Abstract

An epigenetic component, especially aberrant DNA methylation pattern, has been shown to be frequently involved in sporadic breast cancer development. A growing body of literature demonstrates that combination of agents, i.e. nucleoside analogues with dietary phytochemicals, may provide enhanced therapeutic effects in epigenetic reprogramming of cancer cells. Clofarabine (2-chloro-2′-fluoro-2′-deoxyarabinosyladenine, ClF), a second-generation 2′-deoxyadenosine analogue, has numerous anti-cancer effects, including potential capacity to regulate epigenetic processes. Our present study is the first to investigate the combinatorial effects of ClF (used at IC50 concentration) with epigallocatechin-3-gallate (EGCG, tea catechin) or genistein (soy phytoestrogen), at physiological concentrations, on breast cancer cell growth, apoptosis, and epigenetic regulation of retinoic acid receptor beta (RARB) transcriptional activity. In MCF7 and MDA-MB-231 cells, RARB promoter methylation and expression of RARB, modifiers of DNA methylation reaction (DNMT1, CDKN1A, TP53), and potential regulator of RARB transcription, PTEN, were estimated using methylation-sensitive restriction analysis (MSRA) and quantitative real-time polymerase chain reaction (qPCR), respectively. The combinatorial exposures synergistically or additively inhibited the growth and induced apoptosis of breast cancer cells, followed by RARB hypomethylation with concomitant multiple increase in RARB, PTEN, and CDKN1A transcript levels. Taken together, our results demonstrate the ability of ClF-based combinations with polyphenols to promote cancer cell death and reactivate DNA methylation-silenced tumor suppressor genes in breast cancer cells with different invasive potential.

Highlights

  • Breast cancer is a heterogeneous disease that constitutes the second most prevalent cancer in the world and major epidemiological problem [1]

  • Our present study is the first to investigate the combinatorial effects of ClF with polyphenols, EGCG, or genistein used at the range of physiological concentrations, on breast cancer cell growth, apoptosis, and epigenetic regulation of transcriptional activity of DNA methylation-silenced tumor suppressor genes, such as retinoic acid receptor beta (RARB) and PTEN

  • Our findings demonstrate that all the tested compounds, ClF, EGCG, and genistein, decrease breast cancer cell growth with low toxicity

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Summary

Introduction

Breast cancer is a heterogeneous disease that constitutes the second most prevalent cancer in the world and major epidemiological problem [1]. In the present study, we investigated the effects of ClF in combination with well-known and widely studied polyphenols: Epigallocatechin gallate (EGCG, tea catechin) or genistein (soy phytoestrogen), potent inhibitors of DNA methyltransferases (DNMTs) and modulators of histone modifications [38], on RARB methylation and expression in well-defined in vitro model of human breast cancer cell lines with different invasive potential. Our present study is the first to investigate the combinatorial effects of ClF (used at IC50 concentration) with polyphenols, EGCG, or genistein used at the range of physiological concentrations, on breast cancer cell growth, apoptosis, and epigenetic regulation of transcriptional activity of DNA methylation-silenced tumor suppressor genes, such as RARB and PTEN

ClF-Based Combinations with Polyphenols Inhibits Breast Cancer Cell Growth
Conclusions
Compounds
Cell Culture
DNA and RNA Isolation
F: CAGCCGTTCGGAGGATTATTC R
F: AAGCGCGTGTGCGAGGAGATCG R
Statistical Analysis

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