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Failure of experimental infection of baboons (Papio hamadryas) with the eggs of Asian Taenia

Published online by Cambridge University Press:  05 June 2009

E.H. Fall
Affiliation:
Institute of Tropical Medicine, Nationalestraat 155, B 2000 Antwerp, Belgium
S. Geerts
Affiliation:
Institute of Tropical Medicine, Nationalestraat 155, B 2000 Antwerp, Belgium
V. Kumar
Affiliation:
Institute of Tropical Medicine, Nationalestraat 155, B 2000 Antwerp, Belgium
T. Vervoort
Affiliation:
Institute of Tropical Medicine, Nationalestraat 155, B 2000 Antwerp, Belgium
R. De Deken
Affiliation:
Institute of Tropical Medicine, Nationalestraat 155, B 2000 Antwerp, Belgium
K. S. Eom
Affiliation:
College of Medicine, Chungbuk National University,Chungbuk 360-763, Republic of Korea

Abstract

The infectivity of the eggs of Asian Taenia sp. for humans is not known. Using baboons (Papio hamadryas) as a model to extrapolate the findings, three animals were exposed per os with 1000, 10,000 and 50,000 infective eggs of theAsian Taenia sp. The serological, biochemical, haematological and parasitological (based on necropsy) results show that baboons are refractory to the infection. It is concluded that the Asian taeniid eggs may fail to develop in man.

Type
Research Note
Copyright
Copyright © Cambridge University Press 1995

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References

Bowles, J. & McManus, D.P. (1994) Genetic characterization of Asian Taenia, a newly described taeniid cestode of humans. American Journal of Tropical Medicine and Hygiene 50, 3344.CrossRefGoogle ScholarPubMed
Brandt, J.R.A. & Sewell, M.M.H. (1981) In vitro hatching and activation of Taenia taeniaeformis oncospheres. Veterinary Research Communication 5, 193199.CrossRefGoogle ScholarPubMed
Brandt, J.R.A., Geerts, S., De Deken, R., Kumar, V., Ceulemans, F., Brijs, L. & Falla, N. (1992) A monoclonal antibody based ELISA for the detection of circulating excretory-secretory antigens in Taenia saginata cysticercosis. International Journal for Parasitology 22, 471477.CrossRefGoogle ScholarPubMed
Cadigan, EC., Stanton, J.S., Tanticharoenyos, P. & Chaicumpa, V. (1067) The Lar gibbon as definitive and intermediate host of Taenia solium. Journal of Parasitology 53, 844.CrossRefGoogle Scholar
Cross, J.H. & Murrell, K.D. (1991) The 33rd SEAMEO TROPMED regional seminar on emerging problems in food-borne parasitic zoonoses: impact in agriculture and public health. Southeast Asian Journal of Tropical Medicine and Public Health 22, 415Google ScholarPubMed
Eom, K.S & Rim, H.J. (1993) Morphologic description of Taenia asiatica sp. n. Korean Journal of Parasitology 31, 16.CrossRefGoogle ScholarPubMed
Fan, P.C., Chung, W.C., Lin, C.Y., Soh, C.T., Lee, K.T., Kosman, M.L., Kosin, E., Depary, A.A. & Napitupulu, T. (1988) Studies on taeniasis in Taiwan. VI. Is Taenia saginata from Taiwan, Korea, Indonesia a new species Chinese Journal of Parasitology 1, 5670.Google Scholar
Geerts, S., Zorloni, A., Kumar, V., Brandt, J.R.A., De Deken, R. & Eom, K.S. (1992) Experimental infection of pigs with a Taenia species from Korea: parasitological and serological aspects. Parasitology Research 78, 513515.CrossRefGoogle ScholarPubMed
Ito, A. (1992) Cysticercosis in Asian Pacific regions. Parasitology Today 6, 182.CrossRefGoogle Scholar
McManus, D.P. & Bowles, J. (1994) Asian (Taiwan) Taenia: species or strain. Parasitology Today 10, 273275.CrossRefGoogle ScholarPubMed
Sokal, R.S. & Rohlf, J.J. (1981) Biometry: the principles of statistics in biomedical research. Freeman and Company, New York, 829 pp.Google Scholar
Verster, A. (1965) Taenia solium Linn., 1758 in the chacma baboon, Papio ursinus (Kert 1792). Journal of the South African Veterinary Medical Association 36, 580.Google Scholar