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Cancer Cell Expression of Autotaxin Controls Bone Metastasis Formation in Mouse through Lysophosphatidic Acid-Dependent Activation of Osteoclasts

BACKGROUND: Bone metastases are highly frequent complications of breast cancers. Current bone metastasis treatments using powerful anti-resorbtive agents are only palliative indicating that factors independent of bone resorption control bone metastasis progression. Autotaxin (ATX/NPP2) is a secreted...

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Autores principales: David, Marion, Wannecq, Estelle, Descotes, Françoise, Jansen, Silvia, Deux, Blandine, Ribeiro, Johnny, Serre, Claire-Marie, Grès, Sandra, Bendriss-Vermare, Nathalie, Bollen, Mathieu, Saez, Simone, Aoki, Junken, Saulnier-Blache, Jean-Sébastien, Clézardin, Philippe, Peyruchaud, Olivier
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2840030/
https://www.ncbi.nlm.nih.gov/pubmed/20305819
http://dx.doi.org/10.1371/journal.pone.0009741
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author David, Marion
Wannecq, Estelle
Descotes, Françoise
Jansen, Silvia
Deux, Blandine
Ribeiro, Johnny
Serre, Claire-Marie
Grès, Sandra
Bendriss-Vermare, Nathalie
Bollen, Mathieu
Saez, Simone
Aoki, Junken
Saulnier-Blache, Jean-Sébastien
Clézardin, Philippe
Peyruchaud, Olivier
author_facet David, Marion
Wannecq, Estelle
Descotes, Françoise
Jansen, Silvia
Deux, Blandine
Ribeiro, Johnny
Serre, Claire-Marie
Grès, Sandra
Bendriss-Vermare, Nathalie
Bollen, Mathieu
Saez, Simone
Aoki, Junken
Saulnier-Blache, Jean-Sébastien
Clézardin, Philippe
Peyruchaud, Olivier
author_sort David, Marion
collection PubMed
description BACKGROUND: Bone metastases are highly frequent complications of breast cancers. Current bone metastasis treatments using powerful anti-resorbtive agents are only palliative indicating that factors independent of bone resorption control bone metastasis progression. Autotaxin (ATX/NPP2) is a secreted protein with both oncogenic and pro-metastatic properties. Through its lysosphospholipase D (lysoPLD) activity, ATX controls the level of lysophosphatidic acid (LPA) in the blood. Platelet-derived LPA promotes the progression of osteolytic bone metastases of breast cancer cells. We asked whether ATX was involved in the bone metastasis process. We characterized the role of ATX in osteolytic bone metastasis formation by using genetically modified breast cancer cells exploited on different osteolytic bone metastasis mouse models. METHODOLOGY/PRINCIPAL FINDINGS: Intravenous injection of human breast cancer MDA-B02 cells with forced expression of ATX (MDA-B02/ATX) to inmmunodeficiency BALB/C nude mice enhanced osteolytic bone metastasis formation, as judged by increased bone loss, tumor burden, and a higher number of active osteoclasts at the metastatic site. Mouse breast cancer 4T1 cells induced the formation of osteolytic bone metastases after intracardiac injection in immunocompetent BALB/C mice. These cells expressed active ATX and silencing ATX expression inhibited the extent of osteolytic bone lesions and decreased the number of active osteoclasts at the bone metastatic site. In vitro, osteoclast differentiation was enhanced in presence of MDA-B02/ATX cell conditioned media or recombinant autotaxin that was blocked by the autotaxin inhibitor vpc8a202. In vitro, addition of LPA to active charcoal-treated serum restored the capacity of the serum to support RANK-L/MCSF-induced osteoclastogenesis. CONCLUSION/SIGNIFICANCE: Expression of autotaxin by cancer cells controls osteolytic bone metastasis formation. This work demonstrates a new role for LPA as a factor that stimulates directly cancer growth and metastasis, and osteoclast differentiation. Therefore, targeting the autotaxin/LPA track emerges as a potential new therapeutic approach to improve the outcome of patients with bone metastases.
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spelling pubmed-28400302010-03-20 Cancer Cell Expression of Autotaxin Controls Bone Metastasis Formation in Mouse through Lysophosphatidic Acid-Dependent Activation of Osteoclasts David, Marion Wannecq, Estelle Descotes, Françoise Jansen, Silvia Deux, Blandine Ribeiro, Johnny Serre, Claire-Marie Grès, Sandra Bendriss-Vermare, Nathalie Bollen, Mathieu Saez, Simone Aoki, Junken Saulnier-Blache, Jean-Sébastien Clézardin, Philippe Peyruchaud, Olivier PLoS One Research Article BACKGROUND: Bone metastases are highly frequent complications of breast cancers. Current bone metastasis treatments using powerful anti-resorbtive agents are only palliative indicating that factors independent of bone resorption control bone metastasis progression. Autotaxin (ATX/NPP2) is a secreted protein with both oncogenic and pro-metastatic properties. Through its lysosphospholipase D (lysoPLD) activity, ATX controls the level of lysophosphatidic acid (LPA) in the blood. Platelet-derived LPA promotes the progression of osteolytic bone metastases of breast cancer cells. We asked whether ATX was involved in the bone metastasis process. We characterized the role of ATX in osteolytic bone metastasis formation by using genetically modified breast cancer cells exploited on different osteolytic bone metastasis mouse models. METHODOLOGY/PRINCIPAL FINDINGS: Intravenous injection of human breast cancer MDA-B02 cells with forced expression of ATX (MDA-B02/ATX) to inmmunodeficiency BALB/C nude mice enhanced osteolytic bone metastasis formation, as judged by increased bone loss, tumor burden, and a higher number of active osteoclasts at the metastatic site. Mouse breast cancer 4T1 cells induced the formation of osteolytic bone metastases after intracardiac injection in immunocompetent BALB/C mice. These cells expressed active ATX and silencing ATX expression inhibited the extent of osteolytic bone lesions and decreased the number of active osteoclasts at the bone metastatic site. In vitro, osteoclast differentiation was enhanced in presence of MDA-B02/ATX cell conditioned media or recombinant autotaxin that was blocked by the autotaxin inhibitor vpc8a202. In vitro, addition of LPA to active charcoal-treated serum restored the capacity of the serum to support RANK-L/MCSF-induced osteoclastogenesis. CONCLUSION/SIGNIFICANCE: Expression of autotaxin by cancer cells controls osteolytic bone metastasis formation. This work demonstrates a new role for LPA as a factor that stimulates directly cancer growth and metastasis, and osteoclast differentiation. Therefore, targeting the autotaxin/LPA track emerges as a potential new therapeutic approach to improve the outcome of patients with bone metastases. Public Library of Science 2010-03-17 /pmc/articles/PMC2840030/ /pubmed/20305819 http://dx.doi.org/10.1371/journal.pone.0009741 Text en David 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
David, Marion
Wannecq, Estelle
Descotes, Françoise
Jansen, Silvia
Deux, Blandine
Ribeiro, Johnny
Serre, Claire-Marie
Grès, Sandra
Bendriss-Vermare, Nathalie
Bollen, Mathieu
Saez, Simone
Aoki, Junken
Saulnier-Blache, Jean-Sébastien
Clézardin, Philippe
Peyruchaud, Olivier
Cancer Cell Expression of Autotaxin Controls Bone Metastasis Formation in Mouse through Lysophosphatidic Acid-Dependent Activation of Osteoclasts
title Cancer Cell Expression of Autotaxin Controls Bone Metastasis Formation in Mouse through Lysophosphatidic Acid-Dependent Activation of Osteoclasts
title_full Cancer Cell Expression of Autotaxin Controls Bone Metastasis Formation in Mouse through Lysophosphatidic Acid-Dependent Activation of Osteoclasts
title_fullStr Cancer Cell Expression of Autotaxin Controls Bone Metastasis Formation in Mouse through Lysophosphatidic Acid-Dependent Activation of Osteoclasts
title_full_unstemmed Cancer Cell Expression of Autotaxin Controls Bone Metastasis Formation in Mouse through Lysophosphatidic Acid-Dependent Activation of Osteoclasts
title_short Cancer Cell Expression of Autotaxin Controls Bone Metastasis Formation in Mouse through Lysophosphatidic Acid-Dependent Activation of Osteoclasts
title_sort cancer cell expression of autotaxin controls bone metastasis formation in mouse through lysophosphatidic acid-dependent activation of osteoclasts
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2840030/
https://www.ncbi.nlm.nih.gov/pubmed/20305819
http://dx.doi.org/10.1371/journal.pone.0009741
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