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Mithramycin Exerts an Anti-Myeloma Effect and Displays Anti-Angiogenic Effects through Up-Regulation of Anti-Angiogenic Factors

Mithramycin (MTM), a cytotoxic compound, is currently being investigated for its anti-angiogenic activity that seems to be mediated through an inhibition of the transcription factor SP1. In this study we evaluated its anti-myeloma effects in the syngenic 5TGM1 model in vitro as well as in vivo. In v...

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Autores principales: Otjacques, Eléonore, Binsfeld, Marilène, Rocks, Natacha, Blacher, Silvia, Vanderkerken, Karin, Noel, Agnès, Beguin, Yves, Cataldo, Didier, Caers, Jo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3646989/
https://www.ncbi.nlm.nih.gov/pubmed/23667526
http://dx.doi.org/10.1371/journal.pone.0062818
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author Otjacques, Eléonore
Binsfeld, Marilène
Rocks, Natacha
Blacher, Silvia
Vanderkerken, Karin
Noel, Agnès
Beguin, Yves
Cataldo, Didier
Caers, Jo
author_facet Otjacques, Eléonore
Binsfeld, Marilène
Rocks, Natacha
Blacher, Silvia
Vanderkerken, Karin
Noel, Agnès
Beguin, Yves
Cataldo, Didier
Caers, Jo
author_sort Otjacques, Eléonore
collection PubMed
description Mithramycin (MTM), a cytotoxic compound, is currently being investigated for its anti-angiogenic activity that seems to be mediated through an inhibition of the transcription factor SP1. In this study we evaluated its anti-myeloma effects in the syngenic 5TGM1 model in vitro as well as in vivo. In vitro, MTM inhibited DNA synthesis of 5TGM1 cells with an IC50 of 400 nM and induced an arrest in cell cycle progression at the G1/S transition point. Western-blot revealed an up-regulation of p53, p21 and p27 and an inhibition of c-Myc, while SP1 remained unaffected. In rat aortic ring assays, a strong anti-angiogenic effect was seen, which could be explained by a decrease of VEGF production and an up-regulation of anti-angiogenic proteins such as IP10 after MTM treatment. The administration of MTM to mice injected with 5TGM1 decreased 5TGM1 cell invasion into bone marrow and myeloma neovascularisation. These data suggest that MTM displays anti-myeloma and anti-angiogenic effects that are not mediated by an inhibition of SP1 but rather through c-Myc inhibition and p53 activation.
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spelling pubmed-36469892013-05-10 Mithramycin Exerts an Anti-Myeloma Effect and Displays Anti-Angiogenic Effects through Up-Regulation of Anti-Angiogenic Factors Otjacques, Eléonore Binsfeld, Marilène Rocks, Natacha Blacher, Silvia Vanderkerken, Karin Noel, Agnès Beguin, Yves Cataldo, Didier Caers, Jo PLoS One Research Article Mithramycin (MTM), a cytotoxic compound, is currently being investigated for its anti-angiogenic activity that seems to be mediated through an inhibition of the transcription factor SP1. In this study we evaluated its anti-myeloma effects in the syngenic 5TGM1 model in vitro as well as in vivo. In vitro, MTM inhibited DNA synthesis of 5TGM1 cells with an IC50 of 400 nM and induced an arrest in cell cycle progression at the G1/S transition point. Western-blot revealed an up-regulation of p53, p21 and p27 and an inhibition of c-Myc, while SP1 remained unaffected. In rat aortic ring assays, a strong anti-angiogenic effect was seen, which could be explained by a decrease of VEGF production and an up-regulation of anti-angiogenic proteins such as IP10 after MTM treatment. The administration of MTM to mice injected with 5TGM1 decreased 5TGM1 cell invasion into bone marrow and myeloma neovascularisation. These data suggest that MTM displays anti-myeloma and anti-angiogenic effects that are not mediated by an inhibition of SP1 but rather through c-Myc inhibition and p53 activation. Public Library of Science 2013-05-07 /pmc/articles/PMC3646989/ /pubmed/23667526 http://dx.doi.org/10.1371/journal.pone.0062818 Text en © 2013 Otjacques et al http://creativecommons.org/licenses/by/4.0/ 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 properly credited.
spellingShingle Research Article
Otjacques, Eléonore
Binsfeld, Marilène
Rocks, Natacha
Blacher, Silvia
Vanderkerken, Karin
Noel, Agnès
Beguin, Yves
Cataldo, Didier
Caers, Jo
Mithramycin Exerts an Anti-Myeloma Effect and Displays Anti-Angiogenic Effects through Up-Regulation of Anti-Angiogenic Factors
title Mithramycin Exerts an Anti-Myeloma Effect and Displays Anti-Angiogenic Effects through Up-Regulation of Anti-Angiogenic Factors
title_full Mithramycin Exerts an Anti-Myeloma Effect and Displays Anti-Angiogenic Effects through Up-Regulation of Anti-Angiogenic Factors
title_fullStr Mithramycin Exerts an Anti-Myeloma Effect and Displays Anti-Angiogenic Effects through Up-Regulation of Anti-Angiogenic Factors
title_full_unstemmed Mithramycin Exerts an Anti-Myeloma Effect and Displays Anti-Angiogenic Effects through Up-Regulation of Anti-Angiogenic Factors
title_short Mithramycin Exerts an Anti-Myeloma Effect and Displays Anti-Angiogenic Effects through Up-Regulation of Anti-Angiogenic Factors
title_sort mithramycin exerts an anti-myeloma effect and displays anti-angiogenic effects through up-regulation of anti-angiogenic factors
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3646989/
https://www.ncbi.nlm.nih.gov/pubmed/23667526
http://dx.doi.org/10.1371/journal.pone.0062818
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