Islet Lineage Differentiation

Islet lineage differentiation is the developmental process by which pancreatic progenitor cells become endocrine cell types that organize into islets of Langerhans, including insulin-producing β cells, glucagon-producing α cells, and somatostatin-producing δ cells. It proceeds through coordinated changes in transcription factors and signaling pathways that establish endocrine progenitors, promote cell-cycle exit, and specify mature hormone-producing identities. In developmental biology, studying this process clarifies how pancreas formation is regulated and how endocrine cells acquire distinct functions. These insights support efforts to generate functional β cells from stem cells and inform research on diabetes, islet replacement, and regenerative medicine.

Islet Lineage Differentiation - Related Videos

Research

JoVE EoE - Pancreatic Cancer

Pancreatic Islets Isolation through Collagenase Perfusion: An Enzymatic Method to Isolate Pancreatic Islet Cells

0 Views •

2023

Pancreatic islets, also called the Islets of Langerhans, are a cluster of endocrine cells which produces hormones for glucose regulation and other important biological functions. This protocol explains a method for isolating pancreatic islets by first perfusing collagenase via Ampulla of Vater to digest the exocrine pancreatic tissue and a simplified density gradient centrifugation to purify the islets from mice.

Grafting Pancreatic Islets: A Method to Implant Pancreatic Islets into the Anterior Chamber of the Mouse Eye for In Vivo Imaging

0 Views •

2023

This video describes the protocol for grafting human pancreatic islets into the anterior chamber of the mouse’s eye to monitor revascularization of human islet grafts in vivo. It also helps to understand the contribution of recipient versus donor cells in promoting the encapsulation and vascularization of the graft.

Differentiation of Enteric Nervous System Lineages from Human Pluripotent Stem Cells

0 Views •

Cited by 1 •

2024

Deriving enteric nervous system (ENS) lineages from human pluripotent stem cells (hPSC) provides a scalable source of cells to study ENS development and disease, and to use in regenerative medicine. Here, a detailed in vitro protocol to derive enteric neurons from hPSCs using chemically defined culture conditions is presented.

Murine Model of Islet Transplantation: A Surgical Method to Infuse Pancreatic Islets in Portal Vein and Prevention of Postoperative Bleeding

0 Views •

2025

In this video, we describe a procedure to infuse pancreatic islet cells into the hepatic portal vein, followed by application of gel foam to successfully prevent bleeding. Postoperative bleeding is a common cause of high mortality during islet transplantation.

Research

JoVE Journal - Genetics
Free Sample

Genome Editing and Directed Differentiation of hPSCs for Interrogating Lineage Determinants in Human Pancreatic Development

0 Views •

Cited by 3 •

2017

Protocols to generate hPSC mutant lines using the iCRISPR platform and to differentiate hPSCs into glucose-responsive β-like cells are described. Combining genome editing technology with hPSC-directed differentiation provides a powerful platform for the systematic analysis of the role of lineage determinants in human development and disease progression.

View All Results

FAQs

Related Topics