVC exhaust system.

Conclusions:

  • Testing IVC exhaust manifolds is a recommended alternative to soiled-bedding sentinels for monitoring rodent fur mite status.
  • This approach enhances detection probability and efficiency for mite surveillance.

Related Concept Videos