Reduction of fungal dysbiosis is involved in the attenuation of Dextran Sodium Sulfate-Induced Mouse Colitis Mediated by GILZ protein and yeast extract compound
Gentili, M.; Nunzi, E.; Sabbatini, S.; Lusenti, E.; Cari, L.; Mencacci, A.; Ballet, N.; Migliorati, G.; Riccardi, C.; Ronchetti, S.; Monari, C.
Show abstract
Inflammatory bowel diseases (IBD), such as Crohns disease and ulcerative colitis, have a complex and multifactorial pathogenesis that remains not fully elucidated. Recent research suggests that intestinal fungal dysbiosis may contribute to the development and persistence of IBD. In this study, we explored, for the first time, the effects of the glucocorticoid-induced leucine zipper (GILZ) protein, known to have protective effects on the gut mucosa in preclinical IBD models, in combination with a yeast extract, which supports the growth of beneficial microorganisms, in a mouse model of ulcerative colitis. The combined treatment produced significant protection against severe disease outcomes in the mice, including the restoration of intestinal barrier integrity and the reduction of pro-inflammatory cytokines. Specifically, GILZ primarily acted on the gut permeability, while the yeast extract mainly reduced pro-inflammatory cytokines. Notably, both treatments were effective in restoring the intestinal burden of clinically important Candida and former Candida species. Analysis of the intestinal fungal communities revealed that both treatments were able to reduce colitis-associated fungal dysbiosis, promoting a fungal composition similar to that of healthy mice. This effect was mainly the result of a decreased abundance of the Meyerozima genus, which was dominant in the colitic mice. Thus, combined treatment regimens with the GILZ protein and yeast extract could represent a new strategy for the treatment of inflammatory bowel diseases, by targeting multiple mechanisms at the basis of IBD, including the fungal dysbiosis. IMPORTANCEInflammatory bowel diseases (IBD), including Crohns disease and ulcerative colitis, are characterized by chronic inflammation and have a complex, multifactorial pathogenesis that is not yet fully understood. Currently, no established therapeutic strategy can consistently manage IBD effectively. Recent research indicates that intestinal fungal dysbiosis could potentially contribute to the development and persistence of chronic IBD, highlighting the importance of investigating alternative therapeutic strategies able to attenuate fungal dysbiosis in the context of intestinal inflammation. In this study, we demonstrate that a combination of a recombinant protein (GILZp) and a compound with prebiotic properties could represent a new therapeutic strategy for the treatment of IBD, as it not only decreases inflammation and restores the integrity of the epithelial barrier, but reduces fungal dysbiosis associated with DSS-induced colitis.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Effects of four antibiotics on the diversity of the intestinal microbiota 96%
- Statistical evaluation of metaproteomics and 16s rRNA amplicon sequencing techniques for the study of the gut microbiota establishment of infants with cystic fibrosis 94%
- Activated carbon ameliorates type 2 diabetes via metabolic remodeling of the gut microbiota 94%
Similar papers in this journal
- Higher prevalence of Bacteroides fragilis in Crohn's disease exacerbations and strain-dependent increase of epithelial resistance 94%
- Profiling of oral microbiota and cytokines in COVID-19 patients 94%
- Alteration of pro-carcinogenic gut microbiota is associated with clear cell renal cell carcinoma tumorigenesis 94%
Similar papers in this journal
- Steamed broccoli sprouts alleviate DSS-induced inflammation and retain gut microbial biogeography in mice. 96%
- Elemental diet enriched in amino acids alters gut microbial community and prevents colonic mucus degradation in mice with colitis 96%
- Physical activity shapes the intestinal microbiome and immunity of healthy mice but has no protective effects against colitis in MUC2-/- mice 95%
Similar papers in this journal
- Dietary xanthan gum alters antibiotic efficacy against the murine gut microbiota and attenuates Clostridioides difficile colonization 95%
- Dextran sodium sulfate-induced colitis alters the proportion and composition of replicating gut bacteria 95%
- Intestinal dysbiosis in carbapenem-resistant Enterobacteriaceae carriers 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.