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Strain-dependent differences in susceptibility of mice to experimental Angiostrongylus costaricensis infection

Published online by Cambridge University Press:  05 June 2009

Akira I. Ishii
Affiliation:
Department of Parasitology, Hamamatsu University School of Medicine, Hamamatsu 431–31, Japan
Motohito Sano
Affiliation:
Department of Parasitology, Hamamatsu University School of Medicine, Hamamatsu 431–31, Japan

Abstract

Experimental Angiostrongylus costaricensis infection was carried out in inbred strains of mice (C57BL/6, BALB/c, DBA/2 and C3H/He). All strains became infected with this parasite. Marked differences in mortality and in worm burden were found among inbred strains of mice tested. A significant reduction was shown in worm length from mice compared to that from cotton rats.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1989

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References

REFERENCES

Behnke, J. M. & Wakelin, D. (1977) Nematospiroides dubius: stimulation of acquired immunity in inbred strains of mice. Journal of Helminihology, 51, 167176.CrossRefGoogle ScholarPubMed
Deelder, A. M., Claas, F. H. J. & De Vries, R. R. P. (1978) Influence of the mouse H-2 gene complex on experimental infections with Schistosoma mansoni. Transactions of the Royal Society of Tropical Medicine and Hygiene, 72, 321322.CrossRefGoogle Scholar
Kino, H. (1984) Parasite density and the fecundity of Angiostrongylus cantonensis in rats. Parasitology, 89, 275285.CrossRefGoogle ScholarPubMed
Malek, E. A. (1981) Presence of Angiostrongylus costaricensis Morera and Céspedes 1971 in Colombia. American Journal of Tropical Medicine and Hygiene, 30, 8183.CrossRefGoogle ScholarPubMed
Monge, E., Arroyo, R. & Solano, E. (1978) A new definitive natural host of Angiostrongylus costaricensis (Morera and Céspedes, 1971). Journal of Parasitology, 64, 34.CrossRefGoogle ScholarPubMed
Morera, P. (1973) Life history and redescription of Angiostrongylus costaricensis Morera and Céspedes, 1971. American Journal of Tropical Medicine and Hygiene, 22, 613621.CrossRefGoogle ScholarPubMed
Morera, P. & Ash, L. R. (1970) Investigación del huésped intermediario de Angiostrongylus costaricensis (Morera y Céspedes, 1971). Boletin Chileno de Parasitologia, 25, 135.Google Scholar
Morera, P. & Céspedes, R. (1971) Angiostrongylus costaricensis n. sp. (Nematoda: Metastrongyloidea), a new lungworm occurring in man in Costa Rica. Revista de Biologia Tropical Costa Rica, 18, 173185.Google Scholar
Sano, M., Ishii, A. I., Terada, M. & Hayashi, M. (1986) In vivo effects of levamisole on Angiostrongylus costaricensis and A cantonensis. Japanese Journal of Parasitology, 35(Suppl.), 81.Google Scholar
Terada, M., Ishii, A. I., Dharejo, A. M., Hayashi, M. & Sano, M. (1987) Studies on chemotherapy of parasitic helminths (XXVIII). In vivo efficacy of milbemycin D against larval stages of Angiostrongylus cantonensis and A. costaricensis. Japanese Journal of Parasitology, 36, 2429.Google Scholar
Tesh, R. B., Ackerman, L. J., Dietz, W. H. & Williams, J. A. (1973) Angiostrongylus costaricensis in Panama. Prevalence and pathologic findings in wild rodents infected with the parasite. American Journal of Tropical Medicine and Hygiene, 22, 348356.CrossRefGoogle ScholarPubMed
Wakelin, D. (1975) Genetic control of immune responses to parasites: Immunity to Trichuris muris in inbred and random-bred strains of mice. Parasitology, 71, 5160.CrossRefGoogle ScholarPubMed
Wassom, D. L., David, C. S. & Gleich, G. J. (1979) Genes within the major histocompatibility complex influence susceptibility to Trichinella spiralis in the mouse. Immunogenetics, 9, 491496.CrossRefGoogle Scholar