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Targeting lactate transport suppresses in vivo breast tumour growth

BACKGROUND: Most cancers, including breast cancer, have high rates of glucose consumption, associated with lactate production, a process referred as “Warburg effect”. Acidification of the tumour microenvironment by lactate extrusion, performed by lactate transporters (MCTs), is associated with highe...

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Autores principales: Morais-Santos, Filipa, Granja, Sara, Miranda-Gonçalves, Vera, Moreira, António H.J., Queirós, Sandro, Vilaça, João L., Schmitt, Fernando C., Longatto-Filho, Adhemar, Paredes, Joana, Baltazar, Fátima, Pinheiro, Céline
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4662483/
https://www.ncbi.nlm.nih.gov/pubmed/26203664
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author Morais-Santos, Filipa
Granja, Sara
Miranda-Gonçalves, Vera
Moreira, António H.J.
Queirós, Sandro
Vilaça, João L.
Schmitt, Fernando C.
Longatto-Filho, Adhemar
Paredes, Joana
Baltazar, Fátima
Pinheiro, Céline
author_facet Morais-Santos, Filipa
Granja, Sara
Miranda-Gonçalves, Vera
Moreira, António H.J.
Queirós, Sandro
Vilaça, João L.
Schmitt, Fernando C.
Longatto-Filho, Adhemar
Paredes, Joana
Baltazar, Fátima
Pinheiro, Céline
author_sort Morais-Santos, Filipa
collection PubMed
description BACKGROUND: Most cancers, including breast cancer, have high rates of glucose consumption, associated with lactate production, a process referred as “Warburg effect”. Acidification of the tumour microenvironment by lactate extrusion, performed by lactate transporters (MCTs), is associated with higher cell proliferation, migration, invasion, angiogenesis and increased cell survival. Previously, we have described MCT1 up-regulation in breast carcinoma samples and demonstrated the importance of in vitro MCT inhibition. In this study, we performed siRNA knockdown of MCT1 and MCT4 in basal-like breast cancer cells in both normoxia and hypoxia conditions to validate the potential of lactate transport inhibition in breast cancer treatment. RESULTS: The effect of MCT knockdown was evaluated on lactate efflux, proliferation, cell biomass, migration and invasion and induction of tumour xenografts in nude mice. MCT knockdown led to a decrease in in vitro tumour cell aggressiveness, with decreased lactate transport, cell proliferation, migration and invasion and, importantly, to an inhibition of in vivo tumour formation and growth. CONCLUSIONS: This work supports MCTs as promising targets in cancer therapy, demonstrates the contribution of MCTs to cancer cell aggressiveness and, more importantly, shows, for the first time, the disruption of in vivo breast tumour growth by targeting lactate transport.
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spelling pubmed-46624832015-12-02 Targeting lactate transport suppresses in vivo breast tumour growth Morais-Santos, Filipa Granja, Sara Miranda-Gonçalves, Vera Moreira, António H.J. Queirós, Sandro Vilaça, João L. Schmitt, Fernando C. Longatto-Filho, Adhemar Paredes, Joana Baltazar, Fátima Pinheiro, Céline Oncotarget Research Paper BACKGROUND: Most cancers, including breast cancer, have high rates of glucose consumption, associated with lactate production, a process referred as “Warburg effect”. Acidification of the tumour microenvironment by lactate extrusion, performed by lactate transporters (MCTs), is associated with higher cell proliferation, migration, invasion, angiogenesis and increased cell survival. Previously, we have described MCT1 up-regulation in breast carcinoma samples and demonstrated the importance of in vitro MCT inhibition. In this study, we performed siRNA knockdown of MCT1 and MCT4 in basal-like breast cancer cells in both normoxia and hypoxia conditions to validate the potential of lactate transport inhibition in breast cancer treatment. RESULTS: The effect of MCT knockdown was evaluated on lactate efflux, proliferation, cell biomass, migration and invasion and induction of tumour xenografts in nude mice. MCT knockdown led to a decrease in in vitro tumour cell aggressiveness, with decreased lactate transport, cell proliferation, migration and invasion and, importantly, to an inhibition of in vivo tumour formation and growth. CONCLUSIONS: This work supports MCTs as promising targets in cancer therapy, demonstrates the contribution of MCTs to cancer cell aggressiveness and, more importantly, shows, for the first time, the disruption of in vivo breast tumour growth by targeting lactate transport. Impact Journals LLC 2015-05-14 /pmc/articles/PMC4662483/ /pubmed/26203664 Text en Copyright: © 2015 Morais-Santos 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
Morais-Santos, Filipa
Granja, Sara
Miranda-Gonçalves, Vera
Moreira, António H.J.
Queirós, Sandro
Vilaça, João L.
Schmitt, Fernando C.
Longatto-Filho, Adhemar
Paredes, Joana
Baltazar, Fátima
Pinheiro, Céline
Targeting lactate transport suppresses in vivo breast tumour growth
title Targeting lactate transport suppresses in vivo breast tumour growth
title_full Targeting lactate transport suppresses in vivo breast tumour growth
title_fullStr Targeting lactate transport suppresses in vivo breast tumour growth
title_full_unstemmed Targeting lactate transport suppresses in vivo breast tumour growth
title_short Targeting lactate transport suppresses in vivo breast tumour growth
title_sort targeting lactate transport suppresses in vivo breast tumour growth
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4662483/
https://www.ncbi.nlm.nih.gov/pubmed/26203664
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