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Exosome Release and Low pH Belong to a Framework of Resistance of Human Melanoma Cells to Cisplatin

Intrinsic resistance to cytotoxic drugs has been a main issue in cancer therapy for decades. Microenvironmental acidity is a simple while highly efficient mechanism of chemoresistance, exploited through impairment of drug delivery. The latter is achieved by extracellular protonation and/or sequestra...

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Autores principales: Federici, Cristina, Petrucci, Francesco, Caimi, Stefano, Cesolini, Albino, Logozzi, Mariantonia, Borghi, Martina, D'Ilio, Sonia, Lugini, Luana, Violante, Nicola, Azzarito, Tommaso, Majorani, Costanza, Brambilla, Daria, Fais, Stefano
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3916404/
https://www.ncbi.nlm.nih.gov/pubmed/24516610
http://dx.doi.org/10.1371/journal.pone.0088193
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author Federici, Cristina
Petrucci, Francesco
Caimi, Stefano
Cesolini, Albino
Logozzi, Mariantonia
Borghi, Martina
D'Ilio, Sonia
Lugini, Luana
Violante, Nicola
Azzarito, Tommaso
Majorani, Costanza
Brambilla, Daria
Fais, Stefano
author_facet Federici, Cristina
Petrucci, Francesco
Caimi, Stefano
Cesolini, Albino
Logozzi, Mariantonia
Borghi, Martina
D'Ilio, Sonia
Lugini, Luana
Violante, Nicola
Azzarito, Tommaso
Majorani, Costanza
Brambilla, Daria
Fais, Stefano
author_sort Federici, Cristina
collection PubMed
description Intrinsic resistance to cytotoxic drugs has been a main issue in cancer therapy for decades. Microenvironmental acidity is a simple while highly efficient mechanism of chemoresistance, exploited through impairment of drug delivery. The latter is achieved by extracellular protonation and/or sequestration into acidic vesicles. This study investigates the importance of extracellular acidosis and nanovesicle (exosome) release in the resistance of human tumour cell to cisplatin (CisPt); in parallel to proton pump inhibitors (PPI) ability of interfering with these tumour cell features. The results showed that CisPt uptake by human tumour cells was markedly impaired by low pH conditions. Moreover, exosomes purified from supernatants of these cell cultures contained various amounts of CisPt, which correlated to the pH conditions of the culture medium. HPLC-Q-ICP-MS analysis revealed that exosome purified from tumour cell culture supernatants contained CisPt in its native form. PPI pre-treatment increased cellular uptake of CisPt, as compared to untreated cells, in an acidic-depend manner. Furthermore, it induced a clear inhibition of exosome release by tumour cells. Human tumours obtained from xenografts pretreated with PPI contained more CisPt as compared to tumours from xenografts treated with CisPt alone. Further analysis showed that in vivo PPI treatment induced a clear reduction in the plasmatic levels of tumour-derived exosomes which also contained lower level of CisPt. Altogether, these findings point to the identification of a double mechanism that human malignant melanoma use in resisting to a dreadful cellular poison such as cisplatin. This framework of resistance includes both low pH-dependent extracellular sequestration and an exosome-mediated elimination. Both mechanisms are markedly impaired by proton pump inhibition, leading to an increased CisPt-dependent cytotoxicity.
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spelling pubmed-39164042014-02-10 Exosome Release and Low pH Belong to a Framework of Resistance of Human Melanoma Cells to Cisplatin Federici, Cristina Petrucci, Francesco Caimi, Stefano Cesolini, Albino Logozzi, Mariantonia Borghi, Martina D'Ilio, Sonia Lugini, Luana Violante, Nicola Azzarito, Tommaso Majorani, Costanza Brambilla, Daria Fais, Stefano PLoS One Research Article Intrinsic resistance to cytotoxic drugs has been a main issue in cancer therapy for decades. Microenvironmental acidity is a simple while highly efficient mechanism of chemoresistance, exploited through impairment of drug delivery. The latter is achieved by extracellular protonation and/or sequestration into acidic vesicles. This study investigates the importance of extracellular acidosis and nanovesicle (exosome) release in the resistance of human tumour cell to cisplatin (CisPt); in parallel to proton pump inhibitors (PPI) ability of interfering with these tumour cell features. The results showed that CisPt uptake by human tumour cells was markedly impaired by low pH conditions. Moreover, exosomes purified from supernatants of these cell cultures contained various amounts of CisPt, which correlated to the pH conditions of the culture medium. HPLC-Q-ICP-MS analysis revealed that exosome purified from tumour cell culture supernatants contained CisPt in its native form. PPI pre-treatment increased cellular uptake of CisPt, as compared to untreated cells, in an acidic-depend manner. Furthermore, it induced a clear inhibition of exosome release by tumour cells. Human tumours obtained from xenografts pretreated with PPI contained more CisPt as compared to tumours from xenografts treated with CisPt alone. Further analysis showed that in vivo PPI treatment induced a clear reduction in the plasmatic levels of tumour-derived exosomes which also contained lower level of CisPt. Altogether, these findings point to the identification of a double mechanism that human malignant melanoma use in resisting to a dreadful cellular poison such as cisplatin. This framework of resistance includes both low pH-dependent extracellular sequestration and an exosome-mediated elimination. Both mechanisms are markedly impaired by proton pump inhibition, leading to an increased CisPt-dependent cytotoxicity. Public Library of Science 2014-02-06 /pmc/articles/PMC3916404/ /pubmed/24516610 http://dx.doi.org/10.1371/journal.pone.0088193 Text en © 2014 Federici et al http://creativecommons.org/licenses/by/4.0/ 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 properly credited.
spellingShingle Research Article
Federici, Cristina
Petrucci, Francesco
Caimi, Stefano
Cesolini, Albino
Logozzi, Mariantonia
Borghi, Martina
D'Ilio, Sonia
Lugini, Luana
Violante, Nicola
Azzarito, Tommaso
Majorani, Costanza
Brambilla, Daria
Fais, Stefano
Exosome Release and Low pH Belong to a Framework of Resistance of Human Melanoma Cells to Cisplatin
title Exosome Release and Low pH Belong to a Framework of Resistance of Human Melanoma Cells to Cisplatin
title_full Exosome Release and Low pH Belong to a Framework of Resistance of Human Melanoma Cells to Cisplatin
title_fullStr Exosome Release and Low pH Belong to a Framework of Resistance of Human Melanoma Cells to Cisplatin
title_full_unstemmed Exosome Release and Low pH Belong to a Framework of Resistance of Human Melanoma Cells to Cisplatin
title_short Exosome Release and Low pH Belong to a Framework of Resistance of Human Melanoma Cells to Cisplatin
title_sort exosome release and low ph belong to a framework of resistance of human melanoma cells to cisplatin
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3916404/
https://www.ncbi.nlm.nih.gov/pubmed/24516610
http://dx.doi.org/10.1371/journal.pone.0088193
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