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Essential role for acid sphingomyelinase-inhibited autophagy in melanoma response to cisplatin

The sphingolipid metabolising enzyme Acid Sphingomyelinase (A-SMase) has been recently shown to inhibit melanoma progression and correlate inversely to tumour grade. In this study we have investigated the role of A-SMase in the chemo-resistance to anticancer treatmentusing mice with melanoma allogra...

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Autores principales: Cervia, Davide, Assi, Emma, De Palma, Clara, Giovarelli, Matteo, Bizzozero, Laura, Pambianco, Sarah, Di Renzo, Ilaria, Zecchini, Silvia, Moscheni, Claudia, Vantaggiato, Chiara, Procacci, Patrizia, Clementi, Emilio, Perrotta, Cristiana
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5041885/
https://www.ncbi.nlm.nih.gov/pubmed/27107419
http://dx.doi.org/10.18632/oncotarget.8735
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author Cervia, Davide
Assi, Emma
De Palma, Clara
Giovarelli, Matteo
Bizzozero, Laura
Pambianco, Sarah
Di Renzo, Ilaria
Zecchini, Silvia
Moscheni, Claudia
Vantaggiato, Chiara
Procacci, Patrizia
Clementi, Emilio
Perrotta, Cristiana
author_facet Cervia, Davide
Assi, Emma
De Palma, Clara
Giovarelli, Matteo
Bizzozero, Laura
Pambianco, Sarah
Di Renzo, Ilaria
Zecchini, Silvia
Moscheni, Claudia
Vantaggiato, Chiara
Procacci, Patrizia
Clementi, Emilio
Perrotta, Cristiana
author_sort Cervia, Davide
collection PubMed
description The sphingolipid metabolising enzyme Acid Sphingomyelinase (A-SMase) has been recently shown to inhibit melanoma progression and correlate inversely to tumour grade. In this study we have investigated the role of A-SMase in the chemo-resistance to anticancer treatmentusing mice with melanoma allografts and melanoma cells differing in terms of expression/activity of A-SMase. Since autophagy is emerging as a key mechanism in tumour growth and chemo-resistance, we have also investigated whether an action of A-SMase in autophagy can explain its role. Melanoma sensitivity to chemotherapeutic agent cisplatin in terms of cell viability/apoptosis, tumour growth, and animal survival depended directly on the A-SMase levels in tumoural cells. A-SMase action was due to inhibition of autophagy through activation of Akt/mammalian target of rapamycin (mTOR) pathway. Treatment of melanoma-bearing mice with the autophagy inhibitor chloroquine restored sensitivity to cisplatin of tumours expressing low levels of A-SMase while no additive effects were observed in tumours characterised by sustained A-SMase levels. The fact that A-SMase in melanomas affects mTOR-regulated autophagy and plays a central role in cisplatin efficacy encourages pre-clinical testing on the modulation of A-SMase levels/activity as possible novel anti-neoplastic strategy.
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spelling pubmed-50418852016-10-10 Essential role for acid sphingomyelinase-inhibited autophagy in melanoma response to cisplatin Cervia, Davide Assi, Emma De Palma, Clara Giovarelli, Matteo Bizzozero, Laura Pambianco, Sarah Di Renzo, Ilaria Zecchini, Silvia Moscheni, Claudia Vantaggiato, Chiara Procacci, Patrizia Clementi, Emilio Perrotta, Cristiana Oncotarget Research Paper: Autophagy and Cell Death The sphingolipid metabolising enzyme Acid Sphingomyelinase (A-SMase) has been recently shown to inhibit melanoma progression and correlate inversely to tumour grade. In this study we have investigated the role of A-SMase in the chemo-resistance to anticancer treatmentusing mice with melanoma allografts and melanoma cells differing in terms of expression/activity of A-SMase. Since autophagy is emerging as a key mechanism in tumour growth and chemo-resistance, we have also investigated whether an action of A-SMase in autophagy can explain its role. Melanoma sensitivity to chemotherapeutic agent cisplatin in terms of cell viability/apoptosis, tumour growth, and animal survival depended directly on the A-SMase levels in tumoural cells. A-SMase action was due to inhibition of autophagy through activation of Akt/mammalian target of rapamycin (mTOR) pathway. Treatment of melanoma-bearing mice with the autophagy inhibitor chloroquine restored sensitivity to cisplatin of tumours expressing low levels of A-SMase while no additive effects were observed in tumours characterised by sustained A-SMase levels. The fact that A-SMase in melanomas affects mTOR-regulated autophagy and plays a central role in cisplatin efficacy encourages pre-clinical testing on the modulation of A-SMase levels/activity as possible novel anti-neoplastic strategy. Impact Journals LLC 2016-04-14 /pmc/articles/PMC5041885/ /pubmed/27107419 http://dx.doi.org/10.18632/oncotarget.8735 Text en Copyright: © 2016 Cervia et al. http://creativecommons.org/licenses/by/2.5/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper: Autophagy and Cell Death
Cervia, Davide
Assi, Emma
De Palma, Clara
Giovarelli, Matteo
Bizzozero, Laura
Pambianco, Sarah
Di Renzo, Ilaria
Zecchini, Silvia
Moscheni, Claudia
Vantaggiato, Chiara
Procacci, Patrizia
Clementi, Emilio
Perrotta, Cristiana
Essential role for acid sphingomyelinase-inhibited autophagy in melanoma response to cisplatin
title Essential role for acid sphingomyelinase-inhibited autophagy in melanoma response to cisplatin
title_full Essential role for acid sphingomyelinase-inhibited autophagy in melanoma response to cisplatin
title_fullStr Essential role for acid sphingomyelinase-inhibited autophagy in melanoma response to cisplatin
title_full_unstemmed Essential role for acid sphingomyelinase-inhibited autophagy in melanoma response to cisplatin
title_short Essential role for acid sphingomyelinase-inhibited autophagy in melanoma response to cisplatin
title_sort essential role for acid sphingomyelinase-inhibited autophagy in melanoma response to cisplatin
topic Research Paper: Autophagy and Cell Death
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5041885/
https://www.ncbi.nlm.nih.gov/pubmed/27107419
http://dx.doi.org/10.18632/oncotarget.8735
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