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Collagen Remodeling Plays a Pivotal Role in Endothelial Corneal Dystrophies

PURPOSE: To elucidate the collagen structure in the Descemet membrane (DM) of the human cornea and to characterize its rearrangement in patients with endothelial corneal dystrophies. METHODS: Corneas from nine human donors and dystrophic DMs removed from 16 affected eyes of 13 patients by endothelia...

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Detalles Bibliográficos
Autores principales: Walckling, Marcus, Waterstradt, Rica, Baltrusch, Simone
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Association for Research in Vision and Ophthalmology 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7718819/
https://www.ncbi.nlm.nih.gov/pubmed/33259606
http://dx.doi.org/10.1167/iovs.61.14.1
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author Walckling, Marcus
Waterstradt, Rica
Baltrusch, Simone
author_facet Walckling, Marcus
Waterstradt, Rica
Baltrusch, Simone
author_sort Walckling, Marcus
collection PubMed
description PURPOSE: To elucidate the collagen structure in the Descemet membrane (DM) of the human cornea and to characterize its rearrangement in patients with endothelial corneal dystrophies. METHODS: Corneas from nine human donors and dystrophic DMs removed from 16 affected eyes of 13 patients by endothelial keratoplasty (DMEK) were investigated using a correlative RT-qPCR and label-free two-channel multiphoton microscopy (MPM) setup. Although collagen formation was visualized by second harmonic generation, the cellular structure was determined by autofluorescence. RESULTS: The DM of the human donor cornea was characterized by a consistent pattern of fine hexagonal collagen structures that form a supportive scaffold for the endothelial cells. Accordingly, network-forming collagens (8A1 and 8A2) but less fibrillar collagens (only 1A2) were expressed. DMEK resulted in significant (P < 0.0001) improvement of best-corrected visual acuity. In the removed dystrophic DMs, MPM analyses revealed collagen rearrangement in addition to loss of endothelial cells and the development of guttae. MPM analyses of the whole patient's DM demonstrated this collagen remodeling in its entirety and facilitated correlation to Scheimpflug corneal tomography. In most DMs a unique honeycomb collagen network was identified, with distinct bundles surrounding the guttae and correlating with expression of fibrillar collagens (1A1). Conversely, some DMs showed either reduced collagen on MPM and RT-qPCR analysis or diffuse thickening and storage of extracellular matrix. CONCLUSIONS: The collagen structure of the DM and its adaptive remodeling in endothelial corneal dystrophies has been characterized for the first time here and will facilitate individual therapeutic approaches.
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spelling pubmed-77188192020-12-17 Collagen Remodeling Plays a Pivotal Role in Endothelial Corneal Dystrophies Walckling, Marcus Waterstradt, Rica Baltrusch, Simone Invest Ophthalmol Vis Sci Cornea PURPOSE: To elucidate the collagen structure in the Descemet membrane (DM) of the human cornea and to characterize its rearrangement in patients with endothelial corneal dystrophies. METHODS: Corneas from nine human donors and dystrophic DMs removed from 16 affected eyes of 13 patients by endothelial keratoplasty (DMEK) were investigated using a correlative RT-qPCR and label-free two-channel multiphoton microscopy (MPM) setup. Although collagen formation was visualized by second harmonic generation, the cellular structure was determined by autofluorescence. RESULTS: The DM of the human donor cornea was characterized by a consistent pattern of fine hexagonal collagen structures that form a supportive scaffold for the endothelial cells. Accordingly, network-forming collagens (8A1 and 8A2) but less fibrillar collagens (only 1A2) were expressed. DMEK resulted in significant (P < 0.0001) improvement of best-corrected visual acuity. In the removed dystrophic DMs, MPM analyses revealed collagen rearrangement in addition to loss of endothelial cells and the development of guttae. MPM analyses of the whole patient's DM demonstrated this collagen remodeling in its entirety and facilitated correlation to Scheimpflug corneal tomography. In most DMs a unique honeycomb collagen network was identified, with distinct bundles surrounding the guttae and correlating with expression of fibrillar collagens (1A1). Conversely, some DMs showed either reduced collagen on MPM and RT-qPCR analysis or diffuse thickening and storage of extracellular matrix. CONCLUSIONS: The collagen structure of the DM and its adaptive remodeling in endothelial corneal dystrophies has been characterized for the first time here and will facilitate individual therapeutic approaches. The Association for Research in Vision and Ophthalmology 2020-12-01 /pmc/articles/PMC7718819/ /pubmed/33259606 http://dx.doi.org/10.1167/iovs.61.14.1 Text en Copyright 2020 The Authors http://creativecommons.org/licenses/by-nc-nd/4.0/ This work is licensed under a Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.
spellingShingle Cornea
Walckling, Marcus
Waterstradt, Rica
Baltrusch, Simone
Collagen Remodeling Plays a Pivotal Role in Endothelial Corneal Dystrophies
title Collagen Remodeling Plays a Pivotal Role in Endothelial Corneal Dystrophies
title_full Collagen Remodeling Plays a Pivotal Role in Endothelial Corneal Dystrophies
title_fullStr Collagen Remodeling Plays a Pivotal Role in Endothelial Corneal Dystrophies
title_full_unstemmed Collagen Remodeling Plays a Pivotal Role in Endothelial Corneal Dystrophies
title_short Collagen Remodeling Plays a Pivotal Role in Endothelial Corneal Dystrophies
title_sort collagen remodeling plays a pivotal role in endothelial corneal dystrophies
topic Cornea
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7718819/
https://www.ncbi.nlm.nih.gov/pubmed/33259606
http://dx.doi.org/10.1167/iovs.61.14.1
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