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Single-cell analyses of human pancreas: characteristics of two populations of acinar cells in chronic pancreatitis

Authors :
Jami L. Saloman
Amer H. Zureikat
Rita Bottino
Mark A. Ross
Kenneth K. Lee
Martin Wijkstrom
Aatur D. Singhi
Brandon M. Blobner
Celeste A Shelton Ohlsen
Randall E. Brand
David C. Whitcomb
Donna B. Stolz
Robert Lafyatis
Source :
Am J Physiol Gastrointest Liver Physiol
Publication Year :
2021
Publisher :
American Physiological Society, 2021.

Abstract

Chronic pancreatitis (CP) is a complex inflammatory disorder with numerous associated genetic and environmental risk factors. The most distressing characteristic of CP is recalcitrant pain, often requiring surgical resection including total pancreatectomy with islet autotransplantation (TPIAT). We studied five consented subjects undergoing pancreatic resection and processed isolated cells for single-cell RNA sequencing (scRNA-Seq). Using high-dimensional transcriptomic cluster analysis, we identified 11 unique cell clusters in the pancreas tissue. These cell clusters include a cluster of undifferentiated/dedifferentiated cells and two unique clusters of acinar cells, one of which appears to be in a transitional stage. To determine the cellular response to protease inhibitor and stimulation, we treated aliquots of cells from one subject with a protease inhibitor cocktail with and without bethanechol (a muscarinic receptor agonist) at 100 and 400 µM and compared gene expression profiles. The protease inhibitors appeared to reduce cell stress. Pancreatic digestive enzymes and islet hormones were upregulated in both doses of bethanechol-treated cells compared with naïve cells. High-dose bethanechol appeared to be toxic and consistent with hyperstimulation. These studies demonstrate the feasibility of investigating human acinar cell physiology at the single-cell level and initial evidence that these cells retain responsiveness to agonist stimulation with predicted second messenger and transcriptomic responses. NEW & NOTEWORTHY We conducted single cell RNA sequencing on pancreas tissue from five individuals. We identified eleven unique cell clusters including a large population of dedifferentiated cells as well as two unique clusters of acinar cells, one of which appears to exist in a transitional state. We also examined the cellular response of pancreas tissue to stimulation and identified affected genes and pathways, including pancreatic digestive enzymes.

Details

Language :
English
Database :
OpenAIRE
Journal :
Am J Physiol Gastrointest Liver Physiol
Accession number :
edsair.doi.dedup.....54ac7136ebeafe9c77c25b233334c0b0