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Experimental microsporidiosis in immunocompetent and immunodeficient mice and monkeys
E S Didier1, P W Varner, P J Didier
1Department of Microbiology, Tulane Regional Primate Research Center, Covington, LA 70433.
Abstract:
Microsporidia cause opportunistic infections in AIDS patients and commonly infect laboratory animals, as well. Euthymic C57B1/6 mice experimentally infected with intraperitoneal injections of 1 x 10(6) Encephalitozoon cuniculi Levaditi, Nicolau et Schoen, 1923, Encephalitozoon hellem Didier et al., 1991, or Nosema corneum Shadduck et al., 1990 displayed no clinical signs of disease. Athymic mice, however, developed ascites and died 8-16 days after inoculation with N. corneum, 21-25 days after inoculation with E. cuniculi, and 34-37 days after inoculation with E. hellem. All athymic mice displayed hepatomegaly, dilated intestine and accumulation of ascites fluid. Granulomatous lesions are primarily located in the liver, lung, pancreas, spleen, and on serosal surfaces of abdominal organs. The murine microsporidiosis model also was used to examine immune response that inhibit microsporidia growth in vitro. Recombinant murine interferon-gamma (mIFN-gamma, 100 mu/ml) alone or in combination with lipopolysaccharide (LPS; 10 ng/ml) could activate thioglycollate-induced peritoneal murine macrophages to destroy E. cuniculi. The production of the nitrogen intermediate, NO2-, correlated with parasite destruction. Inhibition of NO2- generation by addition of the L-arginine analogue, NG-monomethyl L-arginine (NMMA), inhibited microsporidia killing, as well. Since microsporidiosis is becoming an important opportunistic infection in AIDS patients, a microsporidiosis model is being developed using SIV/DeltaB670-infected rhesus macaque monkeys (Macaca mulatta). SIV-infected immunocompetent monkeys given E. cuniculi or E. hellem per os developed specific antibodies, and microsporidia could be detected sporadically by calcofluor or antibody fluorescence staining of stool and urine sediment smears. As immunodeficiency progressed, monkeys developed diarrhoea, cachexia, and anorexia, and organisms were detected in urine and stool with greater frequency. Immunodeficient SIV-infected monkeys died approximately 27 days after receiving E. hellem by intravenous inoculation, and approximately 110 days after receiving E. hellem per os. Lesions typical for SIV-infection were observed in both groups of monkeys and microsporidia were detected in kidney and liver of the intravenously-injected monkeys. The murine microsporidiosis model provides an efficient means for studying protective immune responses to microsporidiosis, and may prove useful for screening immunological and chemotherapeutic agents. The pathogenesis of Encephalitozoon microsporidiosis in SIV-infected monkeys appears to parallel encephalitozoonosis in AIDS patients, suggesting that simian microsporidiosis may provide a useful model for evaluating diagnostic methods and therapeutic strategies during various stages of progressing immunodeficiency.
Insights
Microsporidia cause opportunistic infections in immunocompromised individuals. Athymic mice models showed susceptibility, while immune responses involving interferon-gamma and nitric oxide inhibited parasite growth, aiding in developing new treatments.
Area of Science:
- Immunology
- Infectious Diseases
- Parasitology
Background:
- Microsporidia are opportunistic pathogens causing infections in immunocompromised individuals, particularly AIDS patients.
- Laboratory animals and non-human primates serve as models for studying microsporidiosis.
- Understanding host immune responses is crucial for developing effective treatments.
Purpose of the Study:
- To investigate the pathogenesis of microsporidiosis in athymic mice.
- To explore the role of murine macrophages and interferon-gamma in controlling microsporidial infections.
- To establish a simian immunodeficiency virus (SIV)-infected macaque model for evaluating diagnostic and therapeutic strategies.
Main Methods:
- Experimental infection of euthymic and athymic C57B1/6 mice with Encephalitozoon cuniculi, Encephalitozoon hellem, and Nosema corneum.
- In vitro studies using murine macrophages activated with recombinant murine interferon-gamma (mIFN-gamma) and lipopolysaccharide (LPS).
- Development of a SIV-infected rhesus macaque model with experimental inoculation of E. cuniculi and E. hellem.
Main Results:
- Athymic mice exhibited severe disease and mortality following infection with N. corneum, E. cuniculi, and E. hellem.
- Activated murine macrophages demonstrated parasite-killing capacity, correlated with nitric oxide (NO2-) production.
- SIV-infected macaques developed clinical signs of disease and microsporidial shedding, paralleling human AIDS progression.
Conclusions:
- The murine model is effective for studying immune responses and screening therapeutic agents against microsporidiosis.
- The SIV-infected macaque model closely mimics human microsporidiosis in AIDS patients, aiding in diagnostic and therapeutic strategy evaluation.
- Further research into immune mechanisms and therapeutic interventions is warranted for managing microsporidial infections.