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Dissociation of the protective immune response in the mouse to Strongyloides ratti

Published online by Cambridge University Press:  05 June 2009

David I. Grove
Affiliation:
Department of Postgraduate Medical Education, Sir Charles Gairdner Hospital, Nedlands, Western Australia 6009
Carolyn Northern
Affiliation:
Department of Postgraduate Medical Education, Sir Charles Gairdner Hospital, Nedlands, Western Australia 6009

Abstract

The generation of protective immunity by various stages in the life-cycle of Strongyloides ratti and the phases against which resistance is directed has been examined in murine strongyloidiasis. Mice were exposed to natural, complete infections, were treated with thiabendazole (which largely resembles the natural infection), were treated with cambendazole (which restricts infection to the larval stage), or infected directly by oral transfer of adult worms. Mice that were infected with infective larvae alone did not become resistant to infective larvae or the complete infection but were resistant to adult worms implanted directly into the gut. Mice exposed to adult worms alone were resistant to natural infections and adults worms implanted directly but were not resistant to infective larvae. On the other hand, mice that had received prior natural infections showed evidence of resistance to infective larvae, adult worms, and natural, complete infections. It is concluded that there is immunological cross-reactivity between infective larvae and adult worms but that under certain circumstances the infective larvae are able to evade the host's protective immune response.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1989

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References

REFERENCES

Bell, R. G., Adams, L. S. & Gerb, J. (1981) Strongyloides ratti: dissociation of the rat's protective immunity into systemic and intestinal components. Experimental Parasitology, 52, 386395.CrossRefGoogle ScholarPubMed
Chaia, G. & Murta, C. C. (1967) Immunization of rats with irradiated Strongyloides larvae. Revista do Instituto de Medicina Tropical de Sao Paulo, 9, 163168.Google ScholarPubMed
Conder, G. A. & Williams, J. F. (1983) Immunization with infective larvae of Strongyloides ratti (Nematoda) exposed to microwave radiation. Journal of Parasitology, 69, 8387.CrossRefGoogle ScholarPubMed
Dawkins, H. J. & Grove, D. I. (1981) Kinetics of primary and secondary infections with Strongyloides ratti in mice. International Journal for Parasitology, 11, 8996.CrossRefGoogle ScholarPubMed
Dawkins, H. J., Grove, D. I., Dunsmore, J. D. & Mitchell, G. F. (1980) Strongyloides ratti: susceptibility to infection and resistance to reinfection in inbred strains of mice as assessed by excretion of larvae. International Journal for Parasitology, 10, 125129.CrossRefGoogle ScholarPubMed
Dawkins, H. J., Robertson, T. A., Papadimitriou, J. M. & Grove, D. I. (1983) Light and electron microscopical studies of the location of Strongyloides ratti in the mouse intestine. Zeitschrift für Parasitenkunde, 69, 357370.CrossRefGoogle ScholarPubMed
Grove, D. I. (1982) Strongyloides ratti and S. stercoralis: effects of thiabendazole, mebendazole and cambendazole in infected mice. American Journal of Tropical Medicine and Hygiene, 31, 469476.CrossRefGoogle ScholarPubMed
Grove, D. I. & Northern, C. (1986) Strongyloides ratti and S. stercoralis: effects of cambendazole, thiabendazole and mebendazole in vitro. Revista do Instituto de Medicina Tropical de Sao Paulo, 28, 97103.CrossRefGoogle ScholarPubMed
Grove, D. I. & Northern, C. (1987) Oral transfer of Strongyloides ratti adult worms to mice. Journal of Parasitology, 73, 424425.CrossRefGoogle ScholarPubMed
Grove, D. I. & Northern, C. (1988) The effects of thiabendazole, mebendazole and cambendazole in normal and immunosuppressed dogs infected with a human strain of Strongyloides stercoralis. Transactions of the Royal Society of Tropical Medicine and Hygiene, 82, 146149.CrossRefGoogle ScholarPubMed
Jenkins, D. C. & Phillipson, R. F. (1970) The kinetics of repeated low-level infections of Nippostrongylus brasiliensis in the laboratory rat. Parasitology, 62, 457465.CrossRefGoogle Scholar
Jenkins, D. C. & Phillipson, R. F. (1972) Increased establishment and longevity of Nippostrongylus brasiliensis in immune rats given repeated small infections. International Journal for Parasitology, 2, 105111.CrossRefGoogle ScholarPubMed
Korenaga, M., Nawa, Y., Mimori, T. & Tada, I. (1983a) Strongyloides ratti: the role of enteral antigenic stimuli by adult worms in the generation of protective immunity in rats. Experimental Parasitology, 55, 358363.CrossRefGoogle ScholarPubMed
Korenaga, M., Nawa, Y., Mimori, T. & Tada, I. (1983b) Effects of preintestinal larval antigenic stimuli on the generation of intestinal immunity in Strongyloides ratti infection in rats. Joural of Parasitology, 69, 7882.CrossRefGoogle ScholarPubMed
Murrell, K. D. (1980) Strongyloides ratti: acquired resistance in the rat to the preintestinal migrating larvae. Experimental Parasitology, 50, 417425.CrossRefGoogle Scholar
Northern, C. & Grove, D. I. (1988) Western blot analysis of reactivity to larval and adult Strongyloides ratti antigens in mice. Parasite Immunology, 10, 681692.CrossRefGoogle ScholarPubMed
Northern, C., Warton, A., Lovegrove, F. T. & Grove, D. I. (1989) Surface labelling of Strongyloides ratti: stage specificity and cross-reactivity with S. stercoralis. Clinical and Experimental Immunology, 75, 487492.Google ScholarPubMed
Sheldon, A. J. (1937) Studies on active acquired resistance, natural and artificial, in the rat to infection with Strongyloides ratti. American Journal of Hygiene, 25, 5365.Google Scholar