Literature DB >> 27838399

Pancreatic β-cell regeneration: Facultative or dedicated progenitors?

Solomon Afelik1, Meritxell Rovira2.   

Abstract

The adult pancreas is only capable of limited regeneration. Unlike highly regenerative tissues such as the skin, intestinal crypts and hematopoietic system, no dedicated adult stem cells or stem cell niche have so far been identified within the adult pancreas. New β cells have been shown to form in the adult pancreas, in response to high physiological demand or experimental β-cell ablation, mostly by replication of existing β cells. The possibility that new β cells are formed from other sources is currently a point of major controversy. Under particular injury conditions, fully differentiated pancreatic duct and acinar cells have been shown to dedifferentiate into a progenitor-like state, however the extent, to which ductal, acinar or other endocrine cells contribute to restoring pancreatic β-cell mass remains to be resolved. In this review we focus on regenerative events in the pancreas with emphasis on the restoration of β-cell mass. We present an overview of regenerative responses noted within the different pancreatic lineages, following injury. We also highlight the intrinsic plasticity of the adult pancreas that allows for inter-conversion of fully differentiated pancreatic lineages through manipulation of few genes or growth factors. Taken together, evidence from a number of studies suggest that differentiated pancreatic lineages could act as facultative progenitor cells, but the extent to which these contribute to β-cell regeneration in vivo is still a matter of contention.
Copyright © 2016. Published by Elsevier B.V.

Entities:  

Keywords:  Diabetes; Facultative progenitors; Pancreas regeneration; Plasticity; Transdifferentiation; β cell

Mesh:

Year:  2016        PMID: 27838399     DOI: 10.1016/j.mce.2016.11.008

Source DB:  PubMed          Journal:  Mol Cell Endocrinol        ISSN: 0303-7207            Impact factor:   4.102


  7 in total

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4.  FGF-2b and h-PL Transform Duct and Non-Endocrine Human Pancreatic Cells into Endocrine Insulin Secreting Cells by Modulating Differentiating Genes.

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Review 6.  Pancreatic β-cell regeneration: advances in understanding the genes and signaling pathways involved.

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7.  Regeneration of the lung alveolus by an evolutionarily conserved epithelial progenitor.

Authors:  William J Zacharias; David B Frank; Jarod A Zepp; Michael P Morley; Farrah A Alkhaleel; Jun Kong; Su Zhou; Edward Cantu; Edward E Morrisey
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  7 in total

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