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Dexamethasone-induced cell death is restricted to specific molecular subgroups of multiple myeloma

Due to its cytotoxic effect in lymphoid cells, dexamethasone is widely used in the treatment of multiple myeloma (MM). However, only a subset of myeloma patients responds to high-dose dexamethasone. Despite the undeniable anti-myeloma benefits of dexamethasone, significant adverse effects have been...

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Autores principales: Kervoëlen, Charlotte, Ménoret, Emmanuelle, Gomez-Bougie, Patricia, Bataille, Régis, Godon, Catherine, Marionneau-Lambot, Séverine, Moreau, Philippe, Pellat-Deceunynck, Catherine, Amiot, Martine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4694963/
https://www.ncbi.nlm.nih.gov/pubmed/26323097
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author Kervoëlen, Charlotte
Ménoret, Emmanuelle
Gomez-Bougie, Patricia
Bataille, Régis
Godon, Catherine
Marionneau-Lambot, Séverine
Moreau, Philippe
Pellat-Deceunynck, Catherine
Amiot, Martine
author_facet Kervoëlen, Charlotte
Ménoret, Emmanuelle
Gomez-Bougie, Patricia
Bataille, Régis
Godon, Catherine
Marionneau-Lambot, Séverine
Moreau, Philippe
Pellat-Deceunynck, Catherine
Amiot, Martine
author_sort Kervoëlen, Charlotte
collection PubMed
description Due to its cytotoxic effect in lymphoid cells, dexamethasone is widely used in the treatment of multiple myeloma (MM). However, only a subset of myeloma patients responds to high-dose dexamethasone. Despite the undeniable anti-myeloma benefits of dexamethasone, significant adverse effects have been reported. We re-evaluate the anti-tumor effect of dexamethasone according to the molecular heterogeneity of MM. We demonstrated that the pro-death effect of dexamethasone is related to the genetic heterogeneity of MM because sensitive cell lines were restricted to MAF and MMSET signature subgroups, whereas all CCND1 cell lines (n = 10) were resistant to dexamethasone. We demonstrated that the glucocorticoid receptor expression was an important limiting factor for dexamethasone-induced cell death and we found a correlation between glucocorticoid receptor levels and the induction of glucocorticoid-induced leucine zipper (GILZ) under dexamethasone treatment. By silencing GILZ, we next demonstrated that GILZ is necessary for Dex induced apoptosis while triggering an imbalance between anti- and pro-apoptotic Bcl-2 proteins. Finally, the heterogeneity of the dexamethasone response was further confirmed in vivo using myeloma xenograft models. Our findings suggested that the effect of dexamethasone should be re-evaluated within molecular subgroups of myeloma patients to improve its efficacy and reduce its adverse effects.
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spelling pubmed-46949632016-01-20 Dexamethasone-induced cell death is restricted to specific molecular subgroups of multiple myeloma Kervoëlen, Charlotte Ménoret, Emmanuelle Gomez-Bougie, Patricia Bataille, Régis Godon, Catherine Marionneau-Lambot, Séverine Moreau, Philippe Pellat-Deceunynck, Catherine Amiot, Martine Oncotarget Research Paper Due to its cytotoxic effect in lymphoid cells, dexamethasone is widely used in the treatment of multiple myeloma (MM). However, only a subset of myeloma patients responds to high-dose dexamethasone. Despite the undeniable anti-myeloma benefits of dexamethasone, significant adverse effects have been reported. We re-evaluate the anti-tumor effect of dexamethasone according to the molecular heterogeneity of MM. We demonstrated that the pro-death effect of dexamethasone is related to the genetic heterogeneity of MM because sensitive cell lines were restricted to MAF and MMSET signature subgroups, whereas all CCND1 cell lines (n = 10) were resistant to dexamethasone. We demonstrated that the glucocorticoid receptor expression was an important limiting factor for dexamethasone-induced cell death and we found a correlation between glucocorticoid receptor levels and the induction of glucocorticoid-induced leucine zipper (GILZ) under dexamethasone treatment. By silencing GILZ, we next demonstrated that GILZ is necessary for Dex induced apoptosis while triggering an imbalance between anti- and pro-apoptotic Bcl-2 proteins. Finally, the heterogeneity of the dexamethasone response was further confirmed in vivo using myeloma xenograft models. Our findings suggested that the effect of dexamethasone should be re-evaluated within molecular subgroups of myeloma patients to improve its efficacy and reduce its adverse effects. Impact Journals LLC 2015-07-16 /pmc/articles/PMC4694963/ /pubmed/26323097 Text en Copyright: © 2015 Kervoëlen 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
Kervoëlen, Charlotte
Ménoret, Emmanuelle
Gomez-Bougie, Patricia
Bataille, Régis
Godon, Catherine
Marionneau-Lambot, Séverine
Moreau, Philippe
Pellat-Deceunynck, Catherine
Amiot, Martine
Dexamethasone-induced cell death is restricted to specific molecular subgroups of multiple myeloma
title Dexamethasone-induced cell death is restricted to specific molecular subgroups of multiple myeloma
title_full Dexamethasone-induced cell death is restricted to specific molecular subgroups of multiple myeloma
title_fullStr Dexamethasone-induced cell death is restricted to specific molecular subgroups of multiple myeloma
title_full_unstemmed Dexamethasone-induced cell death is restricted to specific molecular subgroups of multiple myeloma
title_short Dexamethasone-induced cell death is restricted to specific molecular subgroups of multiple myeloma
title_sort dexamethasone-induced cell death is restricted to specific molecular subgroups of multiple myeloma
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4694963/
https://www.ncbi.nlm.nih.gov/pubmed/26323097
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