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A Peninsular Structure Coordinates Asynchronous Differentiation with Morphogenesis to Generate Pancreatic Islets
Author(s) -
Nadav Sharon,
Raghav Chawla,
Jonas Mueller,
Jordan Vanderhooft,
Luke James Whitehorn,
Benjamin Rosenthal,
Mads Gürtler,
Ralph R. Estanboulieh,
Dmitry Shvartsman,
David K. Gifford,
Cole Trapnell,
D. A. Melton
Publication year - 2019
Publication title -
cell
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 26.304
H-Index - 776
eISSN - 1097-4172
pISSN - 0092-8674
DOI - 10.1016/j.cell.2018.12.003
Subject(s) - biology , islet , morphogenesis , enteroendocrine cell , embryonic stem cell , microbiology and biotechnology , pancreatic islets , transplantation , progenitor cell , cellular differentiation , pancreas , stem cell , medicine , endocrine system , endocrinology , insulin , hormone , gene , genetics
The pancreatic islets of Langerhans regulate glucose homeostasis. The loss of insulin-producing β cells within islets results in diabetes, and islet transplantation from cadaveric donors can cure the disease. In vitro production of whole islets, not just β cells, will benefit from a better understanding of endocrine differentiation and islet morphogenesis. We used single-cell mRNA sequencing to obtain a detailed description of pancreatic islet development. Contrary to the prevailing dogma, we find islet morphology and endocrine differentiation to be directly related. As endocrine progenitors differentiate, they migrate in cohesion and form bud-like islet precursors, or "peninsulas" (literally "almost islands"). α cells, the first to develop, constitute the peninsular outer layer, and β cells form later, beneath them. This spatiotemporal collinearity leads to the typical core-mantle architecture of the mature, spherical islet. Finally, we induce peninsula-like structures in differentiating human embryonic stem cells, laying the ground for the generation of entire islets in vitro.

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