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VEGF-induced intracellular Ca(2+) oscillations are down-regulated and do not stimulate angiogenesis in breast cancer-derived endothelial colony forming cells

Endothelial colony forming cells (ECFCs) represent a population of truly endothelial precursors that promote the angiogenic switch in solid tumors, such as breast cancer (BC). The intracellular Ca(2+) toolkit, which drives the pro-angiogenic response to VEGF, is remodelled in tumor-associated ECFCs...

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Autores principales: Lodola, Francesco, Laforenza, Umberto, Cattaneo, Fabio, Ruffinatti, Federico Alessandro, Poletto, Valentina, Massa, Margherita, Tancredi, Richard, Zuccolo, Estella, Khdar, Dlzar Alì, Riccardi, Alberto, Biggiogera, Marco, Rosti, Vittorio, Guerra, Germano, Moccia, Francesco
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5707017/
https://www.ncbi.nlm.nih.gov/pubmed/29221123
http://dx.doi.org/10.18632/oncotarget.20255
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author Lodola, Francesco
Laforenza, Umberto
Cattaneo, Fabio
Ruffinatti, Federico Alessandro
Poletto, Valentina
Massa, Margherita
Tancredi, Richard
Zuccolo, Estella
Khdar, Dlzar Alì
Riccardi, Alberto
Biggiogera, Marco
Rosti, Vittorio
Guerra, Germano
Moccia, Francesco
author_facet Lodola, Francesco
Laforenza, Umberto
Cattaneo, Fabio
Ruffinatti, Federico Alessandro
Poletto, Valentina
Massa, Margherita
Tancredi, Richard
Zuccolo, Estella
Khdar, Dlzar Alì
Riccardi, Alberto
Biggiogera, Marco
Rosti, Vittorio
Guerra, Germano
Moccia, Francesco
author_sort Lodola, Francesco
collection PubMed
description Endothelial colony forming cells (ECFCs) represent a population of truly endothelial precursors that promote the angiogenic switch in solid tumors, such as breast cancer (BC). The intracellular Ca(2+) toolkit, which drives the pro-angiogenic response to VEGF, is remodelled in tumor-associated ECFCs such that they are seemingly insensitive to this growth factor. This feature could underlie the relative failure of anti-VEGF therapies in cancer patients. Herein, we investigated whether and how VEGF uses Ca(2+) signalling to control angiogenesis in BC-derived ECFCs (BC-ECFCs). Although VEGFR-2 was normally expressed, VEGF failed to induce proliferation and in vitro tubulogenesis in BC-ECFCs. Likewise, VEGF did not trigger robust Ca(2+) oscillations in these cells. Similar to normal cells, VEGF-induced intracellular Ca(2+) oscillations were triggered by inositol-1,4,5-trisphosphate-dependent Ca(2+) release from the endoplasmic reticulum (ER) and maintained by store-operated Ca(2+) entry (SOCE). However, InsP(3)-dependent Ca(2+) release was significantly lower in BC-ECFCs due to the down-regulation of ER Ca(2+) levels, while there was no remarkable difference in the amplitude, pharmacological profile and molecular composition of SOCE. Thus, the attenuation of the pro-angiogenic Ca(2+) response to VEGF was seemingly due to the reduction in ER Ca(2+) concentration, which prevents VEGF from triggering robust intracellular Ca(2+) oscillations. However, the pharmacological inhibition of SOCE prevented BC-ECFC proliferation and in vitro tubulogenesis. These findings demonstrate for the first time that BC-ECFCs are insensitive to VEGF, which might explain at cellular and molecular levels the failure of anti-VEGF therapies in BC patients, and hint at SOCE as a novel molecular target for this disease.
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spelling pubmed-57070172017-12-07 VEGF-induced intracellular Ca(2+) oscillations are down-regulated and do not stimulate angiogenesis in breast cancer-derived endothelial colony forming cells Lodola, Francesco Laforenza, Umberto Cattaneo, Fabio Ruffinatti, Federico Alessandro Poletto, Valentina Massa, Margherita Tancredi, Richard Zuccolo, Estella Khdar, Dlzar Alì Riccardi, Alberto Biggiogera, Marco Rosti, Vittorio Guerra, Germano Moccia, Francesco Oncotarget Research Paper Endothelial colony forming cells (ECFCs) represent a population of truly endothelial precursors that promote the angiogenic switch in solid tumors, such as breast cancer (BC). The intracellular Ca(2+) toolkit, which drives the pro-angiogenic response to VEGF, is remodelled in tumor-associated ECFCs such that they are seemingly insensitive to this growth factor. This feature could underlie the relative failure of anti-VEGF therapies in cancer patients. Herein, we investigated whether and how VEGF uses Ca(2+) signalling to control angiogenesis in BC-derived ECFCs (BC-ECFCs). Although VEGFR-2 was normally expressed, VEGF failed to induce proliferation and in vitro tubulogenesis in BC-ECFCs. Likewise, VEGF did not trigger robust Ca(2+) oscillations in these cells. Similar to normal cells, VEGF-induced intracellular Ca(2+) oscillations were triggered by inositol-1,4,5-trisphosphate-dependent Ca(2+) release from the endoplasmic reticulum (ER) and maintained by store-operated Ca(2+) entry (SOCE). However, InsP(3)-dependent Ca(2+) release was significantly lower in BC-ECFCs due to the down-regulation of ER Ca(2+) levels, while there was no remarkable difference in the amplitude, pharmacological profile and molecular composition of SOCE. Thus, the attenuation of the pro-angiogenic Ca(2+) response to VEGF was seemingly due to the reduction in ER Ca(2+) concentration, which prevents VEGF from triggering robust intracellular Ca(2+) oscillations. However, the pharmacological inhibition of SOCE prevented BC-ECFC proliferation and in vitro tubulogenesis. These findings demonstrate for the first time that BC-ECFCs are insensitive to VEGF, which might explain at cellular and molecular levels the failure of anti-VEGF therapies in BC patients, and hint at SOCE as a novel molecular target for this disease. Impact Journals LLC 2017-08-14 /pmc/articles/PMC5707017/ /pubmed/29221123 http://dx.doi.org/10.18632/oncotarget.20255 Text en Copyright: © 2017 Lodola et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License 3.0 (http://creativecommons.org/licenses/by/3.0/) (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Lodola, Francesco
Laforenza, Umberto
Cattaneo, Fabio
Ruffinatti, Federico Alessandro
Poletto, Valentina
Massa, Margherita
Tancredi, Richard
Zuccolo, Estella
Khdar, Dlzar Alì
Riccardi, Alberto
Biggiogera, Marco
Rosti, Vittorio
Guerra, Germano
Moccia, Francesco
VEGF-induced intracellular Ca(2+) oscillations are down-regulated and do not stimulate angiogenesis in breast cancer-derived endothelial colony forming cells
title VEGF-induced intracellular Ca(2+) oscillations are down-regulated and do not stimulate angiogenesis in breast cancer-derived endothelial colony forming cells
title_full VEGF-induced intracellular Ca(2+) oscillations are down-regulated and do not stimulate angiogenesis in breast cancer-derived endothelial colony forming cells
title_fullStr VEGF-induced intracellular Ca(2+) oscillations are down-regulated and do not stimulate angiogenesis in breast cancer-derived endothelial colony forming cells
title_full_unstemmed VEGF-induced intracellular Ca(2+) oscillations are down-regulated and do not stimulate angiogenesis in breast cancer-derived endothelial colony forming cells
title_short VEGF-induced intracellular Ca(2+) oscillations are down-regulated and do not stimulate angiogenesis in breast cancer-derived endothelial colony forming cells
title_sort vegf-induced intracellular ca(2+) oscillations are down-regulated and do not stimulate angiogenesis in breast cancer-derived endothelial colony forming cells
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5707017/
https://www.ncbi.nlm.nih.gov/pubmed/29221123
http://dx.doi.org/10.18632/oncotarget.20255
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