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Quantification of Autoreactive Antibodies in Mice upon Experimental Autoimmune Encephalomyelitis
Published on: December 1, 2023
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
Abstract:
Mites of 3 genera-Myobia, Myocoptes, and Radfordia -continue to plague laboratory mouse facilities, even with use of stringent biosecurity measures. Mites often spread before diagnosis, predominantly because of detection difficulty. Current detection methods have suboptimal sensitivity, are time-consuming, and are costly. A sensitive serodiagnostic technique would facilitate detection and ease workload. We evaluated whether total IgE increases could serve as a serodiagnostic marker to identify mite infestations. Variables affecting total IgE levels including infestation duration, sex, age, mite species, soiled-bedding exposure, and ivermectin treatment were investigated in Swiss Webster mice. Strain- and pinworm-associated effects were examined by using C57BL/6 mice and Swiss Webster mice dually infested with Syphacia obvelata and Aspiculuris tetraptera, respectively. Mite infestations led to significant increases in IgE levels within 2 to 4 wk. Total IgE threshold levels and corresponding sensitivity and specificity values were determined along the continuum of a receiver-operating characteristic curve. A threshold of 81 ng/mL was chosen for Swiss Webster mice; values above this point should trigger screening by a secondary, more specific method. Sex-associated differences were not significant. Age, strain, and infecting parasite caused variability in IgE responses. Mice exposed to soiled bedding showed a delayed yet significant increase in total IgE. Treatment with ivermectin reduced total IgE levels within 2 wk. Our data suggest that increases in total IgE in Swiss Webster and C57BL/6 mice warrant investigation, especially because mite infestations can rapidly elevate total IgE levels. We propose that using total IgE levels routinely in serologic panels will enhance biosecurity.
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.

