4.6 Article

Intrahepatic Bile Duct Regeneration in Mice Does Not Require Hnf6 or Notch Signaling through Rbpj

Journal

AMERICAN JOURNAL OF PATHOLOGY
Volume 184, Issue 5, Pages 1479-1488

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.ajpath.2014.01.030

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Funding

  1. NIH [T32CA106183, R01DK078640, P30CA068485, P30DK020593, P30DK058404, P30DK078392]
  2. Howard Hughes Medical Institute through the HHMI/Vanderbilt University Certificate Program in Molecular Medicine [GRD0T56006779]

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The potential for intrahepatic bile duct (IHBD) regeneration in patients with bile duct insufficiency diseases is poorly understood. Notch signaling and Hnf6 have each been shown to be important for the morphogenesis of IH B Ds in mice. One congenital pediatric liver disease characterized by reduced numbers of IHBDs, Alagille syndrome, is associated with mutations in Notch signaling components. Therefore, we investigated whether Liver cell plasticity could contribute to IHBD regeneration in mice with disruptions in Notch signaling and Hnf6. We studied a mouse model of bile duct insufficiency with liver epithelial cell specific deficiencies in Hnf6 and Rbpj, a mediator of canonical Notch signaling. Albumin-Cre Hnf6(flox/flox) Rbp(flox/flox) mice initially developed no peripheral bile ducts. The evolving postnatal liver phenotype was analyzed using IHBD resin casting, immunostaining, and serum chemistry. With age, Albumin-Cre Hnf6(flox/flox) Rbp(flox/flox) mice mounted a ductular reaction extending through the hepatic tissue and then regenerated communicating peripheral IHBD branches. Rbpj and Hnf6 were determined to remain absent from biliary epithelial cells constituting the ductular reaction and the regenerated peripheral IH B Ds. We report the expression of Sox9, a marker of biliary epithelial cells, in cells expressing hepatocyte markers. Tissue analysis indicates that reactive ductules did not arise directly from preexisting hilar IHBDs. We conclude that liver cell plasticity is competent for regeneration of IHBDs independent of Notch signaling via Rbpj and Hnf6.

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