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Peer-reviewed veterinary case report

Contribution of bacterial and host factors to pathogen "blooming" in a gnotobiotic mouse model forserovar Typhimurium-induced enterocolitis.

Journal:
Infection and immunity
Year:
2024
Authors:
Beutler, Markus et al.
Affiliation:
Max von Pettenkofer Institute of Hygiene and Medical Microbiology · Germany
Species:
rodent

Abstract

Inflammation has a pronounced impact on the intestinal ecosystem by driving an expansion of facultative anaerobic bacteria at the cost of obligate anaerobic microbiota. This pathogen "blooming" is also a hallmark of entericserovar Typhimurium (. Tm) infection. Here, we analyzed the contribution of bacterial and host factors to. Tm "blooming" in a gnotobiotic mouse model for. Tm-induced enterocolitis. Mice colonized with the Oligo-Mouse-Microbiota (OMM), a minimal bacterial community, develop fulminant colitis by day 4 after oral infection with wild-type. Tm but not with an avirulent mutant. Inflammation leads to a pronounced reduction in overall intestinal bacterial loads, distinct microbial community shifts, and pathogen blooming (relative abundance >50%).. Tm mutants attenuated in inducing gut inflammation generally elicit less pronounced microbiota shifts and reduction in total bacterial loads. In contrast,. Tm mutants in nitrate respiration, salmochelin production, and ethanolamine utilization induced strong inflammation and. Tm "blooming." Therefore, individual-specific inflammation-fitness factors seem to be of minor importance for competition against this minimal microbiota in the inflamed gut. Finally, we show that antibody-mediated neutrophil depletion normalized gut microbiota loads but not intestinal inflammation or microbiota shifts. This suggests that neutrophils equally reduce pathogen and commensal bacterial loads in the inflamed gut.

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Original publication: https://pubmed.ncbi.nlm.nih.gov/38189339/