Characterization of cellular senescence mechanisms in human corneal endothelial cells

被引:24
作者
Sheerin, Angela N. [2 ]
Smith, S. Kaye [1 ]
Jennert-Burston, Katrin [2 ]
Brook, Amy J. [1 ]
Allen, Marcus C. [2 ]
Ibrahim, Badr [2 ]
Jones, Dawn [2 ]
Wallis, Corrin [2 ]
Engelmann, Katrin [3 ,4 ]
Rhys-Williams, William [5 ]
Faragher, Richard G. A. [2 ]
Kipling, David [1 ]
机构
[1] Cardiff Univ, Sch Med, Cardiff CF14 4XN, S Glam, Wales
[2] Univ Brighton, Sch Pharm & Biomol Sci, Brighton BN2 4GJ, E Sussex, England
[3] Klinikum Chemnitz GmbH, Klin Augenheilkunde, Dept Ophthalmol, D-09116 Dresden, Germany
[4] DFG Ctr Regenerat Therapies Dresden, D-01307 Dresden, Germany
[5] Destiny Pharma Ltd, Sussex Innovat Ctr, Brighton BN1 9SB, E Sussex, England
来源
AGING CELL | 2012年 / 11卷 / 02期
基金
英国生物技术与生命科学研究理事会;
关键词
senescence; telomeres; telomerase; p53; oxidative stress; CDK4; replicative senescence; REPLICATIVE LIFE-SPAN; TELOMERASE ACTIVITY; DNA-DAMAGE; EXPRESSION; BARRIERS; GROWTH; AGE;
D O I
10.1111/j.1474-9726.2011.00776.x
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
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.
引用
收藏
页码:234 / 240
页数:7
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