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The viable motheaten (mev) mouse--a new model for arthritis
Abstract:
Homozygous mev mice are first identified at the age of 3-4 days by focal depigmentation of the skin, followed by patchy absence of hair and by necrotic lesions on paws, tail and ears. Of particular interest are the inflammatory reactions in the paws of these animals which consist mainly of polymorphonuclear and mononuclear cell infiltration in the subcutaneous tissue extending to the periosteum and joint, resulting in focal destructive arthritis and osteomylitis. These lesions are to some extent reminiscent of an acute form of rheumatoid-like arthritis. Since mev mice are sterile, a limited number of symptomatic offspring can be obtained by cross-breeding their heterozygous siblings which are phenotypically not distinguishable from mice lacking this mutation. In order to produce a sufficient number of diseased animals for performing pharmacological studies, we have established a model by transferring this disease in lethally irradiated, 8- to 10-week-old syngeneic mice which were grafted with mev spleen cells. Such reconstituted recipients develop first inflammatory symptoms of the paws 2 to 3 weeks after cell transfer. The arthritic inflammation finally affects all paws and toes by 30 to 50 days. This procedure increased the number of mev-like mice expressing arthritis, allowing assessment of the effects of standard reference drugs used in the therapy of rheumatoid arthritis (RA). The immunosuppressants cyclosporin and rapamycin and the steroid dexamethasone at therapeutic concentrations exert a strong inhibitory effect on the development of arthritis in this novel model. In contrast, the non-steroidal anti-inflammatory drug phenylbutazone shows only a moderate effect. These results indicate the particular sensitivity of this model for efficacy of potentially new therapeutic but non-cytostatic compounds for clinical use.
Insights
Homozygous mev mice exhibit skin depigmentation and arthritis resembling rheumatoid arthritis (RA). A novel model using spleen cell transfer in irradiated mice effectively replicates these RA-like symptoms for drug testing.
Area of Science:
- Immunology
- Rheumatology
- Animal Models
Background:
- Homozygous mev mice display focal depigmentation, hair loss, and necrotic lesions, progressing to destructive arthritis and osteomyelitis.
- These mev mouse lesions mimic rheumatoid-like arthritis, but their sterility limits research applications.
Purpose of the Study:
- To establish a reproducible animal model for studying rheumatoid arthritis (RA) pathogenesis and therapeutic interventions.
- To assess the efficacy of established RA therapies in a novel, induced mouse model.
Main Methods:
- A new model was created by transferring spleen cells from mev mice into lethally irradiated syngeneic mice.
- The reconstituted recipients developed progressive, RA-like inflammatory symptoms in their paws and joints within weeks.
Main Results:
- The cell transfer model successfully generated a sufficient number of mev-like mice with arthritis for pharmacological studies.
- Immunosuppressants (cyclosporin, rapamycin) and dexamethasone strongly inhibited arthritis development.
- Phenylbutazone showed only a moderate effect, highlighting model sensitivity to non-cytostatic compounds.
Conclusions:
- This novel spleen cell transfer model effectively replicates key features of rheumatoid arthritis.
- The model demonstrates sensitivity to established RA treatments, proving valuable for evaluating new non-cytostatic therapeutic agents.