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Assessing Elimination of Mouse Kidney Parvovirus from Cages by Mechanical Washing
Amanda L Carlson1, Rebecca J Floyd1, Rodolfo J Ricart Arbona1
1Tri-Institutional Training Program in Laboratory Animal Medicine and Science, Memorial Sloan Kettering Cancer Center, Weill Cornell Medicine, and The Rockefeller University, Center for Comparative Medicine and Pathology, Memorial Sloan Kettering Cancer Center and Weill Cornell Medicine, New York.
Abstract:
Mouse kidney parvovirus (MKPV), a newly identified parvovirus of the genus Chaphamaparvovirus, causes inclusion body nephropathy in severely immunocompromised mice and is prevalent in research mouse colonies. As nonenveloped viruses, mammalian parvoviruses are stable and generally resist thermal inactivation; however, as a novel and highly divergent parvovirus, the thermal stability of MKPV is undefined. This study aimed to evaluate the ability of cage sanitization in a mechanical washer to eliminate MKPV. Cages contaminated by MKPV-infected mice were assigned to 1 of 3 treatment groups: 1) control (bedding change only); 2) sanitization in a tunnel washer (88°C final rinse for 20 s); or 3) sanitization in a tunnel washer followed by autoclave sterilization (121 °C for 20 min). The presence of MKPV on the cage's interior surface was assessed by PCR of cage swab extracts collected before and after cage treatment. After treatment and swabbing, each cage housed 4 MKPV-negative CD1 mice. Each group of naive CD1 mice was assigned to one of the treatment groups and was housed in a cage from this group for two, 1 wk periods. At 12, 17, and 20 wk after the first exposure, renal tissue was collected from 1 test mouse per cage and assessed for MKPV by PCR. MKPV was detected by PCR on the surface of 63% of the pretreatment cages. All cages sanitized in a tunnel washer with or without sterilization were PCR negative after treatment. Seven of 10 mice housed in untreated cages contained a mouse positive for MKPV by 20 wk after exposure. None of the mice housed in cages sanitized in a tunnel washer with or without sterilization tested positive for MKPV at any time point. This study indicates that MKPV contaminated caging can result in MKPV infection of mice, and the use of a tunnel washer at the temperature and duration evaluated was sufficient to remove MKPV nucleic acid and prevent MKPV transmission.
Insights
Mouse kidney parvovirus (MKPV) can infect research mice through contaminated cages. Tunnel washing cages effectively eliminates MKPV nucleic acid and prevents transmission, safeguarding mouse colonies.
Area of Science:
- Virology
- Laboratory Animal Science
- Infectious Disease Control
Background:
- Mouse kidney parvovirus (MKPV) is a novel parvovirus causing nephropathy in immunocompromised mice.
- MKPV is prevalent in research mouse colonies, posing a risk to animal health and research integrity.
- The thermal stability of MKPV is not well-defined, impacting disinfection protocols.
Purpose of the Study:
- To evaluate the efficacy of cage sanitization in a mechanical washer for eliminating MKPV.
- To determine if tunnel washing can prevent MKPV transmission in research mouse colonies.
Main Methods:
- Cages contaminated with MKPV were subjected to three treatment groups: control, tunnel washing (88°C final rinse), and tunnel washing plus autoclaving (121°C).
- MKPV presence on cage surfaces was assessed by PCR before and after treatment.
- Naive mice were housed in treated cages to evaluate MKPV transmission and infection rates over 20 weeks.
Main Results:
- MKPV was detected on 63% of untreated, contaminated cage surfaces.
- All tunnel-washed cages (with or without autoclaving) tested PCR negative post-treatment.
- Mice housed in untreated cages showed significant MKPV infection, while mice in sanitized cages remained negative.
Conclusions:
- MKPV-contaminated caging is a viable route for mouse infection.
- Mechanical tunnel washing at 88°C for 20 seconds is sufficient to eliminate MKPV nucleic acid.
- Sanitization via tunnel washing effectively prevents MKPV transmission, ensuring the health of research mouse colonies.

