Persistent or Transient Human β Cell Dysfunction Induced by Metabolic Stress: Specific Signatures and Shared Gene Expression with Type 2 Diabetes

Publikation: Beitrag in FachzeitschriftForschungsartikelBeigetragenBegutachtung

Beitragende

  • Lorella Marselli - , University of Pisa (Autor:in)
  • Anthony Piron - , Université libre de Bruxelles (ULB) (Autor:in)
  • Mara Suleiman - , University of Pisa (Autor:in)
  • Maikel L. Colli - , Université libre de Bruxelles (ULB) (Autor:in)
  • Xiaoyan Yi - , Université libre de Bruxelles (ULB) (Autor:in)
  • Amna Khamis - , Université de Lille (Autor:in)
  • Gaelle R. Carrat - , Imperial College London (Autor:in)
  • Guy A. Rutter - , Imperial College London, Nanyang Technological University (Autor:in)
  • Marco Bugliani - , University of Pisa (Autor:in)
  • Laura Giusti - , University of Pisa, University of Camerino (Autor:in)
  • Maurizio Ronci - , Università D'Annunzio, Chieti, Pescara, Italy 0000-0002-4643-4010 (Autor:in)
  • Mark Ibberson - , Swiss Institute of Bioinformatics (Autor:in)
  • Jean Valery Turatsinze - , Université libre de Bruxelles (ULB) (Autor:in)
  • Ugo Boggi - , University of Pisa, Ospedale Cisanello (Autor:in)
  • Paolo De Simone - , University of Pisa, Ospedale Cisanello (Autor:in)
  • Vincenzo De Tata - , University of Pisa (Autor:in)
  • Miguel Lopes - , Université libre de Bruxelles (ULB) (Autor:in)
  • Daniela Nasteska - , Université libre de Bruxelles (ULB) (Autor:in)
  • Carmela De Luca - , University of Pisa (Autor:in)
  • Marta Tesi - , University of Pisa (Autor:in)
  • Emanuele Bosi - , University of Pisa (Autor:in)
  • Pratibha Singh - , Université libre de Bruxelles (ULB) (Autor:in)
  • Daniela Campani - , University of Pisa (Autor:in)
  • Anke M. Schulte - , Sanofi-Aventis (Autor:in)
  • Michele Solimena - , Molekulare Diabetologie, Technische Universität Dresden, Deutsches Zentrum für Diabetesforschung (DZD e.V.) (Autor:in)
  • Peter Hecht - , Sanofi-Aventis (Autor:in)
  • Brian Rady - , Janssen Pharmaceutica NV (Autor:in)
  • Ivona Bakaj - , Janssen Pharmaceutica NV (Autor:in)
  • Alessandro Pocai - , Janssen Pharmaceutica NV (Autor:in)
  • Lisa Norquay - , Janssen Pharmaceutica NV (Autor:in)
  • Bernard Thorens - , Université de Lausanne (Autor:in)
  • Mickaël Canouil - , Université de Lille (Autor:in)
  • Philippe Froguel - , Imperial College London (Autor:in)
  • Decio L. Eizirik - , Université libre de Bruxelles (ULB), Indiana Biosciences Research Institute (IBRI) (Autor:in)
  • Miriam Cnop - , Université libre de Bruxelles (ULB) (Autor:in)
  • Piero Marchetti - , University of Pisa (Autor:in)

Abstract

Pancreatic β cell failure is key to type 2 diabetes (T2D) onset and progression. Here, we assess whether human β cell dysfunction induced by metabolic stress is reversible, evaluate the molecular pathways underlying persistent or transient damage, and explore the relationships with T2D islet traits. Twenty-six islet preparations are exposed to several lipotoxic/glucotoxic conditions, some of which impair insulin release, depending on stressor type, concentration, and combination. The reversal of dysfunction occurs after washout for some, although not all, of the lipoglucotoxic insults. Islet transcriptomes assessed by RNA sequencing and expression quantitative trait loci (eQTL) analysis identify specific pathways underlying β cell failure and recovery. Comparison of a large number of human T2D islet transcriptomes with those of persistent or reversible β cell lipoglucotoxicity show shared gene expression signatures. The identification of mechanisms associated with human β cell dysfunction and recovery and their overlap with T2D islet traits provide insights into T2D pathogenesis, fostering the development of improved β cell-targeted therapeutic strategies.

Details

OriginalspracheEnglisch
Aufsatznummer108466
FachzeitschriftCell reports
Jahrgang33
Ausgabenummer9
PublikationsstatusVeröffentlicht - 1 Dez. 2020
Peer-Review-StatusJa

Externe IDs

PubMed 33264613

Schlagworte

Ziele für nachhaltige Entwicklung

Schlagwörter

  • beta cells, damage, endoplasmic reticulum stress, eQTL, glucolipotoxicity, human pancreatic islets, lipoglucotoxicity, recovery, transcriptome, type 2 diabetes