Translational epigenetics: clinical approaches to epigenome therapeutics for cancer
S Duygu Selcuklu1, Charles Spillane
1Genetics & Biotechnology Lab, Department of Biochemistry & Biosciences Institute, University College Cork, Cork, Ireland.
Abstract:
Cancer epigenetics research is now entering an exciting phase of translational epigenetics whereby novel epigenome therapeutics is being developed for application in clinical settings. Epigenetics refers to all heritable and potentially reversible changes in gene or genome functioning that occurs without altering the nucleotide sequence of the DNA. A range of different epigenetic "marks" can activate or repress gene expression. While epigenetic alterations are associated with most cancers, epigenetic dysregulation can also have a causal role in cancer etiology. Epigenetically disrupted stem or progenitor cells could have an early role in neoplastic transformations, while perturbance of epigenetic regulatory mechanisms controlling gene expression in cancer-relevant pathways will also be a contribution factor. The reversibility of epigenetic marks provides the possibility that the activity of key cancer genes and pathways can be regulated as a therapeutic approach. The growing availability of a range of chemical agents which can affect epigenome functioning has led to a range of epigenetic-therapeutic approaches for cancer and intense interest in the development of second-generation epigenetic drugs (epi-drugs) which would have greater specificity and efficacy in clinical settings. The latest developments in this exciting arena of translational cancer epigenetics were presented at a recent conference on "Epigenetics and New Therapies in Cancer" at the Spanish National Cancer Research Center (CNIO), Spain.
Insights
Cancer epigenetics research is advancing to clinical applications with novel epigenome therapeutics. The reversibility of epigenetic marks offers a promising strategy for regulating cancer genes and developing more effective treatments.
Area of Science:
- Oncology
- Genetics
- Molecular Biology
Background:
- Epigenetics involves heritable, reversible changes in gene function without altering DNA sequence.
- Epigenetic alterations are linked to cancer development and progression.
- Epigenetic dysregulation can play a causal role in cancer etiology.
Framework:
- Epigenetic marks (e.g., methylation, acetylation) control gene expression.
- Epigenetically disrupted stem cells may initiate neoplastic transformations.
- Perturbations in epigenetic regulation impact cancer-relevant pathways.
Implementation:
- The reversibility of epigenetic marks enables therapeutic targeting of cancer genes.
- Chemical agents affecting epigenome functioning are being developed as epigenetic therapies.
- Research focuses on second-generation epigenetic drugs (epi-drugs) for enhanced specificity and efficacy.
Implications:
- Translational epigenetics offers novel therapeutic approaches for cancer treatment.
- Epigenetic drugs (epi-drugs) show promise for clinical application.
- Advancements in epigenetics are driving the development of more effective cancer therapies.
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