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Isolated Hepatic Perfusion as a Treatment for Liver Metastases of Uveal Melanoma
Published on: January 25, 2015
Epidrugs in the Immunotherapy of Cutaneous and Uveal Melanoma
Mario Venza, Maria Visalli, Teresa Catalano
1Department of Clinical and Experimental Medicine, University of Messina, Messina, Italy Department of Clinical and Experimental Medicine - Azienda Policlinico Universitario G. Martino - Via Consolare Valeria, 1 - 98125 - Messina -. Italy.
Abstract:
Epigenetic modifications can affect numerous mechanisms used by neoplastic cells to evade immune control. In melanoma epigenetic defects, caused by dysregulations in the expression of genome writers, erasers, or readers, play a significant role in the reduced expression of molecules required for efficient immune recognition as well as antigen presentation and processing. Alterations in gene expression were identified in tumor-associated antigens (TAAs), human leukocyte antigen (HLA) complex, co-stimulatory/accessory molecules, antigen processing machinery (APM), and NKG2D ligands that have shown to be silenced or down-regulated in melanoma. In agreement with the inherent reversibility of epigenetic silencing, epigenetic drugs such as inhibitors of DNA methyltransferases (DNMTs), histone deacetylases (HDACs), histone methyltransferase enhancer of Zeste homolog 2 (EZH2), and modifiers of microRNA (miRNA) dysregulation or antagomirs can restore the expression of these molecules, favouring the recognition of cancer cells by immune responses, reducing the resistance to Natural Killer (NK) and cytotoxic T cells (CTL), and enhancing the functions of antigen presenting cells. Moreover, inhibitors of reader proteins seem to preferentially affect the NF-kB-induced activation of pro-inflammatory cytokine genes. At present an increasing interest is shown toward new combined therapeutic approaches employing epidrugs or new molecular inhibitors and in vivo immunotherapies, such as vaccines and adoptive T-cell transfer (ACT). This review summarizes the current understanding of the role of epidrugs in the modulation of molecules involved in the melanoma immune response and focuses on their future clinical use in new therapeutic combinations for melanoma treatment.
Insights
Epigenetic defects in melanoma hinder immune recognition by altering key gene expression. Epigenetic drugs can reverse these defects, restoring immune response and improving melanoma treatment outcomes.
Area of Science:
- Oncology
- Immunology
- Epigenetics
Background:
- Neoplastic cells utilize epigenetic modifications to evade immune surveillance.
- Melanoma exhibits epigenetic defects impacting immune recognition, antigen presentation, and processing.
- Dysregulation of genome writers, erasers, and readers contributes to reduced expression of critical immune molecules.
Purpose of the Study:
- To review the role of epigenetic drugs in modulating melanoma immune responses.
- To explore the potential of epigenetic drugs in combination therapies for melanoma.
- To summarize current understanding and future clinical applications of epigenetic modulators in melanoma.
Main Methods:
- Review of literature on epigenetic modifications in melanoma and immune evasion.
- Analysis of epigenetic drugs targeting DNA methyltransferases (DNMTs), histone deacetylases (HDACs), EZH2, and microRNAs (miRNAs).
- Examination of the impact of epigenetic drugs on tumor-associated antigens (TAAs), HLA complex, co-stimulatory molecules, antigen processing machinery (APM), and NKG2D ligands.
Main Results:
- Epigenetic defects in melanoma lead to silenced or down-regulated expression of immune recognition molecules.
- Epigenetic drugs can restore expression of TAAs, HLA, APM, and NKG2D ligands.
- Inhibitors of reader proteins modulate NF-kB-induced pro-inflammatory cytokine gene activation.
Conclusions:
- Epigenetic drugs offer a promising strategy to enhance anti-melanoma immune responses by reversing immune evasion mechanisms.
- Combination therapies involving epigenetic drugs and immunotherapies (vaccines, ACT) represent a future direction for melanoma treatment.
- Targeting epigenetic modifications can improve recognition of cancer cells by NK and CTL, and enhance APC functions.
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