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Feeding microbes to feed the Gut: inulin reprograms intestinal epithelial metabolism and proliferation through HIF1α
Raphael R Fagundes1, Sean P Colgan2,3
1Department of Cell & Chemical Biology, Leiden University Medical Center (LUMC), Leiden, The Netherlands.
Abstract:
Indigestible dietary fibers shape intestinal mucosal physiology, yet the mechanisms linking fiber-derived microbial activity to epithelial remodeling remain incompletely understood. In their recent study, Ribeiro Castro et al. revealed that the prebiotic inulin induces reprogramming of intestinal epithelial metabolism and proliferation through microbiota-dependent hypoxia and epithelial HIF1α activation. In this commentary, we discuss their findings and highlight the emerging concept that microbial fermentation and oxygen concentrations act as structured physiological signals that guide intestinal epithelial differentiation and crypt-villus dynamics. We further explore how these findings intersect with prior work on SCFA metabolism, butyrate-mediated ISC inhibition, and fructose-driven epithelial growth, and we discuss open questions regarding downstream HIF1α programs, niche accessibility, and immune‒epithelial crosstalk. Understanding how HIF1α calibrates this balance will be essential for safely leveraging prebiotics and microbiome-targeted interventions that promote mucosal health.
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