Cargando…

Characterization of cellular senescence mechanisms in human corneal endothelial cells

The human cornea is a tri-laminar structure composed of several cell types with substantial mitotic potential. Age-related changes in the cornea are associated with declining visual acuity and the onset of overt age-related corneal diseases. Corneal transplantation is commonly used to restore vision...

Descripción completa

Detalles Bibliográficos
Autores principales: Sheerin, Angela N, Smith, S Kaye, Jennert-Burston, Katrin, Brook, Amy J, Allen, Marcus C, Ibrahim, Badr, Jones, Dawn, Wallis, Corrin, Engelmann, Katrin, Rhys-Williams, William, Faragher, Richard G A, Kipling, David
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3440103/
https://www.ncbi.nlm.nih.gov/pubmed/22128747
http://dx.doi.org/10.1111/j.1474-9726.2011.00776.x
_version_ 1782243118804893696
author Sheerin, Angela N
Smith, S Kaye
Jennert-Burston, Katrin
Brook, Amy J
Allen, Marcus C
Ibrahim, Badr
Jones, Dawn
Wallis, Corrin
Engelmann, Katrin
Rhys-Williams, William
Faragher, Richard G A
Kipling, David
author_facet Sheerin, Angela N
Smith, S Kaye
Jennert-Burston, Katrin
Brook, Amy J
Allen, Marcus C
Ibrahim, Badr
Jones, Dawn
Wallis, Corrin
Engelmann, Katrin
Rhys-Williams, William
Faragher, Richard G A
Kipling, David
author_sort Sheerin, Angela N
collection PubMed
description The human cornea is a tri-laminar structure composed of several cell types with substantial mitotic potential. Age-related changes in the cornea are associated with declining visual acuity and the onset of overt age-related corneal diseases. Corneal transplantation is commonly used to restore vision in patients with damaged or diseased corneas. However, the supply of donor tissue is limited, and thus there is considerable interest in the development of tissue-engineered alternatives. A major obstacle to these approaches is the short replicative lifespan of primary human corneal endothelial cells (HCEC). Accordingly, a comprehensive investigation of the signalling pathways and mechanisms underpinning proliferative lifespan and senescence in HCEC was undertaken. The effects of exogenous human telomerase reverse transcriptase expression, p53 knockdown, disruption of the pRb pathway by over-expression of CDK4 and reduced oxygen concentration on the lifespan of primary HCEC were evaluated. We provide proof-of-principle that forced expression of telomerase, when combined with either p53 knockdown or CDK4 over-expression, is sufficient to produce immortalized HCEC lines. The resultant cell lines express an HCEC-specific transcriptional fingerprint, and retain expression of the corneal endothelial temperature-sensitive potassium channel, suggesting that significant dedifferentiation does not occur as a result of these modes of immortalization. Exploiting these insights into proliferative lifespan barriers in HCEC will underpin the development of novel strategies for cell-based therapies in the human cornea.
format Online
Article
Text
id pubmed-3440103
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher Blackwell Publishing Ltd
record_format MEDLINE/PubMed
spelling pubmed-34401032012-09-13 Characterization of cellular senescence mechanisms in human corneal endothelial cells Sheerin, Angela N Smith, S Kaye Jennert-Burston, Katrin Brook, Amy J Allen, Marcus C Ibrahim, Badr Jones, Dawn Wallis, Corrin Engelmann, Katrin Rhys-Williams, William Faragher, Richard G A Kipling, David Aging Cell Original Articles The human cornea is a tri-laminar structure composed of several cell types with substantial mitotic potential. Age-related changes in the cornea are associated with declining visual acuity and the onset of overt age-related corneal diseases. Corneal transplantation is commonly used to restore vision in patients with damaged or diseased corneas. However, the supply of donor tissue is limited, and thus there is considerable interest in the development of tissue-engineered alternatives. A major obstacle to these approaches is the short replicative lifespan of primary human corneal endothelial cells (HCEC). Accordingly, a comprehensive investigation of the signalling pathways and mechanisms underpinning proliferative lifespan and senescence in HCEC was undertaken. The effects of exogenous human telomerase reverse transcriptase expression, p53 knockdown, disruption of the pRb pathway by over-expression of CDK4 and reduced oxygen concentration on the lifespan of primary HCEC were evaluated. We provide proof-of-principle that forced expression of telomerase, when combined with either p53 knockdown or CDK4 over-expression, is sufficient to produce immortalized HCEC lines. The resultant cell lines express an HCEC-specific transcriptional fingerprint, and retain expression of the corneal endothelial temperature-sensitive potassium channel, suggesting that significant dedifferentiation does not occur as a result of these modes of immortalization. Exploiting these insights into proliferative lifespan barriers in HCEC will underpin the development of novel strategies for cell-based therapies in the human cornea. Blackwell Publishing Ltd 2012-04 /pmc/articles/PMC3440103/ /pubmed/22128747 http://dx.doi.org/10.1111/j.1474-9726.2011.00776.x Text en © 2011 The Authors. Aging Cell © 2011 Blackwell Publishing Ltd/Anatomical Society of Great Britain and Ireland http://creativecommons.org/licenses/by/2.5/ Re-use of this article is permitted in accordance with the Creative Commons Deed, Attribution 2.5, which does not permit commercial exploitation.
spellingShingle Original Articles
Sheerin, Angela N
Smith, S Kaye
Jennert-Burston, Katrin
Brook, Amy J
Allen, Marcus C
Ibrahim, Badr
Jones, Dawn
Wallis, Corrin
Engelmann, Katrin
Rhys-Williams, William
Faragher, Richard G A
Kipling, David
Characterization of cellular senescence mechanisms in human corneal endothelial cells
title Characterization of cellular senescence mechanisms in human corneal endothelial cells
title_full Characterization of cellular senescence mechanisms in human corneal endothelial cells
title_fullStr Characterization of cellular senescence mechanisms in human corneal endothelial cells
title_full_unstemmed Characterization of cellular senescence mechanisms in human corneal endothelial cells
title_short Characterization of cellular senescence mechanisms in human corneal endothelial cells
title_sort characterization of cellular senescence mechanisms in human corneal endothelial cells
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3440103/
https://www.ncbi.nlm.nih.gov/pubmed/22128747
http://dx.doi.org/10.1111/j.1474-9726.2011.00776.x
work_keys_str_mv AT sheerinangelan characterizationofcellularsenescencemechanismsinhumancornealendothelialcells
AT smithskaye characterizationofcellularsenescencemechanismsinhumancornealendothelialcells
AT jennertburstonkatrin characterizationofcellularsenescencemechanismsinhumancornealendothelialcells
AT brookamyj characterizationofcellularsenescencemechanismsinhumancornealendothelialcells
AT allenmarcusc characterizationofcellularsenescencemechanismsinhumancornealendothelialcells
AT ibrahimbadr characterizationofcellularsenescencemechanismsinhumancornealendothelialcells
AT jonesdawn characterizationofcellularsenescencemechanismsinhumancornealendothelialcells
AT walliscorrin characterizationofcellularsenescencemechanismsinhumancornealendothelialcells
AT engelmannkatrin characterizationofcellularsenescencemechanismsinhumancornealendothelialcells
AT rhyswilliamswilliam characterizationofcellularsenescencemechanismsinhumancornealendothelialcells
AT faragherrichardga characterizationofcellularsenescencemechanismsinhumancornealendothelialcells
AT kiplingdavid characterizationofcellularsenescencemechanismsinhumancornealendothelialcells