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Chevarin, C.

Publications and source records attributed to Chevarin, C..

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Dietary emulsifiers and host inflammation synergistically drive genomic evolution of Crohn disease-associated E. coli toward enhanced pathogenicity

Background and AimsThe rising incidence of Crohns disease (CD) in Westernized countries has been linked to changes in diet and increased consumption of food additives, yet the mechanisms by which these factors fuel intestinal inflammation remain unclear. Adherent-invasive Escherichia coli (AIEC), a pathobiont involved in CD pathogenesis, lacks a clear genetic hallmark but exhibits intestinal colonization and virulence traits, raising questions about the evolutionary forces promoting its emergence among select individuals. Here, we investigated how chronic exposure to two common dietary emulsifiers, carboxymethylcellulose (CMC) and polysorbate 80 (P80), along with host inflammation, drives AIEC genomic evolution and pathogenic potential. MethodsWild-type and Il10-deficient mice were monocolonized with AIEC and chronically exposed to CMC, P80, or water. Bacterial isolates were collected and analyzed for genomic diversification, mutations, and phenotype both in vitro and in vivo. ResultsEmulsifiers accelerated AIEC genomic diversification and selected for mutations linked to increased motility, invasion, and pro-inflammatory activity. Moreover, dietary emulsifier-evolved strains displayed a marked fitness advantage in vivo, outcompeting their counterparts in murine hosts, with the greatest advantage observed when evolution occurred under inflammatory conditions. Notably, evolutionary pathways and phenotypic outcomes were shaped by both emulsifier and the hosts inflammatory status, highlighting synergy between diet and host genetics in fostering pro-inflammatory pathobionts. ConclusionThese findings provide an evolutionary framework connecting modern dietary habits to the emergence of pathogenic AIEC strains, and underscore the importance of dietary interventions in individuals at risk for inflammatory bowel disease.

microbiology↗

E. coli associated with Crohn's disease exhibit distinct strategies to colonize macrophages

Patients with Crohns disease exhibit abnormal colonization of the intestine by Proteobacteria, particularly the adherent-invasive Escherichia coli (AIEC) group. These bacteria are predominant in the mucus, adhere to epithelial cells, colonize them, and survive inside macrophages. We recently demonstrated that the acclimation of strain LF82 to phagolysosomal stress occurs in two distinct steps: first, a replication halt producing stress- tolerant persisters, and second, a replication phase that leads to the formation of Intracellular Bacterial Communities (IBC) organized with a biofilm-like matrix. Given the significant genomic diversity among strains with the AIEC phenotype, we conducted a comparative analysis of the genomes and macrophage colonization characteristics of 13 AIEC strains collected from patients during a clinical study conducts by the CHU of Clermont-Ferrand. Our results demonstrate that IBCs serve as replicative niches for all AIEC strains within macrophages. However, these strains form IBCs using different strategies, including varying levels of phagosome detoxification, distinct biofilm characteristics, and diverse macrophage responses. Our study reveals a strong positive correlation between vacuole acidification and persister induction that explains intracellular survival of the different strains. In addition, we revealed distinct AIEC dissemination strategies outside macrophages, which may contribute to the propagation of inflammation in the human host. These findings highlight that research on pathogens and pathobionts with plastic genomes should not rely solely on a few laboratory models.

microbiology↗