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Epigenetic aging of colorectal mucosa in cancer development

Sheetal Hardikar, Biljana Gigic, Jacob K Kresovich, Victoria Damerell, Caroline Himbert, Jennifer Ose, Adetunji T Toriola, David Shibata, Christopher I Li, Jane C Figueiredo, Doratha A Byrd, Erin M Siegel, Christoph Kahlert, Alexander Brobeil, Peter Schirmacher, Cornelia M Ulrich, Timothy M Barrow

JNCI: Journal of the National Cancer Institute · 2026

Vollständiger Abstract

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Abstract Background The past decade has seen the development of epigenetic models of aging that accurately estimate chronological age and predict disease incidence and mortality. These estimates are modulated by lifestyle and environmental factors linked to carcinogenesis, but to date this has primarily been studied in blood. Methods We examined epigenetic aging in normal colonic tissue (n = 96), adjacent mucosa (n = 245) and tumors (n = 208), using models trained on age (Horvath, Hannum, Zhang), mortality (PhenoAge, GrimAge), aging rate (DunedinPACE), cellular mitotic history (EpiTOC, epiTOC2, miAGe), and telomere length (DNAmTL). Results The Horvath model was the most accurate estimator of chronological age in normal colonic mucosa, with high correlation (r > 0.70) between the Horvath, Hannum, Zhang, PhenoAge and GrimAge models, and between mitotic clocks (r > 0.94). All models showed similar performance in normal tissue and adjacent mucosa, but substantially more variation in estimates in tumors. Significant differences in age acceleration were present between normal and adjacent mucosa by six models (Hannum, Zhang, PhenoAge, EpiTOC, epiTOC2 and miAge), while tumors showed highly significant differences by all models. Age acceleration differed by region of the colon, with varying patterns by model type. Physical activity (PhenoAge), smoking history (GrimAge), and alcohol consumption (Horvath, mitotic clocks) were associated with epigenetic aging in adjacent mucosa, while smoking history, smoking intensity, and alcohol consumption were associated with DNAmTL in tumors. Conclusions Our study reveals an impact of tissue type, region, and lifestyle factors on epigenetic aging, but also highlights significant heterogeneity between models and the need for careful consideration within study design.

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Autor:innen
Sheetal Hardikar, Biljana Gigic, Jacob K Kresovich, Victoria Damerell, Caroline Himbert, Jennifer Ose, Adetunji T Toriola, David Shibata, Christopher I Li, Jane C Figueiredo, Doratha A Byrd, Erin M Siegel, Christoph Kahlert, Alexander Brobeil, Peter Schirmacher, Cornelia M Ulrich, Timothy M Barrow
Quelle
JNCI: Journal of the National Cancer Institute
Publikation
2026-01-01
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Nicht angegeben
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Nicht angegeben
ISSN / ISBN
0027-8874, 1460-2105
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Sheetal Hardikar, Biljana Gigic, Jacob K Kresovich, Victoria Damerell, Caroline Himbert, Jennifer Ose, Adetunji T Toriola, David Shibata, Christopher I Li, Jane C Figueiredo, Doratha A Byrd, Erin M Siegel, Christoph Kahlert, Alexander Brobeil, Peter Schirmacher, Cornelia M Ulrich, Timothy M Barrow (2026). Epigenetic aging of colorectal mucosa in cancer development. JNCI: Journal of the National Cancer Institute. https://doi.org/10.1093/jnci/djag297
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