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Le Beyec, J.

Publications and source records attributed to Le Beyec, J..

2 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↗

The colon is an extra-pancreatic source of glucagon: demonstration in a mouse model of pancreatectomy

Glucagon is considered as a pancreas-specific hormone. However, an extra-pancreatic source of glucagon, which secretion is inappropriately induced by oral glucose, has been suspected for years in patients with diabetes. In a mouse model of subtotal pancreatectomy, we recapitulated the abnormal secretion of glucagon in response to oral glucose observed in pancreatectomised patients and excluded the remaining pancreas as the source of glucagon. We showed that the colon can produce and secrete glucagon. Subtotal pancreatectomy resulted in an increased expression of PCSK2 protease in the colon that favors the maturation of proglucagon into glucagon over other glucagon-related peptides normally produced by enteroendocrine cells. These results identify a mechanism that could contribute to abnormal glucagon production and poor glycemic control in pancreatectomized diabetic subjects. Moreover, our findings may pave the road to new therapeutic strategies to counteract poor glucose control for patients with diabetes.

physiology↗