Total IgE as a serodiagnostic marker to aid murine fur mite detection

Gordon S Roble1, William Boteler, Elyn Riedel

  • 1Tri-institutional Training Program in Laboratory Animal Medicine and Science, The Rockefeller University, and Weill Cornell Medical College, New York, New York, USA. gsr7@nyu.edu

Insights

Elevated total IgE levels can serve as a sensitive marker for detecting mite infestations in laboratory mice. This serodiagnostic approach aids in early identification and enhances biosecurity in research facilities.

Area of Science:

  • Veterinary parasitology
  • Immunology
  • Laboratory animal science

Background:

  • Mite infestations (Myobia, Myocoptes, Radfordia) are persistent issues in laboratory mouse facilities.
  • Current mite detection methods lack sensitivity, are time-consuming, and costly, hindering early diagnosis and spread control.

Purpose of the Study:

  • To evaluate total immunoglobulin E (IgE) increases as a potential serodiagnostic marker for identifying mite infestations in mice.
  • To investigate factors influencing IgE levels during infestations, including duration, sex, age, mite species, bedding exposure, and treatment.

Main Methods:

  • Swiss Webster mice were used to assess IgE responses to mite infestations, examining variables like infestation duration, sex, age, mite species, bedding exposure, and ivermectin treatment.
  • C57BL/6 and Swiss Webster mice were dually infested with pinworms (Syphacia obvelata, Aspiculuris tetraptera) to examine strain and co-infection effects.
  • Receiver-operating characteristic (ROC) curve analysis determined IgE thresholds for detection.

Main Results:

  • Mite infestations caused significant increases in total IgE levels within 2-4 weeks.
  • A threshold of 81 ng/mL for total IgE was identified in Swiss Webster mice, indicating potential infestation.
  • Ivermectin treatment reduced IgE levels, while soiled bedding exposure delayed but still induced significant IgE increases.

Conclusions:

  • Elevated total IgE levels are a promising, sensitive serodiagnostic marker for mite infestations in laboratory mice.
  • Routine inclusion of total IgE testing in serologic panels can improve early detection and biosecurity in mouse facilities.
  • IgE response variability exists based on mouse strain, age, and co-infections, necessitating further investigation.

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