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Dumay, A.

Publications and source records attributed to Dumay, A..

3 recordsLinked to original sources

Early Colonic and Microbial Responses Precede Hyperphagia in Short Bowel Syndrome: Insights from a Rat Model

BackgroundShort bowel syndrome (SBS) resulting from extensive small bowel resection is characterized by severe malabsorption and represents the leading cause of intestinal failure. Although spontaneous intestinal adaptation can partially restore nutrient absorption, the temporal coordination and hierarchy of the adaptive mechanisms involved--particularly those linking the gut microbiota, enteroendocrine function, hyperphagia, and intestinal remodeling-- remain incompletely understood. MethodsWe investigated the kinetics of spontaneous intestinal adaptation in a rat model mimicking type 2 SBS over a 28-day postoperative period. Body weight, food intake, gastrointestinal transit, fecal losses, intestinal morphology, enteroendocrine hormone secretion, hypothalamic neuropeptide expression, and gut microbiota composition were assessed longitudinally in SBS and SHAM-operated rats. ResultsExtensive small bowel resection induced marked early weight loss, accelerated intestinal transit, diarrhea, and increased fecal energy losses that persisted throughout the follow-up. Profound gut microbiota remodeling occurred as early as day 7, remained largely stable thereafter, and was characterized by reduced diversity and enrichment in Lactobacillaceae and Enterobacteriaceae. Early elongation of remaining colon and epithelial remodeling were observed, preceding the jejunal hyperplasia, which became evident from day 14 onward. Enteroendocrine adaptation was marked by an early increase in plasma peptide YY levels, whereas glucagon-like peptide-1 showed a modest response. Food intake was increased in SBS rats from day 7 onward, and hyperphagia developed gradually and reached a plateau by the end of the third postoperative week, in parallel with increased hypothalamic AgRP levels and reduced POMC levels. No significant improvement of intestinal transit and fecal energy losses was observed during the study period. ConclusionIntestinal adaptation to extensive resection follows a time-dependent sequence in which early gut microbiota remodeling and colonic adaptation precede hyperphagia and small intestinal remodeling. These findings highlight the gut microbiota and the colon as central components of the early post-resection adaptation and potential therapeutic targets in SBS.

pathology↗

Comparative analysis of dietary iron deprivation and supplementation in a murine model of colitis

Inflammatory bowel diseases are chronic inflammatory conditions with growing prevalence in western populations. Iron is an essential component of erythrocytes hemoglobin. Under the influence of elevated hepcidin production, iron is sequestered in cells during inflammation which, in turn, leads to iron restriction for red blood cells synthesis. As a consequence, iron deficiency and anemia of inflammation are the most prevalent extraintestinal complications in IBD patients. Patients are thus treated with oral iron supplements that have limited efficacy as iron absorption is blunted during intestinal inflammation. Moreover, iron supplementation can cause intestinal complications and previous studies have shown that iron supplementation worsens the inflammatory response. However, a comparative analysis of the effects of low, adequate and high dietary iron content matching iron the supplementation given to patients has not been performed in mice. We therefore tested the impact of dietary iron deprivation and supplementation in a murine model of colitis induced by dextran sodium sulfate. We found that both dietary iron deprivation and supplementation were accompanied by a more severe inflammation with earlier signs of gastrointestinal bleeding compared to mice fed an iron adequate diet. The manipulation of dietary iron led to a comparable oxidative stress and a pronounced dysbiosis in the colon of control mice that differed depending on the dietary iron content. Analysis of these dysbiosis is in line with a pronounced susceptibility to colonic inflammation thus questioning the benefit/risk balance of oral iron supplementation for IBD patients.

pathology↗

Promoting intestinal healing by exclusive enteral nutrition with TGF-beta in a mouse model of colitis.

Background and aimsExclusive Enteral Nutrition (EEN) is the first line of treatment for pediatric Crohns disease (CD), but its mechanisms of action remain poorly understood. We studied EEN nutritional composition and TGF-{beta} effect in a mouse model of colitis, as well as the role of intestinal microbiota. MethodsMice were treated with Dextran Sulfate Sodium (DSS) during 5 days to induce colitis, until the inflammatory peak (day 7) or gut restitution (day 14). After DSS treatment, some of them received EEN formula such as Modulen IBD(R) (DM mice) or Infatrini Peptisorb(R) (DINF mice), with TGF-{beta} supplementation or neutralization, and clinical inflammation was evaluated. After sacrifice, macroscopic and microscopic inflammation were analyzed, as well as intestinal permeability (IP). The composition of mucosal colonic microbiota was analyzed and fecal microbiota transplantation was performed to evaluate its capacity to mediate anti-inflammatory and pro-regenerative effect. Colonic crypts from DSS and EEN mice were cultured as 3D organoids and cellular properties were analyzed. ResultsDSS mice developed colitis, as evidenced by the weight loss and clinical inflammation. It was accompanied by macroscopic inflammation such as colon thickness and edemas, and an elevated IP. In contrast, EEN mice with TGF-{beta} formula present faster weight recovery and decreased inflammatory parameters, with a normalized IP, suggesting gut restitution and functionality. These functional improvements were not obtained for EEN mice without TGF-{beta} formula. Moreover, EEN with Modulen IBD(R) (DM mice) modified the microbiota in comparison to DSS condition and attenuated inflammation. In addition, the organoids from DM mice colonic crypts treated had an enhanced survival, and re-epithelialization capacity. ConclusionsBoth EEN formula have anti-inflammatory properties, certainly by the nutritional composition. However, TGF-{beta} plays a significant role in intestinal restitution and restoring barrier function. These beneficial effects are partly mediated by the microbiota to maintain gut homeostasis.

physiology↗