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Updated: Nov 21, 2025

Oral Transmission of Listeria monocytogenes in Mice via Ingestion of Contaminated Food
Published on: May 6, 2013
Increased Listeria monocytogenes Dissemination and Altered Population Dynamics in Muc2-Deficient Mice
Ting Zhang1,2, Jumpei Sasabe1,2, Karthik Hullahalli1,2
1Division of Infectious Diseases, Brigham and Women's Hospital, Boston, Massachusetts, USA.
Abstract:
The mucin Muc2 is a major constituent of the mucus layer that covers the intestinal epithelium and creates a barrier between epithelial cells and luminal commensal or pathogenic microorganisms. The Gram-positive foodborne pathogen Listeria monocytogenes can cause enteritis and also disseminate from the intestine to give rise to systemic disease. L. monocytogenes can bind to intestinal Muc2, but the influence of the Muc2 mucin barrier on L. monocytogenes intestinal colonization and systemic dissemination has not been explored. Here, we used an orogastric L. monocytogenes infection model to investigate the role of Muc2 in host defense against L. monocytogenes Compared to wild-type mice, we found that Muc2-/- mice exhibited heightened susceptibility to orogastric challenge with L. monocytogenes, with higher mortality, elevated colonic pathology, and increased pathogen burdens in both the intestinal tract and distal organs. In contrast, L. monocytogenes burdens were equivalent in wild-type and Muc2-/- animals when the pathogen was administered intraperitoneally, suggesting that systemic immune defects related to Muc2 deficiency do not explain the heightened pathogen dissemination observed in oral infections. Using a barcoded L. monocytogenes library to measure intrahost pathogen population dynamics, we found that Muc2-/- animals had larger pathogen founding population sizes in the intestine and distal sites than observed in wild-type animals. Comparisons of barcode frequencies suggested that the colon becomes the major source for seeding the internal organs in Muc2-/- animals. Together, our findings reveal that Muc2 mucin plays a key role in controlling L. monocytogenes colonization, dissemination, and population dynamics.
Insights
The mucin Muc2 barrier is crucial for controlling Listeria monocytogenes infection. Mice lacking Muc2 showed increased susceptibility, mortality, and pathogen dissemination following oral L. monocytogenes challenge.
Area of Science:
- Microbiology
- Immunology
- Gastroenterology
Background:
- Mucin Muc2 forms the intestinal mucus layer, acting as a barrier against microorganisms.
- Listeria monocytogenes is a foodborne pathogen that can cause intestinal and systemic disease.
- The role of the Muc2 barrier in L. monocytogenes intestinal colonization and dissemination is not well understood.
Purpose of the Study:
- To investigate the role of Muc2 in host defense against L. monocytogenes infection.
- To determine how Muc2 influences L. monocytogenes colonization and systemic spread after oral exposure.
Main Methods:
- Orogastric infection model using L. monocytogenes in wild-type and Muc2-deficient mice.
- Assessment of mortality, colonic pathology, and pathogen burdens in various organs.
- Intraperitoneal infection model to differentiate systemic effects.
- Use of a barcoded L. monocytogenes library to analyze intrahost population dynamics.
Main Results:
- Muc2-deficient mice exhibited higher mortality, colonic pathology, and pathogen burdens compared to wild-type mice after orogastric challenge.
- Pathogen burdens were similar in both groups after intraperitoneal administration, indicating Muc2's role is specific to oral infection.
- Muc2 deficiency led to larger founding pathogen populations and suggested the colon as the primary source for systemic seeding.
Conclusions:
- Muc2 mucin is essential for controlling L. monocytogenes intestinal colonization and preventing systemic dissemination.
- The Muc2 barrier significantly impacts L. monocytogenes population dynamics during infection.
- Targeting the Muc2 barrier could be a strategy to combat L. monocytogenes infections.

