Antitumor activity and expression profiles of genes induced by sulforaphane in human melanoma cells View Full Text


Ontology type: schema:ScholarlyArticle      Open Access: True


Article Info

DATE

2018-10

AUTHORS

Paola Arcidiacono, Francesco Ragonese, Anna Stabile, Alessandra Pistilli, Ekaterina Kuligina, Mario Rende, Ugo Bottoni, Stefano Calvieri, Andrea Crisanti, Roberta Spaccapelo

ABSTRACT

PURPOSE: Human melanoma is a highly aggressive incurable cancer due to intrinsic cellular resistance to apoptosis, reprogramming, proliferation and survival during tumour progression. Sulforaphane (SFN), an isothiocyanate found in cruciferous vegetables, plays a role in carcinogenesis in many cancer types. However, the cytotoxic molecular mechanisms and gene expression profiles promoted by SFN in human melanoma remain unknown. METHODS: Three different cell lines were used: two human melanoma A375 and 501MEL and human epidermal melanocytes (HEMa). Cell viability and proliferation, cell cycle analysis, cell migration and invasion and protein expression and phosphorylation status of Akt and p53 upon SFN treatment were determined. RNA-seq of A375 was performed at different time points after SFN treatment. RESULTS: We demonstrated that SFN strongly decreased cell viability and proliferation, induced G2/M cell cycle arrest, promoted apoptosis through the activation of caspases 3, 8, 9 and hampered migration and invasion abilities in the melanoma cell lines. Remarkably, HEMa cells were not affected by SFN treatment. Transcriptomic analysis revealed regulation of genes involved in response to stress, apoptosis/cell death and metabolic processes. SFN upregulated the expression of pro-apoptotic genes, such as p53, BAX, PUMA, FAS and MDM2; promoted cell cycle inhibition and growth arrest by upregulating EGR1, GADD45B, ATF3 and CDKN1A; and simultaneously acted as a potent inhibitor of genotoxicity by launching the stress-inducible protein network (HMOX1, HSPA1A, HSPA6, SOD1). CONCLUSION: Overall, the data show that SFN cytotoxicity in melanoma derives from complex and concurrent mechanisms during carcinogenesis, which makes it a promising cancer prevention agent. More... »

PAGES

2547-2569

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  • Identifiers

    URI

    http://scigraph.springernature.com/pub.10.1007/s00394-017-1527-7

    DOI

    http://dx.doi.org/10.1007/s00394-017-1527-7

    DIMENSIONS

    https://app.dimensions.ai/details/publication/pub.1091416904

    PUBMED

    https://www.ncbi.nlm.nih.gov/pubmed/28864908


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