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Coordinating Effect of VEGFC and Oleic Acid Participates to Tumor Lymphangiogenesis

SIMPLE SUMMARY: In cancer, the lymphatic system is hijacked by tumor cells that escape from primary tumor and metastasize to the sentinel lymph nodes. Tumor lymphangiogenesis is stimulated by the vascular endothelial growth factors-C (VEGFC) after binding to its receptor VEGFR-3. However, how VEGFC...

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Autores principales: Morfoisse, Florent, De Toni, Fabienne, Nigri, Jeremy, Hosseini, Mohsen, Zamora, Audrey, Tatin, Florence, Pujol, Françoise, Sarry, Jean-Emmanuel, Langin, Dominique, Lacazette, Eric, Prats, Anne-Catherine, Tomasini, Richard, Galitzky, Jean, Bouloumié, Anne, Garmy-Susini, Barbara
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8227717/
https://www.ncbi.nlm.nih.gov/pubmed/34200994
http://dx.doi.org/10.3390/cancers13122851
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author Morfoisse, Florent
De Toni, Fabienne
Nigri, Jeremy
Hosseini, Mohsen
Zamora, Audrey
Tatin, Florence
Pujol, Françoise
Sarry, Jean-Emmanuel
Langin, Dominique
Lacazette, Eric
Prats, Anne-Catherine
Tomasini, Richard
Galitzky, Jean
Bouloumié, Anne
Garmy-Susini, Barbara
author_facet Morfoisse, Florent
De Toni, Fabienne
Nigri, Jeremy
Hosseini, Mohsen
Zamora, Audrey
Tatin, Florence
Pujol, Françoise
Sarry, Jean-Emmanuel
Langin, Dominique
Lacazette, Eric
Prats, Anne-Catherine
Tomasini, Richard
Galitzky, Jean
Bouloumié, Anne
Garmy-Susini, Barbara
author_sort Morfoisse, Florent
collection PubMed
description SIMPLE SUMMARY: In cancer, the lymphatic system is hijacked by tumor cells that escape from primary tumor and metastasize to the sentinel lymph nodes. Tumor lymphangiogenesis is stimulated by the vascular endothelial growth factors-C (VEGFC) after binding to its receptor VEGFR-3. However, how VEGFC cooperates with other molecules to promote lymphatic neovessel growth has not been fully determined. Here, we showed that tumor lymphangiogenesis developed in tumoral lesions and in their surrounding adipose tissue (AT). Interestingly, lymphatic vessel density correlated with an increase in circulating free fatty acids (FFA) in the lymph from tumor-bearing mice. We showed that adipocyte-released FFA are uploaded by lymphatic endothelial cells (LEC) to stimulate their sprouting. Lipidomic analysis identified the monounsaturated oleic acid (OA) as the major circulating FFA in the lymph in a tumoral context. OA transporters FATP-3, -6 and CD36 were only upregulated on LEC in the presence of VEGFC showing a collaborative effect of these molecules. OA released from adipocytes is taken up by LECs to stimulate the fatty acid β-oxidation, leading to increased adipose tissue lymphangiogenesis. Our results provide new insights on the dialogue between tumors and adipocytes via the lymphatic system and identify a key role for adipocyte-derived FFA in the promotion of lymphangiogenesis, revealing novel therapeutic opportunities for inhibitors of lymphangiogenesis in cancer. ABSTRACT: In cancer, the lymphatic system is hijacked by tumor cells that escape from primary tumor and metastasize to the sentinel lymph nodes. Tumor lymphangiogenesis is stimulated by the vascular endothelial growth factors-C (VEGFC) after binding to its receptor VEGFR-3. However, how VEGFC cooperates with other molecules to promote lymphatics growth has not been fully determined. We showed that lymphangiogenesis developed in tumoral lesions and in surrounding adipose tissue (AT). Interestingly, lymphatic vessel density correlated with an increase in circulating free fatty acids (FFA) in the lymph from tumor-bearing mice. We showed that adipocyte-released FFA are uploaded by lymphatic endothelial cells (LEC) to stimulate their sprouting. Lipidomic analysis identified the monounsaturated oleic acid (OA) as the major circulating FFA in the lymph in a tumoral context. OA transporters FATP-3, -6 and CD36 were only upregulated on LEC in the presence of VEGFC showing a collaborative effect of these molecules. OA stimulates fatty acid β-oxidation in LECs, leading to increased AT lymphangiogenesis. Our results provide new insights on the dialogue between tumors and adipocytes via the lymphatic system and identify a key role for adipocyte-derived FFA in the promotion of lymphangiogenesis, revealing novel therapeutic opportunities for inhibitors of lymphangiogenesis in cancer.
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spelling pubmed-82277172021-06-26 Coordinating Effect of VEGFC and Oleic Acid Participates to Tumor Lymphangiogenesis Morfoisse, Florent De Toni, Fabienne Nigri, Jeremy Hosseini, Mohsen Zamora, Audrey Tatin, Florence Pujol, Françoise Sarry, Jean-Emmanuel Langin, Dominique Lacazette, Eric Prats, Anne-Catherine Tomasini, Richard Galitzky, Jean Bouloumié, Anne Garmy-Susini, Barbara Cancers (Basel) Article SIMPLE SUMMARY: In cancer, the lymphatic system is hijacked by tumor cells that escape from primary tumor and metastasize to the sentinel lymph nodes. Tumor lymphangiogenesis is stimulated by the vascular endothelial growth factors-C (VEGFC) after binding to its receptor VEGFR-3. However, how VEGFC cooperates with other molecules to promote lymphatic neovessel growth has not been fully determined. Here, we showed that tumor lymphangiogenesis developed in tumoral lesions and in their surrounding adipose tissue (AT). Interestingly, lymphatic vessel density correlated with an increase in circulating free fatty acids (FFA) in the lymph from tumor-bearing mice. We showed that adipocyte-released FFA are uploaded by lymphatic endothelial cells (LEC) to stimulate their sprouting. Lipidomic analysis identified the monounsaturated oleic acid (OA) as the major circulating FFA in the lymph in a tumoral context. OA transporters FATP-3, -6 and CD36 were only upregulated on LEC in the presence of VEGFC showing a collaborative effect of these molecules. OA released from adipocytes is taken up by LECs to stimulate the fatty acid β-oxidation, leading to increased adipose tissue lymphangiogenesis. Our results provide new insights on the dialogue between tumors and adipocytes via the lymphatic system and identify a key role for adipocyte-derived FFA in the promotion of lymphangiogenesis, revealing novel therapeutic opportunities for inhibitors of lymphangiogenesis in cancer. ABSTRACT: In cancer, the lymphatic system is hijacked by tumor cells that escape from primary tumor and metastasize to the sentinel lymph nodes. Tumor lymphangiogenesis is stimulated by the vascular endothelial growth factors-C (VEGFC) after binding to its receptor VEGFR-3. However, how VEGFC cooperates with other molecules to promote lymphatics growth has not been fully determined. We showed that lymphangiogenesis developed in tumoral lesions and in surrounding adipose tissue (AT). Interestingly, lymphatic vessel density correlated with an increase in circulating free fatty acids (FFA) in the lymph from tumor-bearing mice. We showed that adipocyte-released FFA are uploaded by lymphatic endothelial cells (LEC) to stimulate their sprouting. Lipidomic analysis identified the monounsaturated oleic acid (OA) as the major circulating FFA in the lymph in a tumoral context. OA transporters FATP-3, -6 and CD36 were only upregulated on LEC in the presence of VEGFC showing a collaborative effect of these molecules. OA stimulates fatty acid β-oxidation in LECs, leading to increased AT lymphangiogenesis. Our results provide new insights on the dialogue between tumors and adipocytes via the lymphatic system and identify a key role for adipocyte-derived FFA in the promotion of lymphangiogenesis, revealing novel therapeutic opportunities for inhibitors of lymphangiogenesis in cancer. MDPI 2021-06-08 /pmc/articles/PMC8227717/ /pubmed/34200994 http://dx.doi.org/10.3390/cancers13122851 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Morfoisse, Florent
De Toni, Fabienne
Nigri, Jeremy
Hosseini, Mohsen
Zamora, Audrey
Tatin, Florence
Pujol, Françoise
Sarry, Jean-Emmanuel
Langin, Dominique
Lacazette, Eric
Prats, Anne-Catherine
Tomasini, Richard
Galitzky, Jean
Bouloumié, Anne
Garmy-Susini, Barbara
Coordinating Effect of VEGFC and Oleic Acid Participates to Tumor Lymphangiogenesis
title Coordinating Effect of VEGFC and Oleic Acid Participates to Tumor Lymphangiogenesis
title_full Coordinating Effect of VEGFC and Oleic Acid Participates to Tumor Lymphangiogenesis
title_fullStr Coordinating Effect of VEGFC and Oleic Acid Participates to Tumor Lymphangiogenesis
title_full_unstemmed Coordinating Effect of VEGFC and Oleic Acid Participates to Tumor Lymphangiogenesis
title_short Coordinating Effect of VEGFC and Oleic Acid Participates to Tumor Lymphangiogenesis
title_sort coordinating effect of vegfc and oleic acid participates to tumor lymphangiogenesis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8227717/
https://www.ncbi.nlm.nih.gov/pubmed/34200994
http://dx.doi.org/10.3390/cancers13122851
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