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PDAC-derived exosomes enrich the microenvironment in MDSCs in a SMAD4-dependent manner through a new calcium related axis

Tumor genetics and escape from immune surveillance concur in the poor prognosis of PDAC. In this study an experimental model was set up to verify whether SMAD4, deleted in about 55% PDAC and associated with poor prognosis, is involved in determining immunosuppression through Exosomes (Exo). Potentia...

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Autores principales: Basso, Daniela, Gnatta, Elisa, Padoan, Andrea, Fogar, Paola, Furlanello, Sara, Aita, Ada, Bozzato, Dania, Zambon, Carlo-Federico, Arrigoni, Giorgio, Frasson, Chiara, Franchin, Cinzia, Moz, Stefania, Brefort, Thomas, Laufer, Thomas, Navaglia, Filippo, Pedrazzoli, Sergio, Basso, Giuseppe, Plebani, Mario
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5689584/
https://www.ncbi.nlm.nih.gov/pubmed/29156694
http://dx.doi.org/10.18632/oncotarget.20863
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author Basso, Daniela
Gnatta, Elisa
Padoan, Andrea
Fogar, Paola
Furlanello, Sara
Aita, Ada
Bozzato, Dania
Zambon, Carlo-Federico
Arrigoni, Giorgio
Frasson, Chiara
Franchin, Cinzia
Moz, Stefania
Brefort, Thomas
Laufer, Thomas
Navaglia, Filippo
Pedrazzoli, Sergio
Basso, Giuseppe
Plebani, Mario
author_facet Basso, Daniela
Gnatta, Elisa
Padoan, Andrea
Fogar, Paola
Furlanello, Sara
Aita, Ada
Bozzato, Dania
Zambon, Carlo-Federico
Arrigoni, Giorgio
Frasson, Chiara
Franchin, Cinzia
Moz, Stefania
Brefort, Thomas
Laufer, Thomas
Navaglia, Filippo
Pedrazzoli, Sergio
Basso, Giuseppe
Plebani, Mario
author_sort Basso, Daniela
collection PubMed
description Tumor genetics and escape from immune surveillance concur in the poor prognosis of PDAC. In this study an experimental model was set up to verify whether SMAD4, deleted in about 55% PDAC and associated with poor prognosis, is involved in determining immunosuppression through Exosomes (Exo). Potential mechanisms and mediators underlying SMAD4-dependent immunosuppression were evaluated by studying intracellular calcium (Fluo-4), Exo-miRNAs (microarray) and Exo-proteins (SILAC). Two PDAC cell lines expressing (BxPC3-SMAD4+) or not-expressing (BxPC3) SMAD4 were used to prepare Exo-enriched conditioned media, employed in experiments with blood donors PBMCs. Exo expanded myeloid derived suppressor cells (gMDSC and mMDSC, flow cytometry) and altered intracellular calcium fluxes in an SMAD4 dependent manner. BxPC3-SMAD4+, but mainly BxPC3 Exo, increased calcium fluxes of PBMCs (p = 0.007) and this increased intracellular calcium trafficking characterized mMDSCs. The analysis of de-regulated Exo-miRNAs and transfection experiments revealed hsa-miR-494-3p and has-miR-1260a as potential mediators of SMAD4-associated de-regulated calcium fluxes. Eleven main biological processes were identified by the analysis of SMAD4-associated de-regulated Exo-proteins, including translation, cell adhesion, cell signaling and glycolysis. A reverse Warburg effect was observed by treating PBMCs with PDAC-derived Exo: BxPC3 Exo induced a higher glucose consumption and lactate production than BxPC3-SMAD4+ Exo. Conclusion: PDAC-derived Exo from cells with, but mainly from those without SMAD4 expression, create an immunosuppressive myeloid cell background by increasing calcium fluxes and glycolysis through the transfer of SMAD4-related differentially expressed miRNAs and proteins.
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spelling pubmed-56895842017-11-17 PDAC-derived exosomes enrich the microenvironment in MDSCs in a SMAD4-dependent manner through a new calcium related axis Basso, Daniela Gnatta, Elisa Padoan, Andrea Fogar, Paola Furlanello, Sara Aita, Ada Bozzato, Dania Zambon, Carlo-Federico Arrigoni, Giorgio Frasson, Chiara Franchin, Cinzia Moz, Stefania Brefort, Thomas Laufer, Thomas Navaglia, Filippo Pedrazzoli, Sergio Basso, Giuseppe Plebani, Mario Oncotarget Research Paper Tumor genetics and escape from immune surveillance concur in the poor prognosis of PDAC. In this study an experimental model was set up to verify whether SMAD4, deleted in about 55% PDAC and associated with poor prognosis, is involved in determining immunosuppression through Exosomes (Exo). Potential mechanisms and mediators underlying SMAD4-dependent immunosuppression were evaluated by studying intracellular calcium (Fluo-4), Exo-miRNAs (microarray) and Exo-proteins (SILAC). Two PDAC cell lines expressing (BxPC3-SMAD4+) or not-expressing (BxPC3) SMAD4 were used to prepare Exo-enriched conditioned media, employed in experiments with blood donors PBMCs. Exo expanded myeloid derived suppressor cells (gMDSC and mMDSC, flow cytometry) and altered intracellular calcium fluxes in an SMAD4 dependent manner. BxPC3-SMAD4+, but mainly BxPC3 Exo, increased calcium fluxes of PBMCs (p = 0.007) and this increased intracellular calcium trafficking characterized mMDSCs. The analysis of de-regulated Exo-miRNAs and transfection experiments revealed hsa-miR-494-3p and has-miR-1260a as potential mediators of SMAD4-associated de-regulated calcium fluxes. Eleven main biological processes were identified by the analysis of SMAD4-associated de-regulated Exo-proteins, including translation, cell adhesion, cell signaling and glycolysis. A reverse Warburg effect was observed by treating PBMCs with PDAC-derived Exo: BxPC3 Exo induced a higher glucose consumption and lactate production than BxPC3-SMAD4+ Exo. Conclusion: PDAC-derived Exo from cells with, but mainly from those without SMAD4 expression, create an immunosuppressive myeloid cell background by increasing calcium fluxes and glycolysis through the transfer of SMAD4-related differentially expressed miRNAs and proteins. Impact Journals LLC 2017-09-13 /pmc/articles/PMC5689584/ /pubmed/29156694 http://dx.doi.org/10.18632/oncotarget.20863 Text en Copyright: © 2017 Basso et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/) 3.0 (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Basso, Daniela
Gnatta, Elisa
Padoan, Andrea
Fogar, Paola
Furlanello, Sara
Aita, Ada
Bozzato, Dania
Zambon, Carlo-Federico
Arrigoni, Giorgio
Frasson, Chiara
Franchin, Cinzia
Moz, Stefania
Brefort, Thomas
Laufer, Thomas
Navaglia, Filippo
Pedrazzoli, Sergio
Basso, Giuseppe
Plebani, Mario
PDAC-derived exosomes enrich the microenvironment in MDSCs in a SMAD4-dependent manner through a new calcium related axis
title PDAC-derived exosomes enrich the microenvironment in MDSCs in a SMAD4-dependent manner through a new calcium related axis
title_full PDAC-derived exosomes enrich the microenvironment in MDSCs in a SMAD4-dependent manner through a new calcium related axis
title_fullStr PDAC-derived exosomes enrich the microenvironment in MDSCs in a SMAD4-dependent manner through a new calcium related axis
title_full_unstemmed PDAC-derived exosomes enrich the microenvironment in MDSCs in a SMAD4-dependent manner through a new calcium related axis
title_short PDAC-derived exosomes enrich the microenvironment in MDSCs in a SMAD4-dependent manner through a new calcium related axis
title_sort pdac-derived exosomes enrich the microenvironment in mdscs in a smad4-dependent manner through a new calcium related axis
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5689584/
https://www.ncbi.nlm.nih.gov/pubmed/29156694
http://dx.doi.org/10.18632/oncotarget.20863
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