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Complement Factor H Loss in RPE Cells Causes Retinal Degeneration in a Human RPE-Porcine Retinal Explant Co-Culture Model

Age-related Macular degeneration (AMD) is a degenerative disease of the macula affecting the elderly population. Treatment options are limited, partly due to the lack of understanding of AMD pathology and the lack of suitable research models that replicate the complexity of the human macula and the...

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Autores principales: Armento, Angela, Murali, Aparna, Marzi, Julia, Almansa-Garcia, Ana C, Arango-Gonzalez, Blanca, Kilger, Ellen, Clark, Simon J, Schenke-Layland, Katja, Ramlogan-Steel, Charmaine A, Steel, Jason C, Ueffing, Marius
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8615889/
https://www.ncbi.nlm.nih.gov/pubmed/34827622
http://dx.doi.org/10.3390/biom11111621
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author Armento, Angela
Murali, Aparna
Marzi, Julia
Almansa-Garcia, Ana C
Arango-Gonzalez, Blanca
Kilger, Ellen
Clark, Simon J
Schenke-Layland, Katja
Ramlogan-Steel, Charmaine A
Steel, Jason C
Ueffing, Marius
author_facet Armento, Angela
Murali, Aparna
Marzi, Julia
Almansa-Garcia, Ana C
Arango-Gonzalez, Blanca
Kilger, Ellen
Clark, Simon J
Schenke-Layland, Katja
Ramlogan-Steel, Charmaine A
Steel, Jason C
Ueffing, Marius
author_sort Armento, Angela
collection PubMed
description Age-related Macular degeneration (AMD) is a degenerative disease of the macula affecting the elderly population. Treatment options are limited, partly due to the lack of understanding of AMD pathology and the lack of suitable research models that replicate the complexity of the human macula and the intricate interplay of the genetic, aging and lifestyle risk factors contributing to AMD. One of the main genetic risks associated with AMD is located on the Complement Factor H (CFH) gene, leading to an amino acid substitution in the Factor H (FH) protein (Y402H). However, the mechanism of how this FH variant promotes the onset of AMD remains unclear. Previously, we have shown that FH deprivation in RPE cells, via CFH silencing, leads to increased inflammation, metabolic impairment and vulnerability toward oxidative stress. In this study, we established a novel co-culture model comprising CFH silenced RPE cells and porcine retinal explants derived from the visual streak of porcine eyes, which closely resemble the human macula. We show that retinae exposed to FH-deprived RPE cells show signs of retinal degeneration, with rod cells being the first cells to undergo degeneration. Moreover, via Raman analyses, we observed changes involving the mitochondria and lipid composition of the co-cultured retinae upon FH loss. Interestingly, the detrimental effects of FH loss in RPE cells on the neuroretina were independent of glial cell activation and external complement sources. Moreover, we show that the co-culture model is also suitable for human retinal explants, and we observed a similar trend when RPE cells deprived of FH were co-cultured with human retinal explants from a single donor eye. Our findings highlight the importance of RPE-derived FH for retinal homeostasis and provide a valuable model for AMD research.
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spelling pubmed-86158892021-11-26 Complement Factor H Loss in RPE Cells Causes Retinal Degeneration in a Human RPE-Porcine Retinal Explant Co-Culture Model Armento, Angela Murali, Aparna Marzi, Julia Almansa-Garcia, Ana C Arango-Gonzalez, Blanca Kilger, Ellen Clark, Simon J Schenke-Layland, Katja Ramlogan-Steel, Charmaine A Steel, Jason C Ueffing, Marius Biomolecules Article Age-related Macular degeneration (AMD) is a degenerative disease of the macula affecting the elderly population. Treatment options are limited, partly due to the lack of understanding of AMD pathology and the lack of suitable research models that replicate the complexity of the human macula and the intricate interplay of the genetic, aging and lifestyle risk factors contributing to AMD. One of the main genetic risks associated with AMD is located on the Complement Factor H (CFH) gene, leading to an amino acid substitution in the Factor H (FH) protein (Y402H). However, the mechanism of how this FH variant promotes the onset of AMD remains unclear. Previously, we have shown that FH deprivation in RPE cells, via CFH silencing, leads to increased inflammation, metabolic impairment and vulnerability toward oxidative stress. In this study, we established a novel co-culture model comprising CFH silenced RPE cells and porcine retinal explants derived from the visual streak of porcine eyes, which closely resemble the human macula. We show that retinae exposed to FH-deprived RPE cells show signs of retinal degeneration, with rod cells being the first cells to undergo degeneration. Moreover, via Raman analyses, we observed changes involving the mitochondria and lipid composition of the co-cultured retinae upon FH loss. Interestingly, the detrimental effects of FH loss in RPE cells on the neuroretina were independent of glial cell activation and external complement sources. Moreover, we show that the co-culture model is also suitable for human retinal explants, and we observed a similar trend when RPE cells deprived of FH were co-cultured with human retinal explants from a single donor eye. Our findings highlight the importance of RPE-derived FH for retinal homeostasis and provide a valuable model for AMD research. MDPI 2021-11-03 /pmc/articles/PMC8615889/ /pubmed/34827622 http://dx.doi.org/10.3390/biom11111621 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Armento, Angela
Murali, Aparna
Marzi, Julia
Almansa-Garcia, Ana C
Arango-Gonzalez, Blanca
Kilger, Ellen
Clark, Simon J
Schenke-Layland, Katja
Ramlogan-Steel, Charmaine A
Steel, Jason C
Ueffing, Marius
Complement Factor H Loss in RPE Cells Causes Retinal Degeneration in a Human RPE-Porcine Retinal Explant Co-Culture Model
title Complement Factor H Loss in RPE Cells Causes Retinal Degeneration in a Human RPE-Porcine Retinal Explant Co-Culture Model
title_full Complement Factor H Loss in RPE Cells Causes Retinal Degeneration in a Human RPE-Porcine Retinal Explant Co-Culture Model
title_fullStr Complement Factor H Loss in RPE Cells Causes Retinal Degeneration in a Human RPE-Porcine Retinal Explant Co-Culture Model
title_full_unstemmed Complement Factor H Loss in RPE Cells Causes Retinal Degeneration in a Human RPE-Porcine Retinal Explant Co-Culture Model
title_short Complement Factor H Loss in RPE Cells Causes Retinal Degeneration in a Human RPE-Porcine Retinal Explant Co-Culture Model
title_sort complement factor h loss in rpe cells causes retinal degeneration in a human rpe-porcine retinal explant co-culture model
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8615889/
https://www.ncbi.nlm.nih.gov/pubmed/34827622
http://dx.doi.org/10.3390/biom11111621
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