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Homotypic and Heterotypic Activation of the Notch Pathway in Multiple Myeloma–Enhanced Angiogenesis: A Novel Therapeutic Target?()

Interactions of multiple myeloma (MM) cells with endothelial cells (ECs) enhance angiogenesis and MM progression. Here, we investigated the role of Notch signaling in the cross talk between ECs and MM cells enabling angiogenesis. MMECs showed higher expression of Jagged1/2 ligands, of activated Notc...

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Autores principales: Saltarella, Ilaria, Frassanito, Maria Antonia, Lamanuzzi, Aurelia, Brevi, Arianna, Leone, Patrizia, Desantis, Vanessa, Di Marzo, Lucia, Bellone, Matteo, Derudas, Daniele, Ribatti, Domenico, Chiaramonte, Raffaella, Palano, Maria Teresa, Neri, Antonino, Mariggiò, Maria Addolorata, Fumarulo, Ruggiero, Dammacco, Franco, Racanelli, Vito, Vacca, Angelo, Ria, Roberto
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Neoplasia Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6282459/
https://www.ncbi.nlm.nih.gov/pubmed/30529074
http://dx.doi.org/10.1016/j.neo.2018.10.011
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author Saltarella, Ilaria
Frassanito, Maria Antonia
Lamanuzzi, Aurelia
Brevi, Arianna
Leone, Patrizia
Desantis, Vanessa
Di Marzo, Lucia
Bellone, Matteo
Derudas, Daniele
Ribatti, Domenico
Chiaramonte, Raffaella
Palano, Maria Teresa
Neri, Antonino
Mariggiò, Maria Addolorata
Fumarulo, Ruggiero
Dammacco, Franco
Racanelli, Vito
Vacca, Angelo
Ria, Roberto
author_facet Saltarella, Ilaria
Frassanito, Maria Antonia
Lamanuzzi, Aurelia
Brevi, Arianna
Leone, Patrizia
Desantis, Vanessa
Di Marzo, Lucia
Bellone, Matteo
Derudas, Daniele
Ribatti, Domenico
Chiaramonte, Raffaella
Palano, Maria Teresa
Neri, Antonino
Mariggiò, Maria Addolorata
Fumarulo, Ruggiero
Dammacco, Franco
Racanelli, Vito
Vacca, Angelo
Ria, Roberto
author_sort Saltarella, Ilaria
collection PubMed
description Interactions of multiple myeloma (MM) cells with endothelial cells (ECs) enhance angiogenesis and MM progression. Here, we investigated the role of Notch signaling in the cross talk between ECs and MM cells enabling angiogenesis. MMECs showed higher expression of Jagged1/2 ligands, of activated Notch1/2 receptors, and of Hes1/Hey1 Notch target genes than ECs from monoclonal gammopathy of undetermined significance patients, suggesting that homotypic activation of Notch pathway occurs in MM. MM cells co-cultured with MMECs triggered Notch activation in these cells through a cell-to-cell contact-dependent way via Jagged1/2, resulting in Hes1/Hey1 overexpression. The angiogenic effect of Notch pathway was analyzed through Notch1/2·siRNAs and the γ-secretase inhibitor MK-0752 by in vitro (adhesion, migration, chemotaxis, angiogenesis) and in vivo (Vk12598/C57B/6 J mouse model) studies. Activated Notch1/2 pathway was associated with the overangiogenic MMEC phenotype: Notch1/2 knockdown or MK-0752 treatment reduced Hes1/Hey1 expression, impairing in vitro angiogenesis of both MMECs alone and co-cultured with MM cells. MM cells were unable to restore angiogenic abilities of treated MMECs, proving that MMEC angiogenic activities closely rely on Notch pathway. Furthermore, Notch1/2 knockdown affected VEGF/VEGFR2 axis, indicating that the Notch pathway interferes with VEGF-mediated control on angiogenesis. MK-0752 reduced secretion of proangiogenic/proinflammatory cytokines in conditioned media, thus inhibiting blood vessel formation in the CAM assay. In the Vk12598/C57B/6 J mouse, MK-0752 treatment restrained angiogenesis by reducing microvessel density. Overall, homotypic and heterotypic Jagged1/2-mediated Notch activation enhances MMECs angiogenesis. Notch axis inhibition blocked angiogenesis in vitro and in vivo, suggesting that the Notch pathway may represent a novel therapeutic target in MM.
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spelling pubmed-62824592018-12-06 Homotypic and Heterotypic Activation of the Notch Pathway in Multiple Myeloma–Enhanced Angiogenesis: A Novel Therapeutic Target?() Saltarella, Ilaria Frassanito, Maria Antonia Lamanuzzi, Aurelia Brevi, Arianna Leone, Patrizia Desantis, Vanessa Di Marzo, Lucia Bellone, Matteo Derudas, Daniele Ribatti, Domenico Chiaramonte, Raffaella Palano, Maria Teresa Neri, Antonino Mariggiò, Maria Addolorata Fumarulo, Ruggiero Dammacco, Franco Racanelli, Vito Vacca, Angelo Ria, Roberto Neoplasia Original article Interactions of multiple myeloma (MM) cells with endothelial cells (ECs) enhance angiogenesis and MM progression. Here, we investigated the role of Notch signaling in the cross talk between ECs and MM cells enabling angiogenesis. MMECs showed higher expression of Jagged1/2 ligands, of activated Notch1/2 receptors, and of Hes1/Hey1 Notch target genes than ECs from monoclonal gammopathy of undetermined significance patients, suggesting that homotypic activation of Notch pathway occurs in MM. MM cells co-cultured with MMECs triggered Notch activation in these cells through a cell-to-cell contact-dependent way via Jagged1/2, resulting in Hes1/Hey1 overexpression. The angiogenic effect of Notch pathway was analyzed through Notch1/2·siRNAs and the γ-secretase inhibitor MK-0752 by in vitro (adhesion, migration, chemotaxis, angiogenesis) and in vivo (Vk12598/C57B/6 J mouse model) studies. Activated Notch1/2 pathway was associated with the overangiogenic MMEC phenotype: Notch1/2 knockdown or MK-0752 treatment reduced Hes1/Hey1 expression, impairing in vitro angiogenesis of both MMECs alone and co-cultured with MM cells. MM cells were unable to restore angiogenic abilities of treated MMECs, proving that MMEC angiogenic activities closely rely on Notch pathway. Furthermore, Notch1/2 knockdown affected VEGF/VEGFR2 axis, indicating that the Notch pathway interferes with VEGF-mediated control on angiogenesis. MK-0752 reduced secretion of proangiogenic/proinflammatory cytokines in conditioned media, thus inhibiting blood vessel formation in the CAM assay. In the Vk12598/C57B/6 J mouse, MK-0752 treatment restrained angiogenesis by reducing microvessel density. Overall, homotypic and heterotypic Jagged1/2-mediated Notch activation enhances MMECs angiogenesis. Notch axis inhibition blocked angiogenesis in vitro and in vivo, suggesting that the Notch pathway may represent a novel therapeutic target in MM. Neoplasia Press 2018-12-05 /pmc/articles/PMC6282459/ /pubmed/30529074 http://dx.doi.org/10.1016/j.neo.2018.10.011 Text en © 2018 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original article
Saltarella, Ilaria
Frassanito, Maria Antonia
Lamanuzzi, Aurelia
Brevi, Arianna
Leone, Patrizia
Desantis, Vanessa
Di Marzo, Lucia
Bellone, Matteo
Derudas, Daniele
Ribatti, Domenico
Chiaramonte, Raffaella
Palano, Maria Teresa
Neri, Antonino
Mariggiò, Maria Addolorata
Fumarulo, Ruggiero
Dammacco, Franco
Racanelli, Vito
Vacca, Angelo
Ria, Roberto
Homotypic and Heterotypic Activation of the Notch Pathway in Multiple Myeloma–Enhanced Angiogenesis: A Novel Therapeutic Target?()
title Homotypic and Heterotypic Activation of the Notch Pathway in Multiple Myeloma–Enhanced Angiogenesis: A Novel Therapeutic Target?()
title_full Homotypic and Heterotypic Activation of the Notch Pathway in Multiple Myeloma–Enhanced Angiogenesis: A Novel Therapeutic Target?()
title_fullStr Homotypic and Heterotypic Activation of the Notch Pathway in Multiple Myeloma–Enhanced Angiogenesis: A Novel Therapeutic Target?()
title_full_unstemmed Homotypic and Heterotypic Activation of the Notch Pathway in Multiple Myeloma–Enhanced Angiogenesis: A Novel Therapeutic Target?()
title_short Homotypic and Heterotypic Activation of the Notch Pathway in Multiple Myeloma–Enhanced Angiogenesis: A Novel Therapeutic Target?()
title_sort homotypic and heterotypic activation of the notch pathway in multiple myeloma–enhanced angiogenesis: a novel therapeutic target?()
topic Original article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6282459/
https://www.ncbi.nlm.nih.gov/pubmed/30529074
http://dx.doi.org/10.1016/j.neo.2018.10.011
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