Paracrine cellular senescence exacerbates biliary injury and impairs regeneration

Senescence has been suggested as causing biliary cholangiopathies but how this is regulated is unclear. Here, the authors generate a mouse model of biliary senescence by deleting Mdm2 in bile ducts and show that inhibiting TGFβ limits senescence-dependent aggravation of cholangiopathies.

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Autores principales: Sofia Ferreira-Gonzalez, Wei-Yu Lu, Alexander Raven, Benjamin Dwyer, Tak Yung Man, Eoghan O’Duibhir, Philip J. Starkey Lewis, Lara Campana, Tim J. Kendall, Thomas G. Bird, Nuria Tarrats, Juan-Carlos Acosta, Luke Boulter, Stuart J. Forbes
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Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/fec37437098140028922b5a6d61c5040
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spelling oai:doaj.org-article:fec37437098140028922b5a6d61c50402021-12-02T17:33:05ZParacrine cellular senescence exacerbates biliary injury and impairs regeneration10.1038/s41467-018-03299-52041-1723https://doaj.org/article/fec37437098140028922b5a6d61c50402018-03-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-03299-5https://doaj.org/toc/2041-1723Senescence has been suggested as causing biliary cholangiopathies but how this is regulated is unclear. Here, the authors generate a mouse model of biliary senescence by deleting Mdm2 in bile ducts and show that inhibiting TGFβ limits senescence-dependent aggravation of cholangiopathies.Sofia Ferreira-GonzalezWei-Yu LuAlexander RavenBenjamin DwyerTak Yung ManEoghan O’DuibhirPhilip J. Starkey LewisLara CampanaTim J. KendallThomas G. BirdNuria TarratsJuan-Carlos AcostaLuke BoulterStuart J. ForbesNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-15 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Sofia Ferreira-Gonzalez
Wei-Yu Lu
Alexander Raven
Benjamin Dwyer
Tak Yung Man
Eoghan O’Duibhir
Philip J. Starkey Lewis
Lara Campana
Tim J. Kendall
Thomas G. Bird
Nuria Tarrats
Juan-Carlos Acosta
Luke Boulter
Stuart J. Forbes
Paracrine cellular senescence exacerbates biliary injury and impairs regeneration
description Senescence has been suggested as causing biliary cholangiopathies but how this is regulated is unclear. Here, the authors generate a mouse model of biliary senescence by deleting Mdm2 in bile ducts and show that inhibiting TGFβ limits senescence-dependent aggravation of cholangiopathies.
format article
author Sofia Ferreira-Gonzalez
Wei-Yu Lu
Alexander Raven
Benjamin Dwyer
Tak Yung Man
Eoghan O’Duibhir
Philip J. Starkey Lewis
Lara Campana
Tim J. Kendall
Thomas G. Bird
Nuria Tarrats
Juan-Carlos Acosta
Luke Boulter
Stuart J. Forbes
author_facet Sofia Ferreira-Gonzalez
Wei-Yu Lu
Alexander Raven
Benjamin Dwyer
Tak Yung Man
Eoghan O’Duibhir
Philip J. Starkey Lewis
Lara Campana
Tim J. Kendall
Thomas G. Bird
Nuria Tarrats
Juan-Carlos Acosta
Luke Boulter
Stuart J. Forbes
author_sort Sofia Ferreira-Gonzalez
title Paracrine cellular senescence exacerbates biliary injury and impairs regeneration
title_short Paracrine cellular senescence exacerbates biliary injury and impairs regeneration
title_full Paracrine cellular senescence exacerbates biliary injury and impairs regeneration
title_fullStr Paracrine cellular senescence exacerbates biliary injury and impairs regeneration
title_full_unstemmed Paracrine cellular senescence exacerbates biliary injury and impairs regeneration
title_sort paracrine cellular senescence exacerbates biliary injury and impairs regeneration
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/fec37437098140028922b5a6d61c5040
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