| Literature DB >> 28373051 |
Melisa Lopez-Anton1, András Rudolf2, Duncan M Baird3, Laureline Roger4, Rhiannon E Jones5, Janusz Witowski6, Donald J Fraser7, Timothy Bowen8.
Abstract
Mesothelial cell (MC) senescence contributes to malignancy and tissue fibrosis. The role of telomere erosion in MC senescence remains controversial, with evidence for both telomere-dependent and telomere-independent mechanisms reported. Single telomere length analysis revealed considerable telomere length heterogeneity in freshly isolated human peritoneal MCs, reflecting a heterogeneous proliferative history and providing high-resolution evidence for telomere-dependent senescence. By contrast the attenuated replicative lifespan, lack of telomere erosion and induction of p16 expression in in vitro-aged cells was consistent with stress-induced senescence. Given the potential pathophysiological impact of senescence in mesothelial tissues, high-resolution MC telomere length analysis may provide clinically useful information. CrownEntities:
Keywords: Mesothelium; Premature senescence; Single telomere length analysis
Mesh:
Year: 2017 PMID: 28373051 DOI: 10.1016/j.mad.2017.03.010
Source DB: PubMed Journal: Mech Ageing Dev ISSN: 0047-6374 Impact factor: 5.432