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Updated: Apr 12, 2026

Methylated DNA Immunoprecipitation
Published on: January 2, 2009
Epigenetic mechanisms in cancer: push and pull between kneaded erasers and fate writers
Ammad Ahmad Farooqi1, Jen-Yang Tang2, Ruei-Nian Li3
1Institute of Biomedical and Genetic Engineering (IBGE), KRL Hospital, Islamabad, Pakistan.
Abstract:
Research concerning the epigenome over the years has systematically and sequentially shown substantial development and we have moved from global inhibition of modifications of the epigenome toward identification and targeted therapy against tumor-specific epigenetic mechanisms. In accordance with this approach, several drugs with epigenetically modulating activity have received considerable attention and appreciation, and recently emerging scientific evidence is uncovering details of their mode of action. High-throughput technologies have considerably improved our existing understanding of tumor suppressors, oncogenes, and signaling pathways that are key drivers of cancer. In this review, we summarize the general epigenetic mechanisms in cancer, including: the post-translational modification of DNA methyltransferase and its mediated inactivation of Ras association domain family 1 isoform A, Sonic hedgehog signaling, Wnt signaling, Notch signaling, transforming growth factor signaling, and natural products with epigenetic modification ability. Moreover, we introduce the importance of nanomedicine for delivery of natural products with modulating ability to epigenetic machinery in cancer cells. Such in-depth and comprehensive knowledge regarding epigenetic dysregulation will be helpful in the upcoming era of molecular genomic pathology for both detection and treatment of cancer. Epigenetic information will also be helpful when nanotherapy is used for epigenetic modification.
Insights
Epigenetic research has advanced cancer therapy by targeting tumor-specific mechanisms. Nanomedicine enhances the delivery of natural products for epigenetic modification, aiding cancer detection and treatment.
Area of Science:
- Oncology
- Molecular Biology
- Genomic Pathology
Background:
- Epigenetic research has evolved from global inhibition to targeted therapies for cancer.
- High-throughput technologies have enhanced understanding of cancer drivers like oncogenes and tumor suppressors.
- Epigenetic dysregulation plays a crucial role in cancer development and progression.
Purpose of the Study:
- To review general epigenetic mechanisms in cancer.
- To highlight the role of natural products in epigenetic modification.
- To introduce nanomedicine's potential in delivering epigenetic therapies.
Main Methods:
- Review of current scientific literature on epigenetics in cancer.
- Summary of key epigenetic mechanisms including DNA methyltransferase modifications and signaling pathways.
- Discussion of natural products and nanomedicine applications.
Main Results:
- Detailed overview of epigenetic mechanisms in cancer, including specific signaling pathways (Sonic hedgehog, Wnt, Notch, TGF-β).
- Identification of DNA methyltransferase post-translational modification and its effect on tumor suppressor genes.
- Exploration of natural products with epigenetic modulating abilities.
Conclusions:
- Epigenetic dysregulation is a key area for cancer detection and treatment.
- Nanomedicine offers a promising approach for targeted delivery of epigenetic modifiers.
- Comprehensive knowledge of epigenetics is vital for future molecular genomic pathology.
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