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Development of adult Dirofilaria immitis worms in the Rag2/Il-2rγ-/- mouse model
Frederic Risch1, Carolin Ludwig-Erdmann2, Achim Hoerauf3
1Institute for Medical Microbiology, Immunology and Parasitology, University Hospital Bonn, Bonn, Germany.
Abstract:
Dirofilaria immitis is the causative agent for one of the major parasitic infections in dogs. It is currently not possible to reliably diagnose the infection before the development of fertile adult female worms and the presence of microfilariae which takes six to 7 months. However, at this point adult worms already reside in the pulmonary arteries and can cause significant damage. Novel in vivo models may facilitate the development of new diagnostic tools and improve treatment options for both the early and late stages of D. immitis infections. In this paper, we aimed to increase the capabilities of recently published mouse models in which severely immune-deficient mice were shown to be susceptible to D. immitis. Our data shows that D. immitis may grow into fully developed mature male and female worms in C57BL/6 Rag2/Il-2rγ-/- mice with comparable growth rates to the natural canine host. The adult worms of D. immitis were shown to migrate into body cavities as well as the heart in this model. However, the presence of adult worms inside the heart of infected mice led to the development of caval syndrome in 36% of infected mice after five to 6 months. Overall, the current study complements recently published efforts to establish a D. immitis mouse model by extending the development of D. immitis into mature adult stages and will facilitate further preclinical research.
Insights
A new mouse model allows Dirofilaria immitis, the cause of heartworm disease in dogs, to mature into adult worms. This model aids research into early diagnosis and improved treatments for canine heartworm infection.
Area of Science:
- Veterinary Parasitology
- Infectious Diseases
- Animal Models
Background:
- Dirofilaria immitis causes significant parasitic infections in dogs.
- Current diagnosis is delayed until adult worms and microfilariae appear (6-7 months), by which time damage has occurred.
- Need for improved diagnostic tools and treatments for early and late-stage infections.
Purpose of the Study:
- To enhance a recently developed mouse model for Dirofilaria immitis infection.
- To enable the development of mature adult worms in a susceptible mouse model.
- To facilitate preclinical research for canine heartworm disease.
Main Methods:
- Utilized C57BL/6 Rag2/Il-2rγ-/- mice, a severely immune-deficient model.
- Inoculated mice with Dirofilaria immitis.
- Monitored worm development, migration, and host response over time.
Main Results:
- Dirofilaria immitis achieved full maturity (male and female adult worms) in the mouse model.
- Worm growth rates were comparable to those in the natural canine host.
- Adult worms migrated to body cavities and the heart, with 36% of mice developing caval syndrome.
Conclusions:
- The study successfully extended Dirofilaria immitis development to mature adult stages in a mouse model.
- This enhanced model provides a valuable platform for preclinical research on canine heartworm.
- Facilitates the development of novel diagnostic tools and therapeutic strategies.
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