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Cholangiocytes act as Facultative Liver Stem Cells during Impaired Hepatocyte Regeneration

Following liver injury, regeneration occurs through self-replication of hepatocytes. In severe liver injury, hepatocyte proliferation is impaired, a feature of human chronic liver disease1,2. It is contested whether other liver cell types can regenerate hepatocytes3–5. Here, we use two independent s...

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Autores principales: Raven, Alexander, Lu, Wei-Yu, Man, Tak Yung, Ferreira-Gonzalez, Sofia, O’Duibhir, Eoghan, Dwyer, Benjamin J, Thomson, John P, Meehan, Richard R, Bogorad, Roman, Koteliansky, Victor, Kotelevtsev, Yuri, ffrench-Constant, Charles, Boulter, Luke, Forbes, Stuart J
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5522613/
https://www.ncbi.nlm.nih.gov/pubmed/28700576
http://dx.doi.org/10.1038/nature23015
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author Raven, Alexander
Lu, Wei-Yu
Man, Tak Yung
Ferreira-Gonzalez, Sofia
O’Duibhir, Eoghan
Dwyer, Benjamin J
Thomson, John P
Meehan, Richard R
Bogorad, Roman
Koteliansky, Victor
Kotelevtsev, Yuri
ffrench-Constant, Charles
Boulter, Luke
Forbes, Stuart J
author_facet Raven, Alexander
Lu, Wei-Yu
Man, Tak Yung
Ferreira-Gonzalez, Sofia
O’Duibhir, Eoghan
Dwyer, Benjamin J
Thomson, John P
Meehan, Richard R
Bogorad, Roman
Koteliansky, Victor
Kotelevtsev, Yuri
ffrench-Constant, Charles
Boulter, Luke
Forbes, Stuart J
author_sort Raven, Alexander
collection PubMed
description Following liver injury, regeneration occurs through self-replication of hepatocytes. In severe liver injury, hepatocyte proliferation is impaired, a feature of human chronic liver disease1,2. It is contested whether other liver cell types can regenerate hepatocytes3–5. Here, we use two independent systems to impair hepatocyte proliferation during liver injury to evaluate the contribution of non-hepatocytes to parenchymal regeneration. Firstly, loss of β1-Integrin in hepatocytes with liver injury triggered a ductular reaction of cholangiocyte origin, and ~25% of hepatocytes being derived from a non-hepatocyte origin. Secondly cholangiocytes were lineage traced with concurrent inhibition of hepatocyte proliferation by β1-Integrin knockdown or p21 over-expression, resulting in the significant emergence of cholangiocyte derived hepatocytes. We describe a model of combined liver injury and inhibition of hepatocyte proliferation that causes physiologically significant levels of regeneration of functional hepatocytes from biliary cells.
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spelling pubmed-55226132018-01-12 Cholangiocytes act as Facultative Liver Stem Cells during Impaired Hepatocyte Regeneration Raven, Alexander Lu, Wei-Yu Man, Tak Yung Ferreira-Gonzalez, Sofia O’Duibhir, Eoghan Dwyer, Benjamin J Thomson, John P Meehan, Richard R Bogorad, Roman Koteliansky, Victor Kotelevtsev, Yuri ffrench-Constant, Charles Boulter, Luke Forbes, Stuart J Nature Article Following liver injury, regeneration occurs through self-replication of hepatocytes. In severe liver injury, hepatocyte proliferation is impaired, a feature of human chronic liver disease1,2. It is contested whether other liver cell types can regenerate hepatocytes3–5. Here, we use two independent systems to impair hepatocyte proliferation during liver injury to evaluate the contribution of non-hepatocytes to parenchymal regeneration. Firstly, loss of β1-Integrin in hepatocytes with liver injury triggered a ductular reaction of cholangiocyte origin, and ~25% of hepatocytes being derived from a non-hepatocyte origin. Secondly cholangiocytes were lineage traced with concurrent inhibition of hepatocyte proliferation by β1-Integrin knockdown or p21 over-expression, resulting in the significant emergence of cholangiocyte derived hepatocytes. We describe a model of combined liver injury and inhibition of hepatocyte proliferation that causes physiologically significant levels of regeneration of functional hepatocytes from biliary cells. 2017-07-12 2017-07-20 /pmc/articles/PMC5522613/ /pubmed/28700576 http://dx.doi.org/10.1038/nature23015 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Raven, Alexander
Lu, Wei-Yu
Man, Tak Yung
Ferreira-Gonzalez, Sofia
O’Duibhir, Eoghan
Dwyer, Benjamin J
Thomson, John P
Meehan, Richard R
Bogorad, Roman
Koteliansky, Victor
Kotelevtsev, Yuri
ffrench-Constant, Charles
Boulter, Luke
Forbes, Stuart J
Cholangiocytes act as Facultative Liver Stem Cells during Impaired Hepatocyte Regeneration
title Cholangiocytes act as Facultative Liver Stem Cells during Impaired Hepatocyte Regeneration
title_full Cholangiocytes act as Facultative Liver Stem Cells during Impaired Hepatocyte Regeneration
title_fullStr Cholangiocytes act as Facultative Liver Stem Cells during Impaired Hepatocyte Regeneration
title_full_unstemmed Cholangiocytes act as Facultative Liver Stem Cells during Impaired Hepatocyte Regeneration
title_short Cholangiocytes act as Facultative Liver Stem Cells during Impaired Hepatocyte Regeneration
title_sort cholangiocytes act as facultative liver stem cells during impaired hepatocyte regeneration
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5522613/
https://www.ncbi.nlm.nih.gov/pubmed/28700576
http://dx.doi.org/10.1038/nature23015
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