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Oncologic Trogocytosis of an Original Stromal Cells Induces Chemoresistance of Ovarian Tumours

BACKGROUND: The microenvironment plays a major role in the onset and progression of metastasis. Epithelial ovarian cancer (EOC) tends to metastasize to the peritoneal cavity where interactions within the microenvironment might lead to chemoresistance. Mesothelial cells are important actors of the pe...

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Autores principales: Rafii, Arash, Mirshahi, Pejman, Poupot, Mary, Faussat, Anne-Marie, Simon, Anne, Ducros, Elodie, Mery, Eliane, Couderc, Bettina, Lis, Raphael, Capdet, Jerome, Bergalet, Julie, Querleu, Denis, Dagonnet, Francoise, Fournié, Jean-Jacques, Marie, Jean-Pierre, Pujade-Lauraine, Eric, Favre, Gilles, Soria, Jeanine, Mirshahi, Massoud
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2597737/
https://www.ncbi.nlm.nih.gov/pubmed/19079610
http://dx.doi.org/10.1371/journal.pone.0003894
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author Rafii, Arash
Mirshahi, Pejman
Poupot, Mary
Faussat, Anne-Marie
Simon, Anne
Ducros, Elodie
Mery, Eliane
Couderc, Bettina
Lis, Raphael
Capdet, Jerome
Bergalet, Julie
Querleu, Denis
Dagonnet, Francoise
Fournié, Jean-Jacques
Marie, Jean-Pierre
Pujade-Lauraine, Eric
Favre, Gilles
Soria, Jeanine
Mirshahi, Massoud
author_facet Rafii, Arash
Mirshahi, Pejman
Poupot, Mary
Faussat, Anne-Marie
Simon, Anne
Ducros, Elodie
Mery, Eliane
Couderc, Bettina
Lis, Raphael
Capdet, Jerome
Bergalet, Julie
Querleu, Denis
Dagonnet, Francoise
Fournié, Jean-Jacques
Marie, Jean-Pierre
Pujade-Lauraine, Eric
Favre, Gilles
Soria, Jeanine
Mirshahi, Massoud
author_sort Rafii, Arash
collection PubMed
description BACKGROUND: The microenvironment plays a major role in the onset and progression of metastasis. Epithelial ovarian cancer (EOC) tends to metastasize to the peritoneal cavity where interactions within the microenvironment might lead to chemoresistance. Mesothelial cells are important actors of the peritoneal homeostasis; we determined their role in the acquisition of chemoresistance of ovarian tumours. METHODOLOGY/PRINCIPAL FINDINGS: We isolated an original type of stromal cells, referred to as “Hospicells” from ascitis of patients with ovarian carcinosis using limiting dilution. We studied their ability to confer chemoresistance through heterocellular interactions. These stromal cells displayed a new phenotype with positive immunostaining for CD9, CD10, CD29, CD146, CD166 and Multi drug resistance protein. They preferentially interacted with epithelial ovarian cancer cells. This interaction induced chemoresistance to platin and taxans with the implication of multi-drug resistance proteins. This contact enabled EOC cells to capture patches of the Hospicells membrane through oncologic trogocytosis, therefore acquiring their functional P-gp proteins and thus developing chemoresistance. Presence of Hospicells on ovarian cancer tissue micro-array from patients with neo-adjuvant chemotherapy was also significantly associated to chemoresistance. CONCLUSIONS/SIGNIFICANCE: This is the first report of trogocytosis occurring between a cancer cell and an original type of stromal cell. This interaction induced autonomous acquisition of chemoresistance. The presence of stromal cells within patient's tumour might be predictive of chemoresistance. The specific interaction between cancer cells and stromal cells might be targeted during chemotherapy.
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spelling pubmed-25977372008-12-16 Oncologic Trogocytosis of an Original Stromal Cells Induces Chemoresistance of Ovarian Tumours Rafii, Arash Mirshahi, Pejman Poupot, Mary Faussat, Anne-Marie Simon, Anne Ducros, Elodie Mery, Eliane Couderc, Bettina Lis, Raphael Capdet, Jerome Bergalet, Julie Querleu, Denis Dagonnet, Francoise Fournié, Jean-Jacques Marie, Jean-Pierre Pujade-Lauraine, Eric Favre, Gilles Soria, Jeanine Mirshahi, Massoud PLoS One Research Article BACKGROUND: The microenvironment plays a major role in the onset and progression of metastasis. Epithelial ovarian cancer (EOC) tends to metastasize to the peritoneal cavity where interactions within the microenvironment might lead to chemoresistance. Mesothelial cells are important actors of the peritoneal homeostasis; we determined their role in the acquisition of chemoresistance of ovarian tumours. METHODOLOGY/PRINCIPAL FINDINGS: We isolated an original type of stromal cells, referred to as “Hospicells” from ascitis of patients with ovarian carcinosis using limiting dilution. We studied their ability to confer chemoresistance through heterocellular interactions. These stromal cells displayed a new phenotype with positive immunostaining for CD9, CD10, CD29, CD146, CD166 and Multi drug resistance protein. They preferentially interacted with epithelial ovarian cancer cells. This interaction induced chemoresistance to platin and taxans with the implication of multi-drug resistance proteins. This contact enabled EOC cells to capture patches of the Hospicells membrane through oncologic trogocytosis, therefore acquiring their functional P-gp proteins and thus developing chemoresistance. Presence of Hospicells on ovarian cancer tissue micro-array from patients with neo-adjuvant chemotherapy was also significantly associated to chemoresistance. CONCLUSIONS/SIGNIFICANCE: This is the first report of trogocytosis occurring between a cancer cell and an original type of stromal cell. This interaction induced autonomous acquisition of chemoresistance. The presence of stromal cells within patient's tumour might be predictive of chemoresistance. The specific interaction between cancer cells and stromal cells might be targeted during chemotherapy. Public Library of Science 2008-12-16 /pmc/articles/PMC2597737/ /pubmed/19079610 http://dx.doi.org/10.1371/journal.pone.0003894 Text en Rafii Tabrizi 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
Rafii, Arash
Mirshahi, Pejman
Poupot, Mary
Faussat, Anne-Marie
Simon, Anne
Ducros, Elodie
Mery, Eliane
Couderc, Bettina
Lis, Raphael
Capdet, Jerome
Bergalet, Julie
Querleu, Denis
Dagonnet, Francoise
Fournié, Jean-Jacques
Marie, Jean-Pierre
Pujade-Lauraine, Eric
Favre, Gilles
Soria, Jeanine
Mirshahi, Massoud
Oncologic Trogocytosis of an Original Stromal Cells Induces Chemoresistance of Ovarian Tumours
title Oncologic Trogocytosis of an Original Stromal Cells Induces Chemoresistance of Ovarian Tumours
title_full Oncologic Trogocytosis of an Original Stromal Cells Induces Chemoresistance of Ovarian Tumours
title_fullStr Oncologic Trogocytosis of an Original Stromal Cells Induces Chemoresistance of Ovarian Tumours
title_full_unstemmed Oncologic Trogocytosis of an Original Stromal Cells Induces Chemoresistance of Ovarian Tumours
title_short Oncologic Trogocytosis of an Original Stromal Cells Induces Chemoresistance of Ovarian Tumours
title_sort oncologic trogocytosis of an original stromal cells induces chemoresistance of ovarian tumours
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2597737/
https://www.ncbi.nlm.nih.gov/pubmed/19079610
http://dx.doi.org/10.1371/journal.pone.0003894
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