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Pretreatment of Mice with Streptomycin Provides a<i>Salmonella enterica</i>Serovar Typhimurium Colitis Model That Allows Analysis of Both Pathogen and Host

Infection and Immunity · 2003 · Vol. 71(5) · pp. 2839–2858
Manja BarthelSiegfried HapfelmeierLeticia Quintanilla-Martı́nezMarcus KremerManfred RohdeMichael HogardtKlaus PfefferHolger RüssmannWolf‐Dietrich Hardt

Abstract

Salmonella enterica subspecies 1 serovar Typhimurium is a principal cause of human enterocolitis. For unknown reasons, in mice serovar Typhimurium does not provoke intestinal inflammation but rather targets the gut-associated lymphatic tissues and causes a systemic typhoid-like infection. The lack of a suitable murine model has limited the analysis of the pathogenetic mechanisms of intestinal salmonellosis. We describe here how streptomycin-pretreated mice provide a mouse model for serovar Typhimurium colitis. Serovar Typhimurium colitis in streptomycin-pretreated mice resembles many aspects of the human infection, including epithelial ulceration, edema, induction of intercellular adhesion molecule 1, and massive infiltration of PMN/CD18(+) cells. This pathology is strongly dependent on protein translocation via the serovar Typhimurium SPI1 type III secretion system. Using a lymphotoxin beta-receptor knockout mouse strain that lacks all lymph nodes and organized gut-associated lymphatic tissues, we demonstrate that Peyer's patches and mesenteric lymph nodes are dispensable for the initiation of murine serovar Typhimurium colitis. Our results demonstrate that streptomycin-pretreated mice offer a unique infection model that allows for the first time to use mutants of both the pathogen and the host to study the molecular mechanisms of enteric salmonellosis.

Salmonella and Campylobacter epidemiologyViral gastroenteritis research and epidemiologyEscherichia coli research studiesSalmonella entericaBiologyMicrobiologyMesenteric lymph nodesSalmonellaColitisLymphatic systemPathogenSalmonella infectionSerotype

MeSH terms

AnimalsBacterial ProteinsColitisDisease Models, AnimalFemaleIntestinesLactobacillusLymphoid TissueMice, Inbred C57BLPeyer's PatchesSalmonella Infections, AnimalSalmonella typhimuriumStreptomycinReceptors, Tumor Necrosis FactorMice

Funding

  • Deutsche Forschungsgemeinschaft
  • Volkswagen Foundation
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