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Published on: May 14, 2016
Epigenetic Activity of Cancer Therapy Drugs Revealed by HeLa TI Cell-Based Assay
Varvara Maksimova1, Valeriia Popova1, Alyona Kholodova1,2
1Department of Carcinogenesis Mechanisms, National Medical Research Center of Oncology Named After N.N. Blokhin, Ministry of Health of Russia, Moscow 115478, Russia.
Background/Objectives:
The aberrant epigenetic landscape of cancer cells has attracted wide attention, motivating the search for new epigenetically active drugs both for anticancer therapy and for overcoming the drug resistance promoted by epigenetic changes. The use of epi-drugs in cancer therapy requires consideration of the influence of applied treatment on epigenetic regulation of gene expression. Therefore, it is reasonable to screen epigenetically active compounds among the drugs widely used in clinical oncology.
Methods:
We applied the HeLa TI cell-based assay to analyze the epigenetic activity of 40 drugs including 22 chemotherapeutic, 2 immunotherapeutic, 13 targeted, and 3 palliative agents. Reactivation of the epigenetically silenced GFP reporter gene integrated into the genome of HeLa TI cells was assessed using flow cytometry.
Results:
Statistically significant increases in the proportions of GFP-positive cells were demonstrated for the alkylating agent chlorambucil; the antimetabolites cytarabine, fluorouracil, gemcitabine, and pemetrexed; the platinum-based compounds cisplatin, and oxaliplatin; the topoisomerase inhibitor topotecan; and the antimicrotubule agents docetaxel, vincristine, and eribulin. Epigenetic activity was also detected for the targeted-therapy agents AZD8055, wortmannin, and cetuximab, as well as for the corticosteroid dexamethasone. Thus, epigenetic activity was revealed for 15 drugs widely used in cancer therapy, which possess different modes of action.
Conclusions:
Our findings show that many anticancer therapy agents modulate the epigenetic landscape of cancer cells, providing a rationale for expanding their therapeutic applications and enhancing the efficacy of combination strategies by overcoming epigenetically driven chemoresistance.
Insights
Many cancer drugs can alter cancer cell epigenetics, potentially overcoming drug resistance. This study screened 40 clinical drugs, finding 15 with epigenetic activity, supporting broader therapeutic use.
Area of Science:
- Oncology
- Epigenetics
- Pharmacology
Background:
- Aberrant epigenetic modifications are hallmarks of cancer.
- Epigenetic changes contribute to cancer drug resistance.
- New epigenetically active drugs are needed for cancer therapy.
Purpose of the Study:
- To screen clinically used cancer drugs for epigenetic activity.
- To identify compounds that can modulate the cancer cell epigenetic landscape.
- To explore novel therapeutic applications for existing cancer drugs.
Main Methods:
- Utilized a HeLa TI cell-based assay to assess epigenetic activity.
- Measured reactivation of a silenced GFP reporter gene.
- Analyzed 40 drugs across chemotherapeutic, immunotherapeutic, targeted, and palliative categories using flow cytometry.
Main Results:
- Fifteen of 40 screened drugs demonstrated statistically significant epigenetic activity.
- Epigenetic modulation observed for alkylating agents, antimetabolites, platinum-based compounds, topoisomerase inhibitors, and antimicrotubule agents.
- Targeted therapy agents and a corticosteroid also exhibited epigenetic effects.
Conclusions:
- Many anticancer agents possess inherent epigenetic activity.
- This finding supports expanding therapeutic applications of these drugs.
- Combination strategies could enhance efficacy by overcoming epigenetic chemoresistance.
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