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DNA Methylation, Aging, and Cancer

Himani Vaidya, Jaroslav Jelı́nek, Jean‐Pierre J. Issa

Epigenomes · 2025 · ▲ 19 citations

Abstract

Aging and cancer, though distinct biological processes, share overlapping molecular pathways, particularly in epigenetic regulation. Among these, DNA methylation is central to mediating gene expression, maintaining cellular identity, and regulating genome stability. This review explores how age-associated changes in DNA methylation, characterized by both global hypomethylation and focal hypermethylation, contribute to the emergence of cancer. We discuss mechanisms of DNA methylation drift, the development of epigenetic clocks, and the role of entropy and epigenetic mosaicism, in aging and tumorigenesis. Emphasis is placed on how stochastic methylation errors accumulate in aging cells and lead to epiallelic shifts and gene silencing, predisposing tissues to malignant transformation, even despite recently increased cancer incidences at younger ages. We also highlight the translational potential of DNA methylation-based biomarkers, and therapeutic targets, in age-related diseases. By framing cancer as a disease of accelerated epigenetic aging, this review offers a unifying perspective and calls for age-aware approaches to both basic research and clinical oncology.

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Provenance

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OpenAlex
DOI
10.3390/epigenomes9020018
Canonical
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2026-07-22 MST

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APA
Vaidya, H., Jelı́nek, J., &amp; Issa, J.J. (2025). DNA Methylation, Aging, and Cancer. <em>Epigenomes</em>. https://doi.org/10.3390/epigenomes9020018
Vancouver
Vaidya H, Jelı́nek J, Issa JJ. DNA Methylation, Aging, and Cancer. Epigenomes. 2025. doi:10.3390/epigenomes9020018.
BibTeX
@article{himani2025DNAMet, title = {DNA Methylation, Aging, and Cancer}, author = {Himani Vaidya and Jaroslav Jelı́nek and Jean‐Pierre J. Issa}, journal = {Epigenomes}, year = {2025}, doi = {10.3390/epigenomes9020018}, }

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