P48 Immune response on transplantation of Echinostoma caproni metacercariae into abdominal cavity of C3H mice

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Development and pathology of Echinostoma caproni in experimentally infected mice.

In the present article, several parasitological features of mice, each experimentally infected with 75 metacercariae of Echinostoma caproni (Trematoda: Echinostomatidae), were studied during the first 12 wk postinfection. Moreover, the early pathological responses also were analyzed and compared with data previously published on other host species of E. caproni to gain further insight into the ...

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Antibody trapping: A novel mechanism of parasite immune evasion by the trematode Echinostoma caproni

BACKGROUND Helminth infections are among the most prevalent neglected tropical diseases, causing an enormous impact in global health and the socioeconomic growth of developing countries. In this context, the study of helminth biology, with emphasis on host-parasite interactions, appears as a promising approach for developing new tools to prevent and control these infections. METHODS/PRINCIPAL...

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Panorganismal Metabolic Response Modeling of an Experimental <italic>Echinostoma caproni</italic> Infection in the Mouse

Department of Public Health and Epidemiology, Swiss Tropical Institute, P.O. Box, CH-4002 Basel, Switzerland, Department of Biomolecular Medicine, Division of Surgery, Oncology, Reproductive Biology and Anaesthetics (SORA), Faculty of Medicine, Imperial College London, Sir Alexander Fleming Building, South Kensington, London SW7 2AZ, United Kingdom, State Key Laboratory of Magnetic Resonance an...

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Germinal elements and their development in Echinostoma caproni and Echinostoma paraensei (Trematoda) miracidia.

Among the large cells located in the posterior of Echinostoma caproni and E. paraensei miracidia are secretory cells, germinal cells (GC), and undifferentiated cells. Secretory cells do not give rise to progeny, whereas GC do. Undifferentiated cells develop into GC that can also divide to produce embryos. Cleavage of GC of E. caproni occurs only after the parasite has entered the snail host and...

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Panorganismal Metabolic Response Modeling of an Experimental Echinostoma caproni Infection in the Mouse

Metabolic profiling of host tissues and biofluids during parasitic infections can reveal new biomarker information and aid the elucidation of mechanisms of disease. The multicompartmental metabolic effects of an experimental Echinostoma caproni infection have been characterized in 12 outbred female mice infected orally with 30 E. caproni metacercariae each, using a further 12 uninfected animals...

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ژورنال

عنوان ژورنال: Medical Entomology and Zoology

سال: 2001

ISSN: 0424-7086,2185-5609

DOI: 10.7601/mez.52.89_4