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Clinical and pathological effects of Echinostoma revolutum (Digenea: Echinostomatidae) in the golden hamster, Mesocricetus auratus

Published online by Cambridge University Press:  06 April 2009

Jane E. Huffman
Affiliation:
Department of Zoology and Physiology, Parasitology Laboratory, Rutgers The State University, Newark, NJ 07102, USA
C. Michos
Affiliation:
Department of Zoology and Physiology, Parasitology Laboratory, Rutgers The State University, Newark, NJ 07102, USA
B. Fried
Affiliation:
Department of Biology, Lafayette College, Easton, PA 18042, USA

Summary

Laboratory hamsters (Mesocricetus auratus) were infected with Echinostoma revolutum (Trematoda). Hamsters developed marked and sometimes fatal echinostomiasis. Clinical signs included progressive unthriftiness, watery diarrhoea and weight loss. Packed cell volume, haemoglobin and red blood cell counts increased in those animals with severe diarrhoea. No increase in eosinophils was noted in peripheral blood smears. Examination of tissues of infected animals showed wide individual variations related to the intensity of infection. The histopathological responses of hamsters to the parasite showed erosion of intestinal villi with lymphocytic infiltration being the primary response. Periportal lymphocytic infiltration and focal hepatic necrosis were observed in livers from some infected animals. The findings of this study are discussed in terms of variations in pathogenicity of E. revolutum and as a model for the study of echinostomiasis.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1986

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References

REFERENCES

Biester, H. E. & Schwarte, L. H. (1965). Diseases of Poultry. Ames; Iowa State University Press.Google Scholar
Bindseil, E. & Christensen, N. O. (1984). Thymus independent crypt hyperplasia and villous atrophy in the small intestine of mice infected with the trematode Echinostoma revolutum. Parasitology 88, 431–8.CrossRefGoogle ScholarPubMed
Desai, R. G. (1968). Haematology and microcirculation. In The Golden Hamster: Its Biology and Use in Medical Research (ed. Hoffman, R. A., Robinson, P. F. and H., Magalhaes) p. 185. Ames: Iowa State University Press.Google Scholar
Faust, E. C., Russell, P. F. & Jung, R. C. (1970). Craig and Faust's Clinical Parasitology. Philadelphia: Lea and Febiger.Google Scholar
Franco, J., Huffman, J. E. & Fried, B. (1986). Infectivity, growth and development of Echinostoma revolutum (Digenea: Echinostomatidae) in the golden hamster, Mesocricetus auratus. Journal of Parasitology 72, 142–7.Google Scholar
Fried, B. & Wilson, B. D. (1981). Decrease in the body weight of domestic chicks infected with Echinostoma revolutum (Trematoda) or Zygocotyle lunata (Trematoda). Proceedings of the Helminthological Society of Washington 48, 97–8.Google Scholar
Hilarrio, J. S. & Wharton, L. D. (1917). Echinostoma ilocanum (Garrison); A report of five cases and a contribution to the anatomy of the fluke. Phillipine Journal of Science 12, 203.Google Scholar
Hossain, M. I., Dewan, M. L., Baki, A. & Mondal, M. M. H. (1980). Pathology of the Echinostoma revolutum (Froelich 1802) infection in Pigeon. Bangladesh Veterinary Journal 14, 13.Google Scholar
Kishore, N. & Sinha, D. P. (1982). Observations on Echinostoma revolutum infection in the rectum of domestic ducks (Anas platyrhynchos domesticus). Agricultural Science Digest 2, 5760.Google Scholar
Lie, K. J. (1964). Studies on echinostomatidae (Trematoda) in Malaya VII. The life history of Echinostoma lindoense Sandground and Boone, 1940. Tropical Geographical Medicine 16, 7281.Google Scholar
Luna, L. G. (1968). Manual of Histologic Staining Methods of the Armed Forces Institute of Pathology. New York: McGraw-Hill.Google Scholar
Mohandas, A. & Nadakal, A. M. (1978). In vivo development of Echinostoma malayanum Leiper, 1911 with notes on effects of population density, chemical composition and pathogenicity and in vitro excystment of the metacercaria (Trematoda: Echinostomatidae). Zeitschrift für Parasitenkunde 55, 139–51.CrossRefGoogle ScholarPubMed
Moravec, F., Baruš, V., Ryšavy¯, B. & Yousip, F. (1974). Observations on the development of two echinostomes, Echinoparyphium recurvatum and Echinostoma revolutum. The antagonists of human schistosomes in Egypt. Folia Parasitologia 21, 107–26.Google ScholarPubMed
Muraleedharan, K. & Pande, B. P. (1967). Notes on an experimental infection of laboratory raised chicks maintained on normal and deficient feeds with Echinoparyphium flexum and a coccidium. Indian Journal of Animal Health 6, 197213.Google Scholar
Rim, H. J. (1982). CRC Handbook Series in Zoonoses (ed. Hillyer, G. V. and Hopla, C. E.), pp 5369. Boca Raton, Florida: CRC Press.Google Scholar
Seo, B. S., Hong, S. T., Chai, J. Y. & Lee, S. Y. (1983). Studies on intestinal trematodes in Korea. The Korean Journal of Parasitology 21, 219–23.CrossRefGoogle ScholarPubMed
Ujiie, N. (1936). On the development and structure of Echinochasmus japonicus and its parasitism in man. Taiwan Igakkai Zasshi 35, 535.Google Scholar
Yamashita, J. (1964). Echinostome. In Progress of Medical Parasitology in Japan, vol. 1 Meguro Parantological Museum, Tokyo, 289.Google Scholar