Skip to main content

Integrated human pseudoislet system and microfluidic platform demonstrate differences in GPCR signaling in islet cells.

Citation
Walker, J. T., et al. “Integrated Human Pseudoislet System And Microfluidic Platform Demonstrate Differences In Gpcr Signaling In Islet Cells.”. Jci Insight.
Center Albert Einstein College of Medicine
Author John T Walker, Rachana Haliyur, Heather A Nelson, Matthew Ishahak, Gregory Poffenberger, Radhika Aramandla, Conrad Reihsmann, Joseph R Luchsinger, Diane C Saunders, Peng Wang, Adolfo Garcia-Ocaña, Rita Bottino, Ashutosh Agarwal, Alvin C Powers, Marcela Brissova
Keywords diabetes, Endocrinology, Islet cells, Metabolism
Abstract

Pancreatic islets secrete insulin from β cells and glucagon from α cells, and dysregulated secretion of these hormones is a central component of diabetes. Thus, an improved understanding of the pathways governing coordinated β and α cell hormone secretion will provide insight into islet dysfunction in diabetes. However, the 3D multicellular islet architecture, essential for coordinated islet function, presents experimental challenges for mechanistic studies of intracellular signaling pathways in primary islet cells. Here, we developed an integrated approach to study the function of primary human islet cells using genetically modified pseudoislets that resemble native islets across multiple parameters. Further, we developed a microperifusion system that allowed synchronous acquisition of GCaMP6f biosensor signal and hormone secretory profiles. We demonstrate the utility of this experimental approach by studying the effects of Gi and Gq GPCR pathways on insulin and glucagon secretion by expressing the designer receptors exclusively activated by designer drugs (DREADDs) hM4Di or hM3Dq. Activation of Gi signaling reduced insulin and glucagon secretion, while activation of Gq signaling stimulated glucagon secretion but had both stimulatory and inhibitory effects on insulin secretion, which occur through changes in intracellular Ca2+. The experimental approach of combining pseudoislets with a microfluidic system allowed the coregistration of intracellular signaling dynamics and hormone secretion and demonstrated differences in GPCR signaling pathways between human β and α cells.

Year of Publication
2020
Journal
JCI insight
Volume
5
Issue
10
Date Published
12/2020
ISSN Number
2379-3708
DOI
10.1172/jci.insight.137017
Alternate Journal
JCI Insight
PMID
32352931
PMCID
PMC7259531
Download citation