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Published on: October 16, 2010
Epigenetic events associated with breast cancer and their prevention by dietary components targeting the epigenome
Shabana I Khan1, Pranapda Aumsuwan, Ikhlas A Khan
1National Center for Natural Products Research, University of Mississippi, University, Mississippi 38677, United States.
Abstract:
Aberrant epigenetic alterations in the genome such as DNA methylation and chromatin remodeling play a significant role in breast cancer development. Since epigenetic alterations are considered to be more easily reversible compared to genetic changes, epigenetic therapy is potentially very useful in reversing some of these defects. Methylation of CpG islands is an important component of the epigenetic code, and a number of genes become abnormally methylated in breast cancer patients. Currently, several epigenetic-based synthetic drugs that can reduce DNA hypermethylation and histone deacetylation are undergoing preclinical and clinical trials. However, these chemicals are generally very toxic and do not have gene specificity. Epidemiological studies have shown that Asian women are less prone to breast cancer due to their high consumption of soy food than the Caucasian women of western countries. Moreover, complementary/and or alternative medicines are commonly used by Asian populations which are rich in bioactive ingredients known to be chemopreventive against tumorigenesis in general. Examples of such agents include dietary polyphenols, (-)-epigallocatechin-3-gallate (EGCG) from green tea, genistein from soybean, isothiocyanates from plant foods, curcumin from turmeric, resveratrol from grapes, and sulforaphane from cruciferous vegetables. These bioactive components are able to modulate epigenetic events, and their epigenetic targets are known to be associated with breast cancer prevention and therapy. This approach could facilitate the discovery and development of novel drugs for the treatment of breast cancer. In this brief review, we will summarize the epigenetic events associated with breast cancer and the potential of some of these bioactive dietary components to modulate these events and thus afford new therapeutic or preventive approaches.
Insights
Aberrant epigenetic alterations drive breast cancer. Dietary bioactive compounds show potential for epigenetic therapy, offering a less toxic, more specific approach to breast cancer prevention and treatment.
Area of Science:
- Oncology
- Epigenetics
- Nutritional Science
Background:
- Aberrant epigenetic alterations, including DNA methylation and chromatin remodeling, are key drivers in breast cancer development.
- Epigenetic modifications are potentially reversible, making epigenetic therapy a promising avenue for reversing cancer-associated defects.
- Current synthetic epigenetic drugs face challenges with toxicity and gene specificity.
Purpose of the Study:
- To review epigenetic events implicated in breast cancer.
- To explore the potential of bioactive dietary components in modulating these epigenetic events for cancer prevention and therapy.
- To highlight novel therapeutic and preventive strategies for breast cancer.
Main Methods:
- Review of scientific literature on epigenetic alterations in breast cancer.
- Analysis of epidemiological data on dietary habits and breast cancer incidence.
- Examination of studies on the chemopreventive properties of bioactive dietary compounds.
Main Results:
- Specific epigenetic alterations, such as CpG island hypermethylation, are prevalent in breast cancer.
- Dietary components like EGCG, genistein, curcumin, and resveratrol can modulate epigenetic targets relevant to breast cancer.
- Asian populations exhibit lower breast cancer rates, potentially linked to soy consumption and use of traditional medicines.
Conclusions:
- Bioactive dietary components offer a promising, potentially less toxic, and more specific approach to breast cancer prevention and therapy.
- Modulating epigenetic events through diet represents a novel strategy for developing new breast cancer drugs.
- Further research into these natural compounds could lead to significant advancements in breast cancer treatment.
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