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The effect of vitamin C deficiency and chronic ultraviolet-B exposure on corneal ultrastructure: a preliminary investigation

PURPOSE: In the visually debilitating condition of climatic droplet keratopathy, corneal transparency is progressively lost. Although the precise cause of the disease and the mechanism by which it progresses are not known, a lifetime exposure to high solar radiation and a vitamin C–deficient diet ma...

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Autores principales: Hayes, Sally, Cafaro, Thamara A., Boguslawska, Patrycja J., Kamma-Lorger, Christina S., Boote, Craig, Harris, Jonathan, Young, Robert, Hiller, Jennifer, Terrill, Nicholas, Meek, Keith M., Serra, Horacio M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Molecular Vision 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3235536/
https://www.ncbi.nlm.nih.gov/pubmed/22171156
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author Hayes, Sally
Cafaro, Thamara A.
Boguslawska, Patrycja J.
Kamma-Lorger, Christina S.
Boote, Craig
Harris, Jonathan
Young, Robert
Hiller, Jennifer
Terrill, Nicholas
Meek, Keith M.
Serra, Horacio M.
author_facet Hayes, Sally
Cafaro, Thamara A.
Boguslawska, Patrycja J.
Kamma-Lorger, Christina S.
Boote, Craig
Harris, Jonathan
Young, Robert
Hiller, Jennifer
Terrill, Nicholas
Meek, Keith M.
Serra, Horacio M.
author_sort Hayes, Sally
collection PubMed
description PURPOSE: In the visually debilitating condition of climatic droplet keratopathy, corneal transparency is progressively lost. Although the precise cause of the disease and the mechanism by which it progresses are not known, a lifetime exposure to high solar radiation and a vitamin C–deficient diet may be involved in its development. This study examines the effect of dietary ascorbate levels and ultraviolet (UV)-B exposure on corneal stromal structure. METHODS: Eight guinea pigs were divided into four treatment groups (A, B, C, and D). For 15 weeks, Groups A and C were fed an ascorbate-rich diet (2 mg/100 g bodyweight/day), while Groups B and D received an ascorbate-deficient diet (0.07 mg/100 g bodyweight/day). For the last 12 weeks of the study, Groups C and D also experienced chronic UVB exposure (0.12 J/cm(2) for 40 min/day). Following euthanasia, the corneas were enucleated and their stromal ultrastructure examined using X-ray scattering and electron microscopy. RESULTS: UVB exposure resulted in an increased corneal thickness (p<0.001), but this was not accompanied by a widespread expansion of the collagen fibrillar array, and in the case of ascorbate-deficient animals, stromal thickening was associated with the compaction of collagen fibrils (p<0.01). Neither UVB exposure nor ascorbic acid deficiency caused any change in the average diameter or D-periodicity of the stromal collagen fibrils. CONCLUSIONS: UVB-induced changes in the corneal ultrastructure were most pronounced in animals fed an ascorbic acid–deficient diet. This suggests that ascorbic acid may play a vital role in protecting the corneal stroma from the harmful effects of UVB.
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spelling pubmed-32355362011-12-14 The effect of vitamin C deficiency and chronic ultraviolet-B exposure on corneal ultrastructure: a preliminary investigation Hayes, Sally Cafaro, Thamara A. Boguslawska, Patrycja J. Kamma-Lorger, Christina S. Boote, Craig Harris, Jonathan Young, Robert Hiller, Jennifer Terrill, Nicholas Meek, Keith M. Serra, Horacio M. Mol Vis Research Article PURPOSE: In the visually debilitating condition of climatic droplet keratopathy, corneal transparency is progressively lost. Although the precise cause of the disease and the mechanism by which it progresses are not known, a lifetime exposure to high solar radiation and a vitamin C–deficient diet may be involved in its development. This study examines the effect of dietary ascorbate levels and ultraviolet (UV)-B exposure on corneal stromal structure. METHODS: Eight guinea pigs were divided into four treatment groups (A, B, C, and D). For 15 weeks, Groups A and C were fed an ascorbate-rich diet (2 mg/100 g bodyweight/day), while Groups B and D received an ascorbate-deficient diet (0.07 mg/100 g bodyweight/day). For the last 12 weeks of the study, Groups C and D also experienced chronic UVB exposure (0.12 J/cm(2) for 40 min/day). Following euthanasia, the corneas were enucleated and their stromal ultrastructure examined using X-ray scattering and electron microscopy. RESULTS: UVB exposure resulted in an increased corneal thickness (p<0.001), but this was not accompanied by a widespread expansion of the collagen fibrillar array, and in the case of ascorbate-deficient animals, stromal thickening was associated with the compaction of collagen fibrils (p<0.01). Neither UVB exposure nor ascorbic acid deficiency caused any change in the average diameter or D-periodicity of the stromal collagen fibrils. CONCLUSIONS: UVB-induced changes in the corneal ultrastructure were most pronounced in animals fed an ascorbic acid–deficient diet. This suggests that ascorbic acid may play a vital role in protecting the corneal stroma from the harmful effects of UVB. Molecular Vision 2011-11-26 /pmc/articles/PMC3235536/ /pubmed/22171156 Text en Copyright © 2011 Molecular Vision. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Hayes, Sally
Cafaro, Thamara A.
Boguslawska, Patrycja J.
Kamma-Lorger, Christina S.
Boote, Craig
Harris, Jonathan
Young, Robert
Hiller, Jennifer
Terrill, Nicholas
Meek, Keith M.
Serra, Horacio M.
The effect of vitamin C deficiency and chronic ultraviolet-B exposure on corneal ultrastructure: a preliminary investigation
title The effect of vitamin C deficiency and chronic ultraviolet-B exposure on corneal ultrastructure: a preliminary investigation
title_full The effect of vitamin C deficiency and chronic ultraviolet-B exposure on corneal ultrastructure: a preliminary investigation
title_fullStr The effect of vitamin C deficiency and chronic ultraviolet-B exposure on corneal ultrastructure: a preliminary investigation
title_full_unstemmed The effect of vitamin C deficiency and chronic ultraviolet-B exposure on corneal ultrastructure: a preliminary investigation
title_short The effect of vitamin C deficiency and chronic ultraviolet-B exposure on corneal ultrastructure: a preliminary investigation
title_sort effect of vitamin c deficiency and chronic ultraviolet-b exposure on corneal ultrastructure: a preliminary investigation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3235536/
https://www.ncbi.nlm.nih.gov/pubmed/22171156
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