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Azathioprine induction of tumors with microsatellite instability: Risk evaluation using a mouse model

Mismatch-repair (MMR)-deficient cells show increased in vitro tolerance to thiopurines because they escape apoptosis resulting from MMR-dependent signaling of drug-induced DNA damage. Prolonged treatment with immunosuppressants including azathioprine (Aza), a thiopurine prodrug, has been suggested a...

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Autores principales: Bodo, Sahra, Svrcek, Magali, Sourrouille, Isabelle, Cuillières-Dartigues, Peggy, Ledent, Tatiana, Dumont, Sylvie, Dinard, Laetitia, Lafitte, Philippe, Capel, Camille, Collura, Ada, Buhard, Olivier, Wanherdrick, Kristell, Chalastanis, Alexandra, Penard-Lacronique, Virginie, Fabiani, Bettina, Fléjou, Jean-François, Brousse, Nicole, Beaugerie, Laurent, Duval, Alex, Muleris, Martine
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4694807/
https://www.ncbi.nlm.nih.gov/pubmed/26327213
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author Bodo, Sahra
Svrcek, Magali
Sourrouille, Isabelle
Cuillières-Dartigues, Peggy
Ledent, Tatiana
Dumont, Sylvie
Dinard, Laetitia
Lafitte, Philippe
Capel, Camille
Collura, Ada
Buhard, Olivier
Wanherdrick, Kristell
Chalastanis, Alexandra
Penard-Lacronique, Virginie
Fabiani, Bettina
Fléjou, Jean-François
Brousse, Nicole
Beaugerie, Laurent
Duval, Alex
Muleris, Martine
author_facet Bodo, Sahra
Svrcek, Magali
Sourrouille, Isabelle
Cuillières-Dartigues, Peggy
Ledent, Tatiana
Dumont, Sylvie
Dinard, Laetitia
Lafitte, Philippe
Capel, Camille
Collura, Ada
Buhard, Olivier
Wanherdrick, Kristell
Chalastanis, Alexandra
Penard-Lacronique, Virginie
Fabiani, Bettina
Fléjou, Jean-François
Brousse, Nicole
Beaugerie, Laurent
Duval, Alex
Muleris, Martine
author_sort Bodo, Sahra
collection PubMed
description Mismatch-repair (MMR)-deficient cells show increased in vitro tolerance to thiopurines because they escape apoptosis resulting from MMR-dependent signaling of drug-induced DNA damage. Prolonged treatment with immunosuppressants including azathioprine (Aza), a thiopurine prodrug, has been suggested as a risk factor for the development of late onset leukemias/lymphomas displaying a microsatellite instability (MSI) phenotype, the hallmark of a defective MMR system. We performed a dose effect study in mice to investigate the development of MSI lymphomas associated with long term Aza treatment. Over two years, Aza was administered to mice that were wild type, null or heterozygous for the MMR gene Msh2. Ciclosporin A, an immunosuppressant with an MMR-independent signaling, was also administered to Msh2(wt) mice as controls. Survival, lymphoma incidence and MSI tumor phenotype were investigated. Msh2(+/−) mice were found more tolerant than Msh2(wt) mice to the cytotoxicity of Aza. In Msh2(+/−) mice, Aza induced a high incidence of MSI lymphomas in a dose-dependent manner. In Msh2(wt) mice, a substantial lifespan was only observed at the lowest Aza dose. It was associated with the development of lymphomas, one of which displayed the MSI phenotype, unlike the CsA-induced lymphomas. Our findings define Aza as a risk factor for an MSI-driven lymphomagenesis process.
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spelling pubmed-46948072016-01-20 Azathioprine induction of tumors with microsatellite instability: Risk evaluation using a mouse model Bodo, Sahra Svrcek, Magali Sourrouille, Isabelle Cuillières-Dartigues, Peggy Ledent, Tatiana Dumont, Sylvie Dinard, Laetitia Lafitte, Philippe Capel, Camille Collura, Ada Buhard, Olivier Wanherdrick, Kristell Chalastanis, Alexandra Penard-Lacronique, Virginie Fabiani, Bettina Fléjou, Jean-François Brousse, Nicole Beaugerie, Laurent Duval, Alex Muleris, Martine Oncotarget Research Paper Mismatch-repair (MMR)-deficient cells show increased in vitro tolerance to thiopurines because they escape apoptosis resulting from MMR-dependent signaling of drug-induced DNA damage. Prolonged treatment with immunosuppressants including azathioprine (Aza), a thiopurine prodrug, has been suggested as a risk factor for the development of late onset leukemias/lymphomas displaying a microsatellite instability (MSI) phenotype, the hallmark of a defective MMR system. We performed a dose effect study in mice to investigate the development of MSI lymphomas associated with long term Aza treatment. Over two years, Aza was administered to mice that were wild type, null or heterozygous for the MMR gene Msh2. Ciclosporin A, an immunosuppressant with an MMR-independent signaling, was also administered to Msh2(wt) mice as controls. Survival, lymphoma incidence and MSI tumor phenotype were investigated. Msh2(+/−) mice were found more tolerant than Msh2(wt) mice to the cytotoxicity of Aza. In Msh2(+/−) mice, Aza induced a high incidence of MSI lymphomas in a dose-dependent manner. In Msh2(wt) mice, a substantial lifespan was only observed at the lowest Aza dose. It was associated with the development of lymphomas, one of which displayed the MSI phenotype, unlike the CsA-induced lymphomas. Our findings define Aza as a risk factor for an MSI-driven lymphomagenesis process. Impact Journals LLC 2015-08-17 /pmc/articles/PMC4694807/ /pubmed/26327213 Text en Copyright: © 2015 Bodo 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
Bodo, Sahra
Svrcek, Magali
Sourrouille, Isabelle
Cuillières-Dartigues, Peggy
Ledent, Tatiana
Dumont, Sylvie
Dinard, Laetitia
Lafitte, Philippe
Capel, Camille
Collura, Ada
Buhard, Olivier
Wanherdrick, Kristell
Chalastanis, Alexandra
Penard-Lacronique, Virginie
Fabiani, Bettina
Fléjou, Jean-François
Brousse, Nicole
Beaugerie, Laurent
Duval, Alex
Muleris, Martine
Azathioprine induction of tumors with microsatellite instability: Risk evaluation using a mouse model
title Azathioprine induction of tumors with microsatellite instability: Risk evaluation using a mouse model
title_full Azathioprine induction of tumors with microsatellite instability: Risk evaluation using a mouse model
title_fullStr Azathioprine induction of tumors with microsatellite instability: Risk evaluation using a mouse model
title_full_unstemmed Azathioprine induction of tumors with microsatellite instability: Risk evaluation using a mouse model
title_short Azathioprine induction of tumors with microsatellite instability: Risk evaluation using a mouse model
title_sort azathioprine induction of tumors with microsatellite instability: risk evaluation using a mouse model
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4694807/
https://www.ncbi.nlm.nih.gov/pubmed/26327213
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