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Epigenetics of human cutaneous melanoma: setting the stage for new therapeutic strategies.


ABSTRACT: Cutaneous melanoma is a very aggressive neoplasia of melanocytic origin with constantly growing incidence and mortality rates world-wide. Epigenetic modifications (i.e., alterations of genomic DNA methylation patterns, of post-translational modifications of histones, and of microRNA profiles) have been recently identified as playing an important role in melanoma development and progression by affecting key cellular pathways such as cell cycle regulation, cell signalling, differentiation, DNA repair, apoptosis, invasion and immune recognition. In this scenario, pharmacologic inhibition of DNA methyltransferases and/or of histone deacetylases were demonstrated to efficiently restore the expression of aberrantly-silenced genes, thus re-establishing pathway functions. In light of the pleiotropic activities of epigenetic drugs, their use alone or in combination therapies is being strongly suggested, and a particular clinical benefit might be expected from their synergistic activities with chemo-, radio-, and immuno-therapeutic approaches in melanoma patients. On this path, an important improvement would possibly derive from the development of new generation epigenetic drugs characterized by much reduced systemic toxicities, higher bioavailability, and more specific epigenetic effects.

SUBMITTER: Sigalotti L 

PROVIDER: S-EPMC2901206 | biostudies-literature | 2010 Jun

REPOSITORIES: biostudies-literature

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Epigenetics of human cutaneous melanoma: setting the stage for new therapeutic strategies.

Sigalotti Luca L   Covre Alessia A   Fratta Elisabetta E   Parisi Giulia G   Colizzi Francesca F   Rizzo Aurora A   Danielli Riccardo R   Nicolay Hugues J M HJ   Coral Sandra S   Maio Michele M  

Journal of translational medicine 20100611


Cutaneous melanoma is a very aggressive neoplasia of melanocytic origin with constantly growing incidence and mortality rates world-wide. Epigenetic modifications (i.e., alterations of genomic DNA methylation patterns, of post-translational modifications of histones, and of microRNA profiles) have been recently identified as playing an important role in melanoma development and progression by affecting key cellular pathways such as cell cycle regulation, cell signalling, differentiation, DNA rep  ...[more]

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