Searchable abstracts of presentations at key conferences in endocrinology

ea0088007 | Abstracts | BES2022

The impact of interferon-α on global gene expression in iPSC-derived β- and α-like cells

Sandra Marin-Canas , Florian Szymczak , Maria Ines Alvelos , Stephane Demine , Maikel L Colli , de Beeck Anne Op , Sofia Thomaidou , Lorella Marselli , Arnaud Zaldumbide , Piero Marchetti , Decio L Eizirik

Aim: IFNα is a key regulator of the initial dialogue between pancreatic β-cells and the immune system in type 1 diabetes (T1D). IFNα induces endoplasmic reticulum (ER) stress, insulitis and a massive HLA-ABC overexpression in human β-cells, three histological hallmarks of T1D. Against this background we investigated the global role of IFNα on iPSC-derived islet-like cells, used here to mimic islet cells in the early neonatal period when autoimmunity ag...

ea0094p65 | Metabolism, Obesity and Diabetes | SFEBES2023

Differential DNA methylation during postnatal development establishes a subpopulation of pancreatic beta cells with expression of the insulin secretion-enhancing gene, neuronatin

Yu Vanessa , Yong Fiona , Marta Angellica , Khadayate Sanjay , Bhattach Supriyo , Chen Keran , Georgiadou Eleni , Parveen Nazia , Marselli Lorella , De Luca Carmela , Suleiman Mara , Whilding Chad , Marchetti Piero , Dhawan Sangeeta , Withers Dominic , Rutter Guy , Millership Steven

Subpopulations of beta cells dictate overall ‘pacing’ of insulin secretion across the islet and therefore the control of glycaemia. Functional beta cell subpopulations also exist in human islets and have an altered subtype distribution in type 2 diabetes. However, the molecular control of the establishment and maintenance of beta cell hierarchy is poorly understood. We hypothesised that the epigenome would govern this heterogeneity. We have identified a novel subpopu...