Development and Characterization of a Weaned Pig Model of Shiga Toxin-Producing E. coli-Induced Gastrointestinal Disease
Boeckman, J. X.; Sprayberry, S.; Korn, A. M.; Suchodolski, J. S.; Paulk, C.; Genovese, K. J.; Rech, R. R.; Giarettta, P. R.; Blick, A.; Callaway, T.; Gill, J. J.
Show abstract
Post-weaning enteropathies in swine caused by pathogenic E. coli, such as post-weaning diarrhea (PWD) or edema disease (ED), remain a significant problem for the swine industry. Reduction in the use of antibiotics over concerns of antibiotic resistance and public health concerns, necessitate the evaluation of effective antibiotic alternatives to prevent significant loss of livestock and/or reductions in swine growth performance. For this purpose, an appropriate piglet model of enterotoxigenic E. coli enteropathy is required. In this study, we attempted to induce clinical signs of post-weaning disease in a piglet model using a one-time acute or lower daily chronic dose of a Shiga toxin-producing and enterotoxigenic E. coli strain. The induced disease state was monitored by determining fecal shedding and colonization of the challenge strain, animal growth performance, cytokine levels, fecal calprotectin, histology, fecal metabolomics, and fecal microbiome shifts. The most informative analyses were colonization and shedding of the pathogen, serum cytokines, metabolomics, and targeted metagenomics to determine dysbiosis. Histopathological changes of the gastrointestinal (GI) tract and tight junction leakage as measured by fecal calprotectin concentrations were not observed. Chronic dosing was similar to the acute regimen suggesting that a high dose of pathogen, as used in many studies, may not be necessary. The piglet disease model presented here can be used to evaluate alternative PWD treatment options. Furthermore, this relatively mild disease model presented here may be informative for modeling human chronic gastrointestinal diseases, such as inflammatory bowel disease, which otherwise require invasive procedures for study. ImportancePost-weaning diarrhea remains a significant problem in swine production and appropriate models of pathogenesis are needed to test alternative treatment options. In this study, we present an E. coli induced piglet model for post-weaning diarrhea, and also explore its translational potential as a model for human intestinal inflammation. Our study here presents two firsts to our knowledge. 1) The first simultaneous analysis of the intestinal microbiome and metabolome through fecal sampling of piglets challenged with Shiga toxin-producing E. coli. This is valuable given the limited metabolomics data from swine in various disease states. 2) A comparison of the clinical signs caused by a daily chronic vs one-time dosing regimen of E. coli. This comparison is key as infection by pathogenic E. coli in real-world settings likely occurs from chronic exposure to contaminated food, water, or environment rather than the highly concentrated dose of pathogen that is commonly given in the literature.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Maternal and/or direct supplementation with a combination of a casein hydrolysate and yeast β-glucan on post-weaning performance and intestinal health in the pig 95%
- Comparative of probiotics reveals cecal microbial component associated with performance parameters in broilers 93%
- Selection for feed efficiency elicits different postprandial plasma metabolite profiles in response to poor hygiene of housing conditions in growing pigs 93%
Similar papers in this journal
- Small non-coding RNA CjNC110 influences motility, autoagglutination, AI-2 localization, hydrogen peroxide sensitivity and chicken colonization in Campylobacter jejuni 92%
- A Trifector of New Insights into Ovine Footrot for Infection Drivers, Immune Response and Host Pathogen Interactions 92%
- Simulated colonic fluid replicates the in vivo growth capabilities of Citrobacter rodentium cpxRA mutants and uncovers additive effects of Cpx regulated genes on fitness 92%
Similar papers in this journal
- Short term tomato consumption alters the pig gut microbiome towards a more favorable profile 96%
- Novel insights into the pig gut microbiome using metagenome-assembled genomes 94%
- A comparison of wild boar and domestic pig microbiota does not reveal a loss of microbial species but an increase in alpha diversity and opportunistic genera in domestic pigs 94%
Similar papers in this journal
- Florfenicol administration in piglets co-selects for multiple antimicrobial resistance genes 95%
- Early life exposure to broccoli sprouts confers stronger protection against enterocolitis development in an immunological mouse model of inflammatory bowel disease. 94%
- Steamed broccoli sprouts alleviate DSS-induced inflammation and retain gut microbial biogeography in mice. 94%
Similar papers in this journal
- Dietary xanthan gum alters antibiotic efficacy against the murine gut microbiota and attenuates Clostridioides difficile colonization 93%
- Degradation of the incretin hormone Glucagon-Like Peptide-1 (GLP-1) by Enterococcus faecalis metalloprotease GelE 92%
- Intestinal dysbiosis in carbapenem-resistant Enterobacteriaceae carriers 91%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.