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A surrogate of Roux-en-Y gastric bypass (the enterogastro anastomosis surgery) regulates multiple beta-cell pathways during resolution of diabetes in ob/ob mice

BACKGROUND: Bariatric surgery is an effective treatment for type 2 diabetes. Early post-surgical enhancement of insulin secretion is key for diabetes remission. The full complement of mechanisms responsible for improved pancreatic beta cell functionality after bariatric surgery is still unclear. Our...

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Autores principales: Amouyal, Chloé, Castel, Julien, Guay, Claudiane, Lacombe, Amélie, Denom, Jessica, Migrenne-Li, Stéphanie, Rouault, Christine, Marquet, Florian, Georgiadou, Eleni, Stylianides, Theodoros, Luquet, Serge, Le Stunff, Hervé, Scharfmann, Raphael, Clément, Karine, Rutter, Guy A., Taboureau, Olivier, Magnan, Christophe, Regazzi, Romano, Andreelli, Fabrizio
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7393530/
https://www.ncbi.nlm.nih.gov/pubmed/32739864
http://dx.doi.org/10.1016/j.ebiom.2020.102895
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author Amouyal, Chloé
Castel, Julien
Guay, Claudiane
Lacombe, Amélie
Denom, Jessica
Migrenne-Li, Stéphanie
Rouault, Christine
Marquet, Florian
Georgiadou, Eleni
Stylianides, Theodoros
Luquet, Serge
Le Stunff, Hervé
Scharfmann, Raphael
Clément, Karine
Rutter, Guy A.
Taboureau, Olivier
Magnan, Christophe
Regazzi, Romano
Andreelli, Fabrizio
author_facet Amouyal, Chloé
Castel, Julien
Guay, Claudiane
Lacombe, Amélie
Denom, Jessica
Migrenne-Li, Stéphanie
Rouault, Christine
Marquet, Florian
Georgiadou, Eleni
Stylianides, Theodoros
Luquet, Serge
Le Stunff, Hervé
Scharfmann, Raphael
Clément, Karine
Rutter, Guy A.
Taboureau, Olivier
Magnan, Christophe
Regazzi, Romano
Andreelli, Fabrizio
author_sort Amouyal, Chloé
collection PubMed
description BACKGROUND: Bariatric surgery is an effective treatment for type 2 diabetes. Early post-surgical enhancement of insulin secretion is key for diabetes remission. The full complement of mechanisms responsible for improved pancreatic beta cell functionality after bariatric surgery is still unclear. Our aim was to identify pathways, evident in the islet transcriptome, that characterize the adaptive response to bariatric surgery independently of body weight changes. METHODS: We performed entero-gastro-anastomosis (EGA) with pyloric ligature in leptin-deficient ob/ob mice as a surrogate of Roux-en-Y gastric bypass (RYGB) in humans. Multiple approaches such as determination of glucose tolerance, GLP-1 and insulin secretion, whole body insulin sensitivity, ex vivo glucose-stimulated insulin secretion (GSIS) and functional multicellular Ca(2+)-imaging, profiling of mRNA and of miRNA expression were utilized to identify significant biological processes involved in pancreatic islet recovery. FINDINGS: EGA resolved diabetes, increased pancreatic insulin content and GSIS despite a persistent increase in fat mass, systemic and intra-islet inflammation, and lipotoxicity. Surgery differentially regulated 193 genes in the islet, most of which were involved in the regulation of glucose metabolism, insulin secretion, calcium signaling or beta cell viability, and these were normalized alongside changes in glucose metabolism, intracellular Ca(2+) dynamics and the threshold for GSIS. Furthermore, 27 islet miRNAs were differentially regulated, four of them hubs in a miRNA-gene interaction network and four others part of a blood signature of diabetes resolution in ob/ob mice and in humans. INTERPRETATION: Taken together, our data highlight novel miRNA-gene interactions in the pancreatic islet during the resolution of diabetes after bariatric surgery that form part of a blood signature of diabetes reversal. FUNDING: European Union's Horizon 2020 research and innovation programme via the Innovative Medicines Initiative 2 Joint Undertaking (RHAPSODY), INSERM, Société Francophone du Diabète, Institut Benjamin Delessert, Wellcome Trust Investigator Award (212625/Z/18/Z), MRC Programme grants (MR/R022259/1, MR/J0003042/1, MR/L020149/1), Diabetes UK (BDA/11/0004210, BDA/15/0005275, BDA 16/0005485) project grants, National Science Foundation (310030–188447), Fondation de l'Avenir.
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spelling pubmed-73935302020-08-04 A surrogate of Roux-en-Y gastric bypass (the enterogastro anastomosis surgery) regulates multiple beta-cell pathways during resolution of diabetes in ob/ob mice Amouyal, Chloé Castel, Julien Guay, Claudiane Lacombe, Amélie Denom, Jessica Migrenne-Li, Stéphanie Rouault, Christine Marquet, Florian Georgiadou, Eleni Stylianides, Theodoros Luquet, Serge Le Stunff, Hervé Scharfmann, Raphael Clément, Karine Rutter, Guy A. Taboureau, Olivier Magnan, Christophe Regazzi, Romano Andreelli, Fabrizio EBioMedicine Research paper BACKGROUND: Bariatric surgery is an effective treatment for type 2 diabetes. Early post-surgical enhancement of insulin secretion is key for diabetes remission. The full complement of mechanisms responsible for improved pancreatic beta cell functionality after bariatric surgery is still unclear. Our aim was to identify pathways, evident in the islet transcriptome, that characterize the adaptive response to bariatric surgery independently of body weight changes. METHODS: We performed entero-gastro-anastomosis (EGA) with pyloric ligature in leptin-deficient ob/ob mice as a surrogate of Roux-en-Y gastric bypass (RYGB) in humans. Multiple approaches such as determination of glucose tolerance, GLP-1 and insulin secretion, whole body insulin sensitivity, ex vivo glucose-stimulated insulin secretion (GSIS) and functional multicellular Ca(2+)-imaging, profiling of mRNA and of miRNA expression were utilized to identify significant biological processes involved in pancreatic islet recovery. FINDINGS: EGA resolved diabetes, increased pancreatic insulin content and GSIS despite a persistent increase in fat mass, systemic and intra-islet inflammation, and lipotoxicity. Surgery differentially regulated 193 genes in the islet, most of which were involved in the regulation of glucose metabolism, insulin secretion, calcium signaling or beta cell viability, and these were normalized alongside changes in glucose metabolism, intracellular Ca(2+) dynamics and the threshold for GSIS. Furthermore, 27 islet miRNAs were differentially regulated, four of them hubs in a miRNA-gene interaction network and four others part of a blood signature of diabetes resolution in ob/ob mice and in humans. INTERPRETATION: Taken together, our data highlight novel miRNA-gene interactions in the pancreatic islet during the resolution of diabetes after bariatric surgery that form part of a blood signature of diabetes reversal. FUNDING: European Union's Horizon 2020 research and innovation programme via the Innovative Medicines Initiative 2 Joint Undertaking (RHAPSODY), INSERM, Société Francophone du Diabète, Institut Benjamin Delessert, Wellcome Trust Investigator Award (212625/Z/18/Z), MRC Programme grants (MR/R022259/1, MR/J0003042/1, MR/L020149/1), Diabetes UK (BDA/11/0004210, BDA/15/0005275, BDA 16/0005485) project grants, National Science Foundation (310030–188447), Fondation de l'Avenir. Elsevier 2020-07-30 /pmc/articles/PMC7393530/ /pubmed/32739864 http://dx.doi.org/10.1016/j.ebiom.2020.102895 Text en © 2020 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 Research paper
Amouyal, Chloé
Castel, Julien
Guay, Claudiane
Lacombe, Amélie
Denom, Jessica
Migrenne-Li, Stéphanie
Rouault, Christine
Marquet, Florian
Georgiadou, Eleni
Stylianides, Theodoros
Luquet, Serge
Le Stunff, Hervé
Scharfmann, Raphael
Clément, Karine
Rutter, Guy A.
Taboureau, Olivier
Magnan, Christophe
Regazzi, Romano
Andreelli, Fabrizio
A surrogate of Roux-en-Y gastric bypass (the enterogastro anastomosis surgery) regulates multiple beta-cell pathways during resolution of diabetes in ob/ob mice
title A surrogate of Roux-en-Y gastric bypass (the enterogastro anastomosis surgery) regulates multiple beta-cell pathways during resolution of diabetes in ob/ob mice
title_full A surrogate of Roux-en-Y gastric bypass (the enterogastro anastomosis surgery) regulates multiple beta-cell pathways during resolution of diabetes in ob/ob mice
title_fullStr A surrogate of Roux-en-Y gastric bypass (the enterogastro anastomosis surgery) regulates multiple beta-cell pathways during resolution of diabetes in ob/ob mice
title_full_unstemmed A surrogate of Roux-en-Y gastric bypass (the enterogastro anastomosis surgery) regulates multiple beta-cell pathways during resolution of diabetes in ob/ob mice
title_short A surrogate of Roux-en-Y gastric bypass (the enterogastro anastomosis surgery) regulates multiple beta-cell pathways during resolution of diabetes in ob/ob mice
title_sort surrogate of roux-en-y gastric bypass (the enterogastro anastomosis surgery) regulates multiple beta-cell pathways during resolution of diabetes in ob/ob mice
topic Research paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7393530/
https://www.ncbi.nlm.nih.gov/pubmed/32739864
http://dx.doi.org/10.1016/j.ebiom.2020.102895
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