In vitro modelling of oral microbial invasion in the human colon
Etienne Mesmin, L.; Meslier, V.; Uriot, O.; Fournier, E.; Deschamps, C.; Denis, S.; David, A.; Jegou, S.; Morabito, C.; Quinquis, B.; Thirion, F.; Plaza Onate, F.; Le Chatelier, E.; Ehrlich, S. D.; Blanquet-Diot, S.; Almeida, M.
Show abstract
Recent advances in the human microbiome characterization have revealed significant oral microbial detection in stools of dysbiotic patients. However, little is known about the potential interactions of these invasive oral microorganisms with commensal intestinal microbiota and host. In this proof of concept study, we propose a new model of oral to gut invasion by the combined use of an in vitro model simulating both the physicochemical and microbial (lumen and mucus-associated microbes) parameters of the human colon (M-ARCOL), a salivary enrichment protocol and whole metagenome shotgun sequencing. Oral invasion of the intestinal microbiota was simulated by injection of enriched saliva in the in vitro colon model inoculated with faecal sample from the same healthy adult donor. The mucosal compartment of M-ARCOL was able to retain the highest species richness levels over time, whilst it decreased in the luminal compartment. This study also showed that oral microorganisms preferably colonized the mucosal microenvironment, suggesting potential oral-to-intestinal mucosal competitions. This new model of oral-to-gut invasion can provide useful mechanistic insights into the role of oral microbiome in various disease processes.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Short-term supplementation of celecoxib shifted butyrate production and ameliorated inflammation on a simulated model of the gut microbial ecosystem 96%
- Impact of the RaS-RiPP tryglysin and culturing conditions on ex-vivo oral microbiomes. 95%
- Microbiome-Dependent Functional Responses to Structurally Distinct Oligosaccharides Revealed by Metaproteomics 95%
Similar papers in this journal
- Diversity in Chemical Subunits and Linkages: A Key Molecular Determinant of Microbial Richness, Microbiota Interactions, and Substrate Utilization 95%
- High-throughput single-cell isolation of Bifidobacterium strains from the gut microbiome 95%
- Statistical evaluation of metaproteomics and 16s rRNA amplicon sequencing techniques for the study of the gut microbiota establishment of infants with cystic fibrosis 94%
Similar papers in this journal
- Fusobacterium nucleatum metabolically integrates commensals and pathogens in oral biofilms 95%
- Temporal dynamics of gut microbiomes in non-industrialized urban Amazonia 95%
- Metabolic network construction reveals probiotic-specific alterations in the metabolic activity of a synthetic small intestinal community 95%
Similar papers in this journal
- Defining the resilience of the human salivary microbiota by a 520 days longitudinal study in confined environment: the Mars500 mission 95%
- Single-cell genomics of uncultured bacteria reveals dietary fiber responders in the mouse gut microbiota 95%
- Upper respiratory microbial communities of healthy populations are shaped by niche and age 94%
Similar papers in this journal
- Enhancing Recovery from Gut Microbiome Dysbiosis and Alleviating DSS-Induced Colitis in Mice with a Consortium of Rare Short-Chain Fatty Acid-Producing Bacteria 95%
- A history of repeated antibiotic usage leads to microbiota-dependent mucus defects 95%
- Species- and strain-level assessment using rrn long-amplicons suggests donor's influence on gut microbial transference via fecal transplants in metabolic syndrome subjects 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.