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The induction of a mesenchymal phenotype by platelet cloaking of cancer cells is a universal phenomenon

Tumour metastasis accounts for over 90% of cancer related deaths. The platelet is a key blood component, which facilitates efficient metastasis. This study aimed to understand the molecular mechanisms involved in tumour-platelet cell interactions. The interaction between cancer cells and platelets w...

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Autores principales: Spillane, Cathy D., Cooke, Niamh M., Ward, Mark P., Kenny, Dermot, Blackshields, Gordon, Kelly, Tanya, Bates, Mark, Huang, Yanmei, Martin, Cara, Skehan, Sinead, Canney, Aoife, Gallagher, Michael, Smyth, Paul, Brady, Nathan, Clarke, Andres, Mohamed, Bashir, Norris, Lucy, Brooks, Doug A., Brooks, Robert D., Heatlie, Jessica K., Selemidis, Stavros, Hanniffy, Sean, Dixon, Eric, Sheils, Orla, O'Toole, Sharon A., O'Leary, John J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Neoplasia Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8488306/
https://www.ncbi.nlm.nih.gov/pubmed/34592589
http://dx.doi.org/10.1016/j.tranon.2021.101229
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author Spillane, Cathy D.
Cooke, Niamh M.
Ward, Mark P.
Kenny, Dermot
Blackshields, Gordon
Kelly, Tanya
Bates, Mark
Huang, Yanmei
Martin, Cara
Skehan, Sinead
Canney, Aoife
Gallagher, Michael
Smyth, Paul
Brady, Nathan
Clarke, Andres
Mohamed, Bashir
Norris, Lucy
Brooks, Doug A.
Brooks, Robert D.
Heatlie, Jessica K.
Selemidis, Stavros
Hanniffy, Sean
Dixon, Eric
Sheils, Orla
O'Toole, Sharon A.
O'Leary, John J.
author_facet Spillane, Cathy D.
Cooke, Niamh M.
Ward, Mark P.
Kenny, Dermot
Blackshields, Gordon
Kelly, Tanya
Bates, Mark
Huang, Yanmei
Martin, Cara
Skehan, Sinead
Canney, Aoife
Gallagher, Michael
Smyth, Paul
Brady, Nathan
Clarke, Andres
Mohamed, Bashir
Norris, Lucy
Brooks, Doug A.
Brooks, Robert D.
Heatlie, Jessica K.
Selemidis, Stavros
Hanniffy, Sean
Dixon, Eric
Sheils, Orla
O'Toole, Sharon A.
O'Leary, John J.
author_sort Spillane, Cathy D.
collection PubMed
description Tumour metastasis accounts for over 90% of cancer related deaths. The platelet is a key blood component, which facilitates efficient metastasis. This study aimed to understand the molecular mechanisms involved in tumour-platelet cell interactions. The interaction between cancer cells and platelets was examined in 15 epithelial cell lines, representing 7 cancer types. Gene expression analysis of EMT-associated and cancer stemness genes was performed by RT-PCR. Whole transcriptome analysis (WTA) was performed using Affymetrix 2.0ST arrays on a platelet co-cultured ovarian model. Platelet adhesion and activation occurred across all tumour types. WTA identified increases in cellular movement, migration, invasion, adhesion, development, differentiation and inflammation genes and decreases in processes associated with cell death and survival following platelet interaction. Increased invasive capacity was also observed in a subset of cell lines. A cross-comparison with a platelet co-cultured mouse model identified 5 common altered genes; PAI-1, PLEK2, CD73, TNC, and SDPR. Platelet cancer cell interactions are a key factor in driving the pro-metastatic phenotype and appear to be mediated by 5 key genes which have established roles in metastasis. Targeting these metastasis mediators could improve cancer patient outcomes.
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spelling pubmed-84883062021-10-14 The induction of a mesenchymal phenotype by platelet cloaking of cancer cells is a universal phenomenon Spillane, Cathy D. Cooke, Niamh M. Ward, Mark P. Kenny, Dermot Blackshields, Gordon Kelly, Tanya Bates, Mark Huang, Yanmei Martin, Cara Skehan, Sinead Canney, Aoife Gallagher, Michael Smyth, Paul Brady, Nathan Clarke, Andres Mohamed, Bashir Norris, Lucy Brooks, Doug A. Brooks, Robert D. Heatlie, Jessica K. Selemidis, Stavros Hanniffy, Sean Dixon, Eric Sheils, Orla O'Toole, Sharon A. O'Leary, John J. Transl Oncol Original Research Tumour metastasis accounts for over 90% of cancer related deaths. The platelet is a key blood component, which facilitates efficient metastasis. This study aimed to understand the molecular mechanisms involved in tumour-platelet cell interactions. The interaction between cancer cells and platelets was examined in 15 epithelial cell lines, representing 7 cancer types. Gene expression analysis of EMT-associated and cancer stemness genes was performed by RT-PCR. Whole transcriptome analysis (WTA) was performed using Affymetrix 2.0ST arrays on a platelet co-cultured ovarian model. Platelet adhesion and activation occurred across all tumour types. WTA identified increases in cellular movement, migration, invasion, adhesion, development, differentiation and inflammation genes and decreases in processes associated with cell death and survival following platelet interaction. Increased invasive capacity was also observed in a subset of cell lines. A cross-comparison with a platelet co-cultured mouse model identified 5 common altered genes; PAI-1, PLEK2, CD73, TNC, and SDPR. Platelet cancer cell interactions are a key factor in driving the pro-metastatic phenotype and appear to be mediated by 5 key genes which have established roles in metastasis. Targeting these metastasis mediators could improve cancer patient outcomes. Neoplasia Press 2021-09-27 /pmc/articles/PMC8488306/ /pubmed/34592589 http://dx.doi.org/10.1016/j.tranon.2021.101229 Text en © 2021 The Authors. Published by Elsevier Inc. https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Original Research
Spillane, Cathy D.
Cooke, Niamh M.
Ward, Mark P.
Kenny, Dermot
Blackshields, Gordon
Kelly, Tanya
Bates, Mark
Huang, Yanmei
Martin, Cara
Skehan, Sinead
Canney, Aoife
Gallagher, Michael
Smyth, Paul
Brady, Nathan
Clarke, Andres
Mohamed, Bashir
Norris, Lucy
Brooks, Doug A.
Brooks, Robert D.
Heatlie, Jessica K.
Selemidis, Stavros
Hanniffy, Sean
Dixon, Eric
Sheils, Orla
O'Toole, Sharon A.
O'Leary, John J.
The induction of a mesenchymal phenotype by platelet cloaking of cancer cells is a universal phenomenon
title The induction of a mesenchymal phenotype by platelet cloaking of cancer cells is a universal phenomenon
title_full The induction of a mesenchymal phenotype by platelet cloaking of cancer cells is a universal phenomenon
title_fullStr The induction of a mesenchymal phenotype by platelet cloaking of cancer cells is a universal phenomenon
title_full_unstemmed The induction of a mesenchymal phenotype by platelet cloaking of cancer cells is a universal phenomenon
title_short The induction of a mesenchymal phenotype by platelet cloaking of cancer cells is a universal phenomenon
title_sort induction of a mesenchymal phenotype by platelet cloaking of cancer cells is a universal phenomenon
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8488306/
https://www.ncbi.nlm.nih.gov/pubmed/34592589
http://dx.doi.org/10.1016/j.tranon.2021.101229
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