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.

Abstract

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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