Searchable abstracts of presentations at key conferences in endocrinology

ea0077p57 | Metabolism, Obesity and Diabetes | SFEBES2021

Transcriptomic profiling of human enteroendocrine cells in primary ileal and duodenal organoid culture

Bakar Rula Bany , Smith Christopher A. , Lu Van B. , Goldspink Deborah A. , Gribble Fiona M. , Reimann Frank

Introduction: Enteroendocrine cells (EECs) are hormone-secreting cells within the intestinal epithelium that play an important role in regulating food absorption, insulin secretion and appetite. To understand the molecular mechanism governing the function of EECs, it is important to investigate cell-type-specific gene expression. The aim of this study was to identify the transcriptome of human EEC populations from organoid culture.Methods: To label the f...

ea0086p51 | Metabolism, Obesity and Diabetes | SFEBES2022

Regulation of 5-HT secretion from human duodenal enterochromaffin cells

Miedzybrodzka Emily , Alcaino Constanza , Guccio Nunzio , Smith Christopher , Lu Van , Bany Bakar Rula , Gribble Fiona , Reimann Frank

The majority of the body’s 5-HT (serotonin) is produced from enterochromaffin cells (ECs) of the intestinal epithelium. 5-HT has important roles within the gastrointestinal tract in the modulation of motility, secretion and inflammation, while also signalling satiety and discomfort to the central nervous system. The factors regulating release of 5-HT from human small intestinal ECs have not been clearly elucidated: although circulating 5-HT levels typically increase after...

ea0077oc3.6 | Metabolism, Obesity and Diabetes | SFEBES2021

Stimulation of motilin secretion by bile, free fatty acids and acidification in human duodenal organoids

Miedzybrodzka Emily L , Foreman Rachel E , Lu Van B , George Amy L , Smith Christopher A , Larraufie Pierre , Kay Richard G , Goldspink Deborah A , Reimann Frank , Gribble Fiona M

Objective: Motilin is a proximal small intestinal hormone with roles in gastrointestinal motility, gallbladder emptying and hunger initiation. The molecular mechanisms underlying motilin release in response to fats, bile and duodenal acidification are poorly understood, in part due a lack of suitable cellular and rodent models. We therefore generated a novel human intestinal organoid model with fluorescently labelled motilin-expressing M-cells, which we used to establish the k...