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Factors affecting the acquisition of resistance to Schistosoma japonicum in the mouse: II. Evidence that resistance to reinfection is not mediated by specific effector mechanisms

Published online by Cambridge University Press:  06 April 2009

N. A. Moloney
Affiliation:
Department of Medical Helminthology, London School of Hygiene and Tropical Medicine, Winches Farm Field Station, 395 Hatfield Road, St Albans, Herts
G. Webbe
Affiliation:
Department of Medical Helminthology, London School of Hygiene and Tropical Medicine, Winches Farm Field Station, 395 Hatfield Road, St Albans, Herts

Summary

The skin phase of schistosomular migration was neither essential for the induction or expression of acquired resistance since mice given primary infections by the intraperitoneal route were as resistant to intra-peritoneal or percutaneous challenge as were mice given their primary infections percutaneously. Serum taken from resistant donors with acute or chronic infections conferred no ability to resist infection upon recipient mice. In two experiments mice that were deprived of their T-cells were as resistant to infection as intact mice and both types of host had comparable tissue egg loads and liver pathology. In a third experiment the immune-deprived mice had lower tissue egg counts than the intact mice and were less resistant to challenge. It is suggested that specific immune effector mechanisms may not be involved in acquired resistance to reinfection but rather that resistance is affected by the T-cell independent immunopathology induced by tissue-bound Schistosoma japonicum eggs.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1984

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References

Dean, D. A., Bukowski, M. A. & Cheever, A. W. (1981). Relationship between acquired resistance, portal hypertension and lung granulomas in ten strains of mice infected with Schistosoma mansoni. American Journal of Tropical Medicine, and Hygiene 30, 806–14.CrossRefGoogle ScholarPubMed
Doenhoff, M. & Long, E. (1979). Factors affecting the acquisition of resistance against Schistosoma mansoni in the mouse. IV. The inability of T-cell deprived mice to resist reinfection and other in vivo studies on the mechanisms of resistance. Parasitology 78, 171–83.CrossRefGoogle ScholarPubMed
Doenhoff, M. J., Musallam, R., Bain, J. & McGregor, A. (1979). Schistosoma mansoni infections in T-cell deprived mice, and the ameliorating effect of administering homologous chronic infection serum. 1. Pathogenesis. American Journal of Tropical Medicine and Hygiene 16, 284–92.Google Scholar
Harrison, R. A., Bickle, Q. & Doenhoff, M. J. (1982). Factors affecting the acquisition of resistance against Schistosoma mansoni in the mouse. Evidence that the mechanisms which mediate resistance during early patent infections may lack immunological specificity. Parasitology 84, 93110.CrossRefGoogle ScholarPubMed
Levey, R. H. & Medawar, P. B. (1966). Some experiments on the action of antilymphoid antisera. Annals of the New York Academy of Sciences 129, 164–77.CrossRefGoogle Scholar
Long, E., Harrison, R., Bickle, Q., Bain, J., Nelson, G. & Doenhoff, M. (1980). Factors affecting the acquisition of resistance against Schistosoma mansoni in the mouse. The effect of varying the route and the number of primary infections, and the correlation between the size of the primary infection and the degree of resistance that is acquired. Parasitology 81, 355–71.CrossRefGoogle ScholarPubMed
Moloney, N. A., Doenhoff, M. J., Webbe, G. & Hinchcliffe, P. (1982). Studies on the host–parasite relationship of Schistosoma japonicum in normal and immunosuppressed mice. Parasite Immunology 4, 431–40.CrossRefGoogle ScholarPubMed
Moloney, N. A. & Webbe, G. (1982). A rapid method for the infection of laboratory mice with Schistosoma japonicum. Transactions of the Royal Society of Tropical Medicine and Hygiene 76, no. 2. 200–3.CrossRefGoogle ScholarPubMed
Sadun, E. H. & Lin, S. S. (1959). Studies on the host–parasite relationships to Schistosoma japonicum. IV. Resistance acquired by infection, by vaccination and by the injection of immune serum in monkeys, rabbits and mice. Journal of Helminthology 52, 187–91.Google Scholar
Sher, A., Smithers, S. R. & Mackenzie, P. (1975). Passive transfer of acquired resistance to Schistosoma mansoni in laboratory mice. Parasitology 70, 347–57.CrossRefGoogle ScholarPubMed
Sher, A., Smithers, S. R., Mackenzie, P. & Broomfield, K. (1977). Schistosoma mansoni: Immunoglobulins involved in passive immunization of laboratory mice. Experimental Parasitology 41, 160–6.CrossRefGoogle ScholarPubMed