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Published on: June 20, 2015
Epigenetics of cancer stem cells: Pathways and therapeutics
Samriddhi Shukla1, Syed Musthapa Meeran1
1Laboratory of Cancer Epigenetics, Division of Endocrinology, CSIR-Central Drug Research Institute, Lucknow, India.
Background:
Epigenetic alterations including DNA methylation and histone modifications are the key factors in the differentiation of stem cells into different tissue subtypes. The generation of cancer stem cells (CSCs) in the process of carcinogenesis may also involve similar kind of epigenetic reprogramming where, in contrast, it leads to the loss of expression of genes specific to the differentiated state and regaining of stem cell-specific characteristics. The most important predicament with treatment of cancers includes the non-responsive quiescent CSC.
Scope Of Review:
The distinctive capabilities of the CSCs make cancer treatment even more difficult as this population of cells tends to remain quiescent for longer intervals and then gets reactivated leading to tumor relapse. Therefore, the current review is aimed to focus on recent advances in understanding the relation of epigenetic reprogramming to the generation, self-renewal and proliferation of CSCs.
Major Conclusion:
CSC-targeted therapeutic approaches would improve the chances of patient survival by reducing the frequency of tumor relapse. Differentiation therapy is an emerging therapeutic approach in which the CSCs are induced to differentiate from their quiescent state to a mature differentiated form, through activation of differentiation-related signalling pathways, miRNA-mediated alteration and epigenetic differentiation therapy. Thus, understanding the origin of CSC and their epigenetic regulation is crucial to develop treatment strategy against not only for the heterogeneous population of cancer cells but also to CSCs.
General Significance:
Characterizing the epigenetic marks of CSCs and the associated signalling cascades might help in developing therapeutic strategies against chemo-resistant cancers.
Insights
Epigenetic reprogramming drives cancer stem cell (CSC) generation and resistance. Targeting CSCs epigenetically offers a promising strategy to prevent tumor relapse and improve patient survival.
Area of Science:
- Stem cell biology
- Cancer biology
- Epigenetics
Background:
- Epigenetic alterations, including DNA methylation and histone modifications, are crucial for stem cell differentiation.
- Carcinogenesis involves epigenetic reprogramming, leading to cancer stem cells (CSCs) that lose differentiated gene expression and regain stem cell traits.
- Quiescent CSCs pose a significant challenge in cancer treatment due to their non-responsiveness.
Approach:
- This review focuses on recent advancements in understanding the role of epigenetic reprogramming in CSC generation, self-renewal, and proliferation.
- It examines the relationship between epigenetic modifications and the unique capabilities of CSCs.
- The review highlights the importance of characterizing CSC epigenetic marks and signaling pathways.
Key Points:
- CSCs exhibit distinctive capabilities, including prolonged quiescence and reactivation, contributing to tumor relapse.
- Epigenetic reprogramming is central to the maintenance and function of CSCs.
- Understanding CSC origins and epigenetic regulation is vital for effective cancer therapy.
Conclusions:
- Targeting CSCs epigenetically can enhance patient survival by reducing tumor relapse rates.
- Differentiation therapy, involving the induction of CSC differentiation, is an emerging therapeutic approach.
- Characterizing CSC epigenetic marks and signaling cascades may lead to strategies against chemo-resistant cancers.
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