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Published on: March 1, 2020
Epigenetic targeting of ovarian cancer stem cells
Yinu Wang1, Horacio Cardenas2, Fang Fang1
1Medical Sciences Program, Indiana University School of Medicine, Bloomington, Indiana.
Abstract:
Emerging results indicate that cancer stem-like cells contribute to chemoresistance and poor clinical outcomes in many cancers, including ovarian cancer. As epigenetic regulators play a major role in the control of normal stem cell differentiation, epigenetics may offer a useful arena to develop strategies to target cancer stem-like cells. Epigenetic aberrations, especially DNA methylation, silence tumor-suppressor and differentiation-associated genes that regulate the survival of ovarian cancer stem-like cells (OCSC). In this study, we tested the hypothesis that DNA-hypomethylating agents may be able to reset OCSC toward a differentiated phenotype by evaluating the effects of the new DNA methytransferase inhibitor SGI-110 on OCSC phenotype, as defined by expression of the cancer stem-like marker aldehyde dehydrogenase (ALDH). We demonstrated that ALDH(+) ovarian cancer cells possess multiple stem cell characteristics, were highly chemoresistant, and were enriched in xenografts residual after platinum therapy. Low-dose SGI-110 reduced the stem-like properties of ALDH(+) cells, including their tumor-initiating capacity, resensitized these OCSCs to platinum, and induced reexpression of differentiation-associated genes. Maintenance treatment with SGI-110 after carboplatin inhibited OCSC growth, causing global tumor hypomethylation and decreased tumor progression. Our work offers preclinical evidence that epigenome-targeting strategies have the potential to delay tumor progression by reprogramming residual cancer stem-like cells. Furthermore, the results suggest that SGI-110 might be administered in combination with platinum to prevent the development of recurrent and chemoresistant ovarian cancer.
Insights
DNA hypomethylating agents like SGI-110 can reprogram ovarian cancer stem-like cells (OCSCs). This epigenetic therapy resensitizes OCSCs to platinum drugs, potentially preventing chemoresistance and recurrence.
Area of Science:
- Oncology
- Epigenetics
- Cancer Stem Cell Biology
Background:
- Cancer stem-like cells (CSCs) drive chemoresistance and poor outcomes in ovarian cancer.
- Epigenetic dysregulation, particularly DNA methylation, is crucial for ovarian cancer stem-like cell (OCSC) survival.
- Targeting CSCs via epigenetic modulation presents a promising therapeutic strategy.
Purpose of the Study:
- To investigate the potential of DNA hypomethylating agents to reverse OCSC phenotypes.
- To evaluate the efficacy of SGI-110, a novel DNA methyltransferase inhibitor, on OCSC characteristics.
- To determine if SGI-110 can resensitize OCSCs to platinum-based chemotherapy.
Main Methods:
- Assessed OCSC phenotype by aldehyde dehydrogenase (ALDH) expression.
- Treated OCSCs with low-dose SGI-110 and platinum agents (carboplatin).
- Evaluated tumor-initiating capacity, chemoresistance, gene reexpression, and tumor progression in preclinical models.
Main Results:
- ALDH(+) ovarian cancer cells exhibited stem-like properties, chemoresistance, and enrichment post-platinum therapy.
- SGI-110 treatment reduced OCSC stem-like traits and tumor-initiating capacity.
- SGI-110 resensitized OCSCs to platinum, induced differentiation-associated gene reexpression, and inhibited tumor progression.
Conclusions:
- Epigenome-targeting strategies, such as SGI-110, can reprogram OCSCs, offering a novel approach to combat chemoresistance.
- Combination therapy with SGI-110 and platinum may prevent the development of recurrent and chemoresistant ovarian cancer.
- Preclinical data support the potential of SGI-110 in managing residual OCSCs and delaying ovarian cancer progression.
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