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Updated: Aug 6, 2026

Measuring Bacterial Load and Immune Responses in Mice Infected with Listeria monocytogenes
Published on: August 9, 2011
The mucosal phase of Listeria infection
E A Havell1, G R Beretich, P B Carter
1Department of Microbiology, Pathology and Parasitology, North Carolina State University, Raleigh, USA. Ed_Havell@ncsu.edu
Abstract:
Listeria monocytogenes is an enteroinvasive bacterial pathogen of man and animals. Listeriae have been shown capable of infecting the host by translocating from the intestinal lumen through Peyer's Patches (PP), however, results of experiments now indicate that these facultative intracellular parasites may also translocate through PP-independent routes. With regards to this, on occasion we observed that listeriae were absent from the PP of mice inoculated intragastrically with L. monocytogenes, but were present in the mesenteric lymph nodes of these same mice. These observations suggested that PP were not necessary for listerial translocation from the intestinal lumen. Two experimental approaches were used to determine whether luminal listeriae could indeed infect the host through PP-independent routes. First, since it is known that: 1) following the intragastric inoculation of L. monocytogenes, listeriae rapidly transit the length of the gastrointestinal tract and reside in the colonic lumen for up to a week, 2) the colon lacks PP, and 3) the descending colon and rectum are drained exclusively by the caudal lymph node (CLN), it was determined whether colonic listeriae could access the CLN. Inoculation of listeriae into the rectum of mice resulted in the infection of the CLN which indicated that PP were not required for listerial translocation. Second, since germfree SCID mice lack PP, it was determined whether listeriae could translocate from the intestinal lumen and infect these immunoincompetent mice. Shortly after the intragastric inoculation of L. monocytogenes into germfree SCID mice, listeriae were found in the mesenteries, livers and spleens. These results also indicate that PP are not required for listerial translocation from the intestinal lumen. One possible route of translocation from the intestinal lumen might occur by listeriae entering enterocytes. Results were obtained showing that listeriae were capable of entering cultured mouse small intestine enterocytes. Internalized listeriae were observed to multiply and spread intracellularly between enterocytes.
Insights
Listeria monocytogenes can infect hosts through Peyer
Area of Science:
- Microbiology
- Infectious Diseases
- Immunology
Background:
- Listeria monocytogenes is an enteroinvasive bacterial pathogen.
- Listeria infection typically occurs through translocation from the intestinal lumen via Peyer's Patches (PP).
- The necessity of Peyer's Patches for Listeria translocation is not fully understood.
Purpose of the Study:
- To investigate the role of Peyer's Patches in Listeria monocytogenes translocation from the intestinal lumen.
- To determine if Listeria monocytogenes can infect the host through Peyer's Patch-independent routes.
- To explore potential alternative pathways for Listeria translocation.
Main Methods:
- Rectal inoculation of L. monocytogenes in mice to assess translocation to the caudal lymph node (CLN), bypassing the colon's lack of PP.
- Intragastric inoculation of L. monocytogenes into germfree SCID mice, which lack PP, to observe systemic infection.
- In vitro experiments using cultured mouse small intestine enterocytes to observe Listeria entry and intracellular behavior.
Main Results:
- Listeria infection of the CLN following rectal inoculation demonstrated PP-independent translocation.
- Systemic infection (mesenteries, liver, spleen) in germfree SCID mice after intragastric L. monocytogenes inoculation confirmed PP-independent routes.
- Listeria monocytogenes were observed to enter, multiply, and spread intracellularly within cultured enterocytes.
Conclusions:
- Peyer's Patches are not essential for Listeria monocytogenes translocation from the intestinal lumen.
- Alternative PP-independent pathways, potentially involving enterocyte entry, facilitate Listeria infection.
- Listeria's ability to invade and spread within enterocytes suggests a significant role for these cells in infection.
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