A high-carbohydrate diet prolongs dysbiosis and Clostridioides difficile carriage and increases late-onset CDI and mortality in a hamster model of infection
Bhute, S.; Mefferd, C. C.; Phan, J. R.; Ahmed, M.; Fox-King, A. E.; Alarcia, S.; Villarama, J. V.; Abel-Santos, E.; Hedlund, B. P.
Show abstract
Studies using mouse models of Clostridioides difficile infection (CDI) have demonstrated a variety of relationships between dietary macronutrients on antibiotic-associated CDI; however, few of these effects have been examined in hamster models of CDI. In this study, we investigated the effect of a high-carbohydrate diet previously shown to protect mice from CDI on the progression and resolution of CDI in a hamster disease model. Hamsters fed the high-carbohydrate diet developed distinct diet-specific microbiomes during antibiotic treatment and CDI, with lower diversity, persistent C. difficile carriage, and delayed microbiome restoration. In contrast to 0% mortality in mice, 80% of hamsters fed the high-carbohydrate diet developed fulminant CDI and died, including several cases of late-onset CDI, whereas only 33% of hamsters fed a standard lab diet developed CDI only during the acute phase. We speculate that prolonged dysbiosis in these animals allowed C. difficile to proliferate following a three-day vancomycin course administered as part of this model system, leading to secondary CDI and eventual mortality. This study, along with similar studies in mouse models of CDI, suggests high-carbohydrate diets promote antibiotic-associated dysbiosis and long-term C. difficile carriage, which may convert to symptomatic CDI when conditions change. ImportanceThe effects of diet on CDI are not completely known, although most studies in mouse CDI models show that dietary carbohydrates ameliorate CDI. Here, we used a high-carbohydrate diet previously shown to protect mice against CDI to assess its effect on a hamster model of CDI and paradoxically found that it promoted dysbiosis, C. difficile carriage, and higher mortality. A common thread in both mouse and hamster experimental models was that the high-carbohydrate diet promoted long-term carriage of C. difficile, which may have converted to fulminant CDI only in the highly susceptible hamster model system. If diets high in carbohydrates also promote dysbiosis and C. difficile carriage in humans, then these diets might paradoxically increase chances of CDI relapse despite their protective effects against primary CDI.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- A high-fat/high-protein, Atkins-type diet exacerbates Clostridioides (Clostridium) difficile infection in mice, whereas a high-carbohydrate diet protects 99%
- Early life exposure to broccoli sprouts confers stronger protection against enterocolitis development in an immunological mouse model of inflammatory bowel disease. 97%
- Steamed broccoli sprouts alleviate DSS-induced inflammation and retain gut microbial biogeography in mice. 97%
Similar papers in this journal
- Dietary xanthan gum alters antibiotic efficacy against the murine gut microbiota and attenuates Clostridioides difficile colonization 97%
- Dextran sodium sulfate-induced colitis alters the proportion and composition of replicating gut bacteria 94%
- Clearance of Clostridioides difficile colonization is associated with antibiotic-specific bacterial changes 94%
Similar papers in this journal
Similar papers in this journal
- Diet influences community dynamics following vaginal group B Streptococcus colonization 96%
- Short term tomato consumption alters the pig gut microbiome towards a more favorable profile 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
- Ursodeoxycholic acid (UDCA) mitigates the host inflammatory response during Clostridioides difficile infection by altering gut bile acids which attenuates NF-κB signaling via bile acid activated receptors 95%
- Aging dampens the intestinal innate immune response during Clostridioides difficile infection and is associated with altered intestinal eosinophil mobilization 94%
- Neonatal enteropathogenic Escherichia coli infection disrupts microbiota-gut-brain axis signaling 94%
"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.