Literature DB >> 3665571

Evidence that fibroblast growth factor promotes lens fibre differentiation.

C G Chamberlain1, J W McAvoy.   

Abstract

Lens epithelial cells from newborn rats undergo changes characteristic of fibre differentiation when cultured with rat neural retina or with a soluble mitogenic factor present in calf retina-conditioned medium. Mitogens have been isolated from retina in other laboratories, but have not previously been shown to promote fibre differentiation in mammalian lens. We prepared eye-derived growth factors I and II and alpha- and beta-retina-derived growth factors from bovine retinas. These factors all promoted lens fibre differentiation in our culture system, as assessed by morphological changes and the appearance of fibre cell-specific crystallins. There is now strong evidence that these retina-derived factors are identical to the acidic and basic forms of fibroblast growth factor (FGF), which is present in a variety of tissues. We found that acidic and basic FGF from rat brain also promoted lens fibre differentiation, suggesting that FGF is the factor from the retina responsible for inducing lens fibre differentiation.

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Year:  1987        PMID: 3665571     DOI: 10.3109/02713688709034890

Source DB:  PubMed          Journal:  Curr Eye Res        ISSN: 0271-3683            Impact factor:   2.424


  28 in total

Review 1.  Planar cell polarity in the mammalian eye lens.

Authors:  Yuki Sugiyama; Frank J Lovicu; John W McAvoy
Journal:  Organogenesis       Date:  2011-07-01       Impact factor: 2.500

2.  DNA methylation as a regulatory mechanism in rat gamma-crystallin gene expression.

Authors:  R Peek; R W Niessen; J G Schoenmakers; N H Lubsen
Journal:  Nucleic Acids Res       Date:  1991-01-11       Impact factor: 16.971

3.  Lens thickness and insulin dependent diabetes mellitus: a population based twin study.

Authors:  N Løgstrup; A K Sjølie; K O Kyvik; A Green
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4.  Sequence and functional conservation of the intergenic region between the head-to-head genes encoding the small heat shock proteins alphaB-crystallin and HspB2 in the mammalian lineage.

Authors:  Linda Doerwald; Teun van Rheede; Ron P Dirks; Ole Madsen; Remco Rexwinkel; Siebe T van Genesen; Gerard J Martens; Wilfried W de Jong; Nicolette H Lubsen
Journal:  J Mol Evol       Date:  2004-11       Impact factor: 2.395

5.  Identification of global gene expression differences between human lens epithelial and cortical fiber cells reveals specific genes and their associated pathways important for specialized lens cell functions.

Authors:  John R Hawse; Candida DeAmicis-Tress; Tracy L Cowell; Marc Kantorow
Journal:  Mol Vis       Date:  2005-04-18       Impact factor: 2.367

Review 6.  An essential role for FGF receptor signaling in lens development.

Authors:  Michael L Robinson
Journal:  Semin Cell Dev Biol       Date:  2006-10-27       Impact factor: 7.727

Review 7.  Understanding the role of growth factors in embryonic development: insights from the lens.

Authors:  F J Lovicu; J W McAvoy; R U de Iongh
Journal:  Philos Trans R Soc Lond B Biol Sci       Date:  2011-04-27       Impact factor: 6.237

Review 8.  The lens in focus: a comparison of lens development in Drosophila and vertebrates.

Authors:  Mark Charlton-Perkins; Nadean L Brown; Tiffany A Cook
Journal:  Mol Genet Genomics       Date:  2011-08-30       Impact factor: 3.291

9.  Control of lens development by Lhx2-regulated neuroretinal FGFs.

Authors:  Thuzar Thein; Jimmy de Melo; Cristina Zibetti; Brian S Clark; Felicia Juarez; Seth Blackshaw
Journal:  Development       Date:  2016-09-15       Impact factor: 6.868

Review 10.  Development and use of the lens epithelial explant system to study lens differentiation and cataractogenesis.

Authors:  Judith A West-Mays; Guiseppe Pino; Frank J Lovicu
Journal:  Prog Retin Eye Res       Date:  2009-12-17       Impact factor: 21.198

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