Literature DB >> 8500322

Analysis of corneal aldehyde dehydrogenase patterns in pathologic corneas.

T D Gondhowiardjo1, N J van Haeringen, H J Völker-Dieben, H W Beekhuis, J H Kok, G van Rij, L Pels, A Kijlstra.   

Abstract

In this study we investigated the properties of corneal aldehyde dehydrogenase (ALDH) in keratoconus corneas using various electrophoretic techniques combined with immunochemical and zymographic identification. Normal corneas and other pathologic corneal buttons obtained during keratoplastic surgery were used as a control. A significant (p < 0.001) lower enzymatic activity was found in keratoconus epithelial extracts (3.1 +/- 2.1 IU/mg protein) compared with normal controls (5.5 +/- 2.6 IU/mg protein), whereas no significant differences were observed in the stromal and endothelial extracts. No significant differences were observed for the corneal ALDH thermolability behavior, nor did any marked changes occur in the position of the 54- and 88-kDa species when comparing the pathologic corneas and normal controls. On the other hand, isoelectric focusing analysis showed a different pattern for the pathologic corneas as compared with controls. Moreover, native-polyacrylamide gel electrophoresis analysis showed that normal corneas exhibit three bands, whereas keratoconus and other pathologic corneas only show two bands. The shift from the three-band pattern to the two-band pattern could be reproduced in vitro using reducing agents, such as glutathione.

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Year:  1993        PMID: 8500322     DOI: 10.1097/00003226-199303000-00010

Source DB:  PubMed          Journal:  Cornea        ISSN: 0277-3740            Impact factor:   2.651


  23 in total

Review 1.  Ultraviolet radiation: cellular antioxidant response and the role of ocular aldehyde dehydrogenase enzymes.

Authors:  Satori A Marchitti; Ying Chen; David C Thompson; Vasilis Vasiliou
Journal:  Eye Contact Lens       Date:  2011-07       Impact factor: 2.018

2.  Corneal aldehyde dehydrogenase and glutathione S-transferase activity after excimer laser keratectomy in guinea pigs.

Authors:  K Bilgihan; A Bilgihan; B Hasanreisoğlu; N Turkozkan
Journal:  Br J Ophthalmol       Date:  1998-03       Impact factor: 4.638

3.  Tear metabolite changes in keratoconus.

Authors:  D Karamichos; J D Zieske; H Sejersen; A Sarker-Nag; John M Asara; J Hjortdal
Journal:  Exp Eye Res       Date:  2015-01-09       Impact factor: 3.467

Review 4.  Ocular aldehyde dehydrogenases: protection against ultraviolet damage and maintenance of transparency for vision.

Authors:  Ying Chen; David C Thompson; Vindhya Koppaka; James V Jester; Vasilis Vasiliou
Journal:  Prog Retin Eye Res       Date:  2012-10-23       Impact factor: 21.198

Review 5.  Antioxidant defenses in the ocular surface.

Authors:  Ying Chen; Gaurav Mehta; Vasilis Vasiliou
Journal:  Ocul Surf       Date:  2009-10       Impact factor: 5.033

6.  Preferential transcription of rabbit Aldh1a1 in the cornea: implication of hypoxia-related pathways.

Authors:  R B Hough; J Piatigorsky
Journal:  Mol Cell Biol       Date:  2004-02       Impact factor: 4.272

7.  Corneal aldehyde dehydrogenases: multiple functions and novel nuclear localization.

Authors:  Dimitrios Stagos; Ying Chen; Miriam Cantore; James V Jester; Vasilis Vasiliou
Journal:  Brain Res Bull       Date:  2009-08-29       Impact factor: 4.077

8.  Nonrandom Distribution of miRNAs Genes and Single Nucleotide Variants in Keratoconus Loci.

Authors:  Dorota M Nowak; Marzena Gajecka
Journal:  PLoS One       Date:  2015-07-15       Impact factor: 3.240

Review 9.  The genetic and environmental factors for keratoconus.

Authors:  Ariela Gordon-Shaag; Michel Millodot; Einat Shneor; Yutao Liu
Journal:  Biomed Res Int       Date:  2015-05-17       Impact factor: 3.411

10.  Marked reduction of alcohol dehydrogenase in keratoconus corneal fibroblasts.

Authors:  V V Mootha; J M Kanoff; J Shankardas; S Dimitrijevich
Journal:  Mol Vis       Date:  2009-04-10       Impact factor: 2.367

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