Related Experiment Video
Updated: Jun 16, 2026

Trichuris muris Infection: A Model of Type 2 Immunity and Inflammation in the Gut
Published on: May 24, 2011
Using Entamoeba muris To Model Fecal-Oral Transmission of Entamoeba in Mice
Carolina Mendoza Cavazos1,2, Marienela Y Heredia2,3, Leah A Owens4
1Microbiology Doctoral Training Program, University of Wisconsin-Madison, Madison, Wisconsin, USA.
Abstract:
There are several Entamoeba species that colonize humans, but only Entamoeba histolytica causes severe disease. E. histolytica is transmitted through the fecal-oral route to colonize the intestinal tract of 50 million people worldwide. The current mouse model to study E. histolytica intestinal infection directly delivers the parasite into the surgically exposed cecum, which circumvents the natural route of infection. To develop a fecal-oral mouse model, we screened our vivarium for a natural murine Entamoeba colonizer via a pan-Entamoeba PCR targeting the 18S ribosomal gene. We determined that C57BL/6 mice were chronically colonized by Entamoeba muris. This amoeba is closely related to E. histolytica, as determined by 18S sequencing and cross-reactivity with an E. histolytica-specific antibody. In contrast, outbred Swiss Webster (SW) mice were not chronically colonized by E. muris. We orally challenged SW mice with 1 × 105 E. muris cysts and discovered they were susceptible to infection, with peak cyst shedding occurring between 5 and 7 days postinfection. Most infected SW mice did not lose weight significantly but trended toward decreased weight gain throughout the experiment compared to mock-infected controls. Infected mice treated with paromomycin, an antibiotic used against noninvasive intestinal disease, do not become colonized by E. muris. Within the intestinal tract, E. muris localizes exclusively to the cecum and colon. Purified E. muris cysts treated with bovine bile in vitro excyst into mobile, pretrophozoite stages. Overall, this work describes a novel fecal-oral mouse model for the important global pathogen E. histolytica. IMPORTANCE Infection with parasites from the Entamoeba genus are significantly underreported causes of diarrheal disease that disproportionally impact tropical regions. There are several species of Entamoeba that infect humans to cause a range of symptoms from asymptomatic colonization of the intestinal tract to invasive disease with dissemination. All Entamoeba species are spread via the fecal-oral route in contaminated food and water. Studying the life cycle of Entamoeba, from host colonization to infectious fecal cyst production, can provide targets for vaccine and drug development. Because there is not an oral challenge rodent model, we screened for a mouse Entamoeba species and identified Entamoeba muris as a natural colonizer. We determine the peak of infection after an oral challenge, the efficacy of paromomycin treatment, the intestinal tract localization, and the cues that trigger excystation. This oral infection mouse model will be valuable for the development of novel therapeutic options for Entamoeba infections.
Insights
Researchers developed a new fecal-oral mouse model to study Entamoeba infections. This model uses Entamoeba muris to mimic natural infection routes, aiding drug and vaccine development for Entamoeba histolytica.
Area of Science:
- Microbiology
- Parasitology
- Infectious Diseases
Background:
- Entamoeba histolytica causes severe disease in humans, transmitted via the fecal-oral route.
- Current mouse models bypass the natural infection pathway, limiting research.
- A natural murine Entamoeba colonizer is needed for a realistic fecal-oral infection model.
Purpose of the Study:
- To establish a novel fecal-oral mouse model for studying Entamoeba infections.
- To identify and characterize a natural murine Entamoeba colonizer.
- To investigate the infection dynamics and host-parasite interactions in this new model.
Main Methods:
- Screening a vivarium for natural murine Entamoeba colonizers using pan-Entamoeba PCR.
- Identifying Entamoeba muris as a chronic colonizer in C57BL/6 mice.
- Orally challenging Swiss Webster mice with E. muris and assessing infection parameters.
Main Results:
- C57BL/6 mice are chronically colonized by Entamoeba muris, closely related to E. histolytica.
- Swiss Webster mice are susceptible to oral E. muris infection, with peak shedding at 5-7 days post-infection.
- E. muris localizes to the cecum and colon, and excysts in vitro with bile stimulation; paromomycin treatment prevents colonization.
Conclusions:
- A novel fecal-oral mouse model using Entamoeba muris has been established.
- This model mimics natural infection routes and is suitable for studying Entamoeba pathogenesis.
- The model provides a valuable platform for developing therapeutics against Entamoeba infections.
More Related Videos
11:04The Citrobacter rodentium Mouse Model: Studying Pathogen and Host Contributions to Infectious Colitis
Published on: February 19, 2013
06:20Detection of Enterohemorrhagic Escherichia Coli Colonization in Murine Host by Non-invasive In Vivo Bioluminescence System
Published on: April 9, 2018