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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
Abstract:
Rodents housed in microisolation caging are commonly monitored for infectious agents by the use of soiled bedding sentinels. This strategy relies on the successful transmission of rodent pathogens from the index rodents via soiled bedding to sentinel cages and the subsequent infection or colonization of sentinel rodents. When the prevalence of a pathogen is low or the target agent is not readily transmitted by soiled bedding, alternative testing methodologies should be used. Given the continued prevalence of institutions self-reporting murine fur mites and with the advent of a new sensitive and specific PCR assay for mites, we sought to determine whether the exhaust system of an individual ventilated caging (IVC) system could be used for monitoring the rack's rodent population for mites rather than relying on the responses of sentinels. We deployed single cages of mice (Mus musculus) that were known to be infested with either Radfordia affinis or Myobia musculi on a 70-cage rack, sampled the horizontal exhaust manifolds weekly, and used the new PCR assay to test these samples for mite DNA. We detected the presence of fur mites at a 94.1% probability of detection within 4 wk of placement. Therefore, we recommend swabbing and testing the shelf exhaust manifolds of IVC racks rather than relying on soiled-bedding sentinels as an indicator of the mite status of the rodents on that rack.
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.

