Literature DB >> 19087878

A transcriptomic analysis of the EK1.Br strain of human fibroblastoid keratocytes: the effects of growth, quiescence and senescence.

David Kipling1, Dawn L Jones, S Kaye Smith, Peter J Giles, Katrin Jennert-Burston, Badr Ibrahim, Angela N P Sheerin, Amy J C Evans, William Rhys-Willams, Richard G A Faragher.   

Abstract

There is a growing need within ocular research for well-defined cellular models of normal corneal biology. To meet this need we created and partially characterised a standard strain of human fibroblastoid keratocytes (EK1.Br) and demonstrated that phenotypic changes occur within these cells with replicative senescence in vitro. Using Affymetrix HG-U133A oligonucleotide arrays, this paper reports both a comprehensive analysis of the transcriptome of EK1.Br in the growing, quiescent and senescent states and a comparison of that transcriptome with those of primary corneal endothelium, lung fibroblasts and dermal fibroblasts grown under identical conditions. Data mining shows (i) that EK1.Br retain the characteristic transcriptional fingerprint of keratocytes in vitro (ii) that this phenotype can be distinguished from those of other 'fibroblasts' by groups of highly differentially expressed genes and (iii) that senescence induces a distinct dedifferentiation phenomenon in EK1.Br. These findings are contextualised into the broader literature on replicative senescence and are supported with a web-accessible and fully searchable public-access database (www.madras.cf.ac.uk/cornea).

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Year:  2008        PMID: 19087878     DOI: 10.1016/j.exer.2008.11.030

Source DB:  PubMed          Journal:  Exp Eye Res        ISSN: 0014-4835            Impact factor:   3.467


  14 in total

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2.  Resveratrol, but not dihydroresveratrol, induces premature senescence in primary human fibroblasts.

Authors:  Richard G A Faragher; Dominic G A Burton; Patricia Majecha; Noel S Y Fong; Terence Davis; Angela Sheerin; Elizabeth L Ostler
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Review 3.  Cellular senescence: from growth arrest to immunogenic conversion.

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Review 4.  Cellular senescence and the senescent secretory phenotype: therapeutic opportunities.

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5.  Mechanisms of corneal tissue cross-linking in response to treatment with topical riboflavin and long-wavelength ultraviolet radiation (UVA).

Authors:  A Scott McCall; Stefan Kraft; Henry F Edelhauser; George W Kidder; Richard R Lundquist; Helen E Bradshaw; Zinaida Dedeic; Megan J C Dionne; Ethan M Clement; Gary W Conrad
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Review 6.  Better immunity in later life: a position paper.

Authors:  Richard Faragher; Daniela Frasca; Edmond Remarque; Graham Pawelec
Journal:  Age (Dordr)       Date:  2014-02-16

7.  Characterization of cellular senescence mechanisms in human corneal endothelial cells.

Authors:  Angela N Sheerin; S Kaye Smith; Katrin Jennert-Burston; Amy J Brook; Marcus C Allen; Badr Ibrahim; Dawn Jones; Corrin Wallis; Katrin Engelmann; William Rhys-Williams; Richard G A Faragher; David Kipling
Journal:  Aging Cell       Date:  2011-12-29       Impact factor: 9.304

8.  Hormetic effect of rotenone in primary human fibroblasts.

Authors:  Shiva Marthandan; Steffen Priebe; Marco Groth; Reinhard Guthke; Matthias Platzer; Peter Hemmerich; Stephan Diekmann
Journal:  Immun Ageing       Date:  2015-09-16       Impact factor: 6.400

9.  A comparison of oncogene-induced senescence and replicative senescence: implications for tumor suppression and aging.

Authors:  David M Nelson; Tony McBryan; Jessie C Jeyapalan; John M Sedivy; Peter D Adams
Journal:  Age (Dordr)       Date:  2014-03-20

10.  Should we treat aging as a disease? The consequences and dangers of miscategorisation.

Authors:  Richard G A Faragher
Journal:  Front Genet       Date:  2015-07-14       Impact factor: 4.599

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