Histone deacetylase inhibitors in myelodysplastic syndrome
1Department of Interdisciplinary Oncology, H Lee Moffitt Cancer Center and Research Institute, University of South Florida, 12902 Magnolia Drive, MRC-3 East Room 3056, Tampa, FL 33614, USA.
Abstract:
Histone deacetylase (HDAC) inhibitors are amongst the newer therapies being introduced in refractory, relapsed, and resistant disease. These agents are mechanism-based and their use is targeted to the diseased cell or tissue. HDACs are key enzymes in the regulation of gene expression. They maintain a dynamic equilibrium in the acetylation state of highly conserved lysine residues on histones by which they regulate chromatin remodeling and gene expression. Changes in growth and differentiation leading to malignancy appear to occur by alterations in transcriptional control and gene silencing. Histone acetylation and DNA methylation have been implicated in these aberrant phenotypes. Inhibitors of DNA methylation such as 5-azacytidine or 5-azadeoxycytidine have been able to reverse DNA methylation patterns and have shown promise in patient studies. Similarly, HDAC inhibitors block deacetylation function, causing cell cycle arrest, differentiation, and/or apoptosis of many tumors. Several HDAC inhibitors have exhibited potent antitumor activity in human xenograft models, suggesting their usefulness as novel cancer therapeutic agents. Several are currently in phase I/II clinical trials both in hematological malignancies and in solid tumors. Agents used initially, such as phenylbutyrate, are effective in millimolar concentrations. Newer agents are being developed and these are effective at much lower concentrations and are relatively less toxic. In particular, hydroxamic acid-based polar compounds and cyclic tetrapeptides have shown activity against cancers at well-tolerated doses.
Insights
Histone deacetylase (HDAC) inhibitors are emerging cancer therapies targeting gene expression. These novel agents show promise in clinical trials by inducing tumor cell cycle arrest, differentiation, and apoptosis.
Area of Science:
- Oncology
- Molecular Biology
- Epigenetics
Background:
- Histone deacetylases (HDACs) regulate gene expression by controlling histone acetylation.
- Aberrant gene silencing and transcriptional control are implicated in cancer development.
- Epigenetic modifications like histone acetylation and DNA methylation play roles in malignancy.
Purpose of the Study:
- To review the role of HDAC inhibitors as novel cancer therapeutics.
- To discuss the mechanisms of action and therapeutic potential of HDAC inhibitors.
- To highlight the progress of HDAC inhibitors in clinical trials for various cancers.
Main Methods:
- Review of current literature on HDAC inhibitors in cancer therapy.
- Analysis of preclinical data from xenograft models.
- Summary of ongoing Phase I/II clinical trials.
Main Results:
- HDAC inhibitors demonstrate potent antitumor activity in preclinical models.
- Several HDAC inhibitors are under investigation in clinical trials for hematological and solid tumors.
- Newer HDAC inhibitors, including hydroxamic acids and cyclic tetrapeptides, show efficacy at lower, well-tolerated doses.
Conclusions:
- HDAC inhibitors represent a promising class of targeted cancer therapies.
- These agents induce anti-cancer effects through mechanisms like cell cycle arrest and apoptosis.
- Ongoing clinical trials will further define the role of HDAC inhibitors in cancer treatment.
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