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The axon guidance molecule semaphorin 3F is a negative regulator of tumor progression and proliferation in ileal neuroendocrine tumors

Gastro-intestinal neuroendocrine tumors (GI-NETs) are rare neoplasms, frequently metastatic, raising difficult clinical and therapeutic challenges due to a poor knowledge of their biology. As neuroendocrine cells express both epithelial and neural cell markers, we studied the possible involvement in...

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Autores principales: Bollard, Julien, Massoma, Patrick, Vercherat, Cécile, Blanc, Martine, Lepinasse, Florian, Gadot, Nicolas, Couderc, Christophe, Poncet, Gilles, Walter, Thomas, Joly, Marie-Odile, Hervieu, Valérie, Scoazec, Jean-Yves, Roche, Colette
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4742207/
https://www.ncbi.nlm.nih.gov/pubmed/26447612
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author Bollard, Julien
Massoma, Patrick
Vercherat, Cécile
Blanc, Martine
Lepinasse, Florian
Gadot, Nicolas
Couderc, Christophe
Poncet, Gilles
Walter, Thomas
Joly, Marie-Odile
Hervieu, Valérie
Scoazec, Jean-Yves
Roche, Colette
author_facet Bollard, Julien
Massoma, Patrick
Vercherat, Cécile
Blanc, Martine
Lepinasse, Florian
Gadot, Nicolas
Couderc, Christophe
Poncet, Gilles
Walter, Thomas
Joly, Marie-Odile
Hervieu, Valérie
Scoazec, Jean-Yves
Roche, Colette
author_sort Bollard, Julien
collection PubMed
description Gastro-intestinal neuroendocrine tumors (GI-NETs) are rare neoplasms, frequently metastatic, raising difficult clinical and therapeutic challenges due to a poor knowledge of their biology. As neuroendocrine cells express both epithelial and neural cell markers, we studied the possible involvement in GI-NETs of axon guidance molecules, which have been shown to decrease tumor cell proliferation and metastatic dissemination in several tumor types. We focused on the role of Semaphorin 3F (SEMA3F) in ileal NETs, one of the most frequent subtypes of GI-NETs. SEMA3F expression was detected in normal neuroendocrine cells but was lost in most of human primary tumors and all their metastases. SEMA3F loss of expression was associated with promoter gene methylation. After increasing endogenous SEMA3F levels through stable transfection, enteroendocrine cell lines STC-1 and GluTag showed a reduced proliferation rate in vitro. In two different xenograft mouse models, SEMA3F-overexpressing cells exhibited a reduced ability to form tumors and a hampered liver dissemination potential in vivo. This resulted, at least in part, from the inhibition of mTOR and MAPK signaling pathways. This study demonstrates an anti-tumoral role of SEMA3F in ileal NETs. We thus suggest that SEMA3F and/or its cellular signaling pathway could represent a target for ileal NET therapy.
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spelling pubmed-47422072016-04-04 The axon guidance molecule semaphorin 3F is a negative regulator of tumor progression and proliferation in ileal neuroendocrine tumors Bollard, Julien Massoma, Patrick Vercherat, Cécile Blanc, Martine Lepinasse, Florian Gadot, Nicolas Couderc, Christophe Poncet, Gilles Walter, Thomas Joly, Marie-Odile Hervieu, Valérie Scoazec, Jean-Yves Roche, Colette Oncotarget Research Paper Gastro-intestinal neuroendocrine tumors (GI-NETs) are rare neoplasms, frequently metastatic, raising difficult clinical and therapeutic challenges due to a poor knowledge of their biology. As neuroendocrine cells express both epithelial and neural cell markers, we studied the possible involvement in GI-NETs of axon guidance molecules, which have been shown to decrease tumor cell proliferation and metastatic dissemination in several tumor types. We focused on the role of Semaphorin 3F (SEMA3F) in ileal NETs, one of the most frequent subtypes of GI-NETs. SEMA3F expression was detected in normal neuroendocrine cells but was lost in most of human primary tumors and all their metastases. SEMA3F loss of expression was associated with promoter gene methylation. After increasing endogenous SEMA3F levels through stable transfection, enteroendocrine cell lines STC-1 and GluTag showed a reduced proliferation rate in vitro. In two different xenograft mouse models, SEMA3F-overexpressing cells exhibited a reduced ability to form tumors and a hampered liver dissemination potential in vivo. This resulted, at least in part, from the inhibition of mTOR and MAPK signaling pathways. This study demonstrates an anti-tumoral role of SEMA3F in ileal NETs. We thus suggest that SEMA3F and/or its cellular signaling pathway could represent a target for ileal NET therapy. Impact Journals LLC 2015-10-02 /pmc/articles/PMC4742207/ /pubmed/26447612 Text en Copyright: © 2015 Bollard et al. http://creativecommons.org/licenses/by/2.5/ 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 credited.
spellingShingle Research Paper
Bollard, Julien
Massoma, Patrick
Vercherat, Cécile
Blanc, Martine
Lepinasse, Florian
Gadot, Nicolas
Couderc, Christophe
Poncet, Gilles
Walter, Thomas
Joly, Marie-Odile
Hervieu, Valérie
Scoazec, Jean-Yves
Roche, Colette
The axon guidance molecule semaphorin 3F is a negative regulator of tumor progression and proliferation in ileal neuroendocrine tumors
title The axon guidance molecule semaphorin 3F is a negative regulator of tumor progression and proliferation in ileal neuroendocrine tumors
title_full The axon guidance molecule semaphorin 3F is a negative regulator of tumor progression and proliferation in ileal neuroendocrine tumors
title_fullStr The axon guidance molecule semaphorin 3F is a negative regulator of tumor progression and proliferation in ileal neuroendocrine tumors
title_full_unstemmed The axon guidance molecule semaphorin 3F is a negative regulator of tumor progression and proliferation in ileal neuroendocrine tumors
title_short The axon guidance molecule semaphorin 3F is a negative regulator of tumor progression and proliferation in ileal neuroendocrine tumors
title_sort axon guidance molecule semaphorin 3f is a negative regulator of tumor progression and proliferation in ileal neuroendocrine tumors
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4742207/
https://www.ncbi.nlm.nih.gov/pubmed/26447612
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