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La metformina inibisce il complesso I mitocondriale nell'epitelio intestinale per favorire il controllo glicemico

Sebo Zachary L., Chakrabarty Ram P., Grant Rogan A., Dโ€™Alessandro Karis B., Koss Alec R., Blum Jenna L. E., Davidson Shawn M., Reczek Colleen R. et al. ยท 2025
PubMed 41256385 โ†—DOI: 10.1101/2025.10.02.678294bioRxiv

Abstract (in lingua originale)

Metformin is a therapeutically versatile biguanide drug primarily prescribed for type II diabetes. Despite its extensive use, the mechanisms underlying many of its clinical effects, including attenuated postprandial glucose excursions, elevated intestinal glucose uptake, and increased production of lactate, Lac-Phe and GDF15, remain unclear. Here, we map these and other clinical effects of metformin to intestine-specific mitochondrial complex I inhibition. Using human metabolomic data and an orthogonal genetics approach in male mice, we demonstrate that metformin suppresses citrulline synthesis, a metabolite generated exclusively by small intestine mitochondria, and increases GDF15 by inhibiting the mitochondrial respiratory chain at complex I. This inhibition co-opts the intestines to function as a glucose sink, driving uptake of excess glucose and converting it to lactate and Lac-Phe. Notably, the glucose-lowering effect of another biguanide, phenformin, and berberine, a structurally unrelated nutraceutical, similarly depends on intestine-specific mitochondrial complex I inhibition, underscoring a shared therapeutic mechanism.
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