Westernized diet related arachidonic acid metabolism expands DNA error-prone growth factor-dependent colonic quiescent stem cells in adolescent mice

Abstract Given the association between early-onset colorectal cancer (eoCRC) and insulin resistance (IR), we investigated the effects of westernized diet (WD)-induced IR on intestinal stem cells (ISCs) by in-depth phenotyping three adolescent mouse models of escalating WD-driven IR. WD-related hyperlipidaemia and hyperglycaemia enhanced ω6-polyunsaturated fatty acid (PUFA) metabolism, while inhibiting glucose metabolism, resulting in colonic epithelial cell (EC) energy deficiency, hypoproliferation, and quiescent ISCs (qISC) expansion. WD-induced systemic IR provoked colonic EC IR, reduced ω6-PUFA metabolism, which was compensated by aberrated triglyceride metabolism and growth factor receptor signalling, causing hyperproliferation of expanded qISCs. Combined with single-cell transcriptomic data and colonic 3D-organoid analysis we revealed that the ω6-PUFA arachidonic acid inhibited glucose uptake, favouring colonic EC IR driven expansion of the lipid-dependent inherently DNA-mismatch prone qISC compartment in expense of the insulin-dependent LGR5 + ISCs. Overall, our findings may open new alleys for targeted nutritional interventions in eoCRC prevention.

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Publication Details

Journal
Cell Death and Disease
Published
2026-09-14
DOI
https://doi.org/10.1038/s41419-026-09240-9
Primary Topic
Cancer Cells and Metastasis
Type
article
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article

Westernized diet related arachidonic acid metabolism expands DNA error-prone growth factor-dependent colonic quiescent stem cells in adolescent mice

C. Sadik, Senad Divanovic, Peter Jülg, Larissa N. Almeida et al.
Cell Death and Disease
Cancer Cells and Metastasis
article

Westernized diet related arachidonic acid metabolism expands DNA error-prone growth factor-dependent colonic quiescent stem cells in adolescent mice

C. Sadik, Senad Divanovic, Peter Jülg, Larissa N. Almeida, Annika Raschdorf, Laura Nickel, Darko Castven, Walter Raasch, Franziska Schmelter, Stefanie Derer, Alexander Katalinic, Axel Künstner, Heidi Schlichting, Tobias Hutzenlaub, Lina Jegodzinski, H. Sültmann, Mohab Ragab, Annika Sünderhauf, Clarissa Gottschild, Jens U. Marquardt, Ruth Deck, Maren Hicken, Daniel Vondran, Lea Christiansen, Stefan Mertel, Nele Buchmann, Rudrik Weikamp, Daniel Margis, Henrike Wenk, Ines Richerzhagen, Sebastian Tornow, Hauke Busch, Nikolas von Bubnoff, Christian Sina, Luise Pötter, Martina Oberländer, Timo Gemoll
article en

Abstract

Abstract Given the association between early-onset colorectal cancer (eoCRC) and insulin resistance (IR), we investigated the effects of westernized diet (WD)-induced IR on intestinal stem cells (ISCs) by in-depth phenotyping three adolescent mouse models of escalating WD-driven IR. WD-related hyperlipidaemia and hyperglycaemia enhanced ω6-polyunsaturated fatty acid (PUFA) metabolism, while inhibiting glucose metabolism, resulting in colonic epithelial cell (EC) energy deficiency, hypoproliferation, and quiescent ISCs (qISC) expansion. WD-induced systemic IR provoked colonic EC IR, reduced ω6-PUFA metabolism, which was compensated by aberrated triglyceride metabolism and growth factor receptor signalling, causing hyperproliferation of expanded qISCs. Combined with single-cell transcriptomic data and colonic 3D-organoid analysis we revealed that the ω6-PUFA arachidonic acid inhibited glucose uptake, favouring colonic EC IR driven expansion of the lipid-dependent inherently DNA-mismatch prone qISC compartment in expense of the insulin-dependent LGR5 + ISCs. Overall, our findings may open new alleys for targeted nutritional interventions in eoCRC prevention.

Cell Death and DiseaseVol. 17(1)
Zero hunger
Openalex Percentile: Top 13%
Cancer Cells and Metastasis
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