Application of DNA methylation biomarkers for endometrial cancer management
- PMID: 18785809
- PMCID: PMC5650066
- DOI: 10.1586/14737159.8.5.607
Application of DNA methylation biomarkers for endometrial cancer management
Abstract
It has become clear that aberrant gene expression, via alterations in promoter methylation or histone acetylation, is a contributing factor for carcinogenesis, perhaps as important as genetic mutation. This is particularly evident in endometrial cancer, in which multiple genes are silenced through hypermethylation. In this review, we discuss the field of epigenetics and relevant techniques to characterize methylation and acetylation alterations. The CpG island methylator phenotype, epimutations and the effects of aging on methylation are also discussed. In endometrial cancer there is evidence that hypermethylation of relevant genes can be reversed using epigenetic inhibitors, resulting in re-expression of silenced genes. Preliminary data also suggest that a panel of methylation biomarkers could be useful for diagnosis and even screening in selected populations at high risk. This disease is particularly well suited for such a strategy given that the endometrium is readily accessible for testing and endometrial cancer precursors are well defined.
References
-
- Jemal A, Siegel R, Ward E, et al. Cancer statistics, 2008. CA Cancer J Clin. 2008;58:71–96. - PubMed
-
- Creutzberg CL, van Putten WL, Koper PC, et al. Surgery and postoperative radiotherapy versus surgery alone for patients with stage-1 endometrial carcinoma: multicentre randomised trial. PORTEC Study Group. Post Operative Radiation Therapy in Endometrial Carcinoma. Lancet. 2000;355:1404–1411. - PubMed
-
- Jereczek-Fossa B, Badzio A, Jassem J. Surgery followed by radiotherapy in endometrial cancer. Analysis of survival and patterns of failure. Int J Gynecol Cancer. 1999;9:285–294. - PubMed
-
- Bocker T, Ruschoff J, Fishel R. Molecular diagnostics of cancer predisposition. Hereditary non-polyposis colorectal carcinoma and mismatch repair defects. Biochim Biophys Acta. 1999;1423:O1–O10. - PubMed
-
- Esteller M. Epigenetic lesions causing genetic lesions in human cancer. Promoter hypermethylation of DNA repair genes. Eur J Cancer. 2000;36:2294–2300. Detailed review on hypermethylation of DNA repair genes in cancer as well as the intricate connection between epigenetic events and genetic lesions. - PubMed
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