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Bipotential adult liver progenitors are derived from chronically injured mature hepatocytes.


ABSTRACT: Adult liver progenitor cells are biliary-like epithelial cells that emerge only under injury conditions in the periportal region of the liver. They exhibit phenotypes of both hepatocytes and bile ducts. However, their origin and their significance to injury repair remain unclear. Here, we used a chimeric lineage tracing system to demonstrate that hepatocytes contribute to the progenitor pool. RNA-sequencing, ultrastructural analysis, and in vitro progenitor assays revealed that hepatocyte-derived progenitors were distinct from their biliary-derived counterparts. In vivo lineage tracing and serial transplantation assays showed that hepatocyte-derived proliferative ducts retained a memory of their origin and differentiated back into hepatocytes upon cessation of injury. Similarly, human hepatocytes in chimeric mice also gave rise to biliary progenitors in vivo. We conclude that human and mouse hepatocytes can undergo reversible ductal metaplasia in response to injury, expand as ducts, and subsequently contribute to restoration of the hepatocyte mass.

SUBMITTER: Tarlow BD 

PROVIDER: S-EPMC4254170 | biostudies-literature | 2014 Nov

REPOSITORIES: biostudies-literature

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Bipotential adult liver progenitors are derived from chronically injured mature hepatocytes.

Tarlow Branden D BD   Pelz Carl C   Naugler Willscott E WE   Wakefield Leslie L   Wilson Elizabeth M EM   Finegold Milton J MJ   Grompe Markus M  

Cell stem cell 20141009 5


Adult liver progenitor cells are biliary-like epithelial cells that emerge only under injury conditions in the periportal region of the liver. They exhibit phenotypes of both hepatocytes and bile ducts. However, their origin and their significance to injury repair remain unclear. Here, we used a chimeric lineage tracing system to demonstrate that hepatocytes contribute to the progenitor pool. RNA-sequencing, ultrastructural analysis, and in vitro progenitor assays revealed that hepatocyte-derive  ...[more]

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