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Denuded Descemet’s membrane supports human embryonic stem cell-derived retinal pigment epithelial cell culture

Recent clinical studies suggest that retinal pigment epithelial (RPE) cell replacement therapy may preserve vision in retinal degenerative diseases. Scaffold-based methods are being tested in ongoing clinical trials for delivering pluripotent-derived RPE cells to the back of the eye. The aim of this...

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Autores principales: Daniele, Elena, Bosio, Lorenzo, Hussain, Noor Ahmed, Ferrari, Barbara, Ferrari, Stefano, Barbaro, Vanessa, McArdle, Brian, Rassu, Nicolò, Mura, Marco, Parmeggiani, Francesco, Ponzin, Diego
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2023
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Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9901769/
https://www.ncbi.nlm.nih.gov/pubmed/36745611
http://dx.doi.org/10.1371/journal.pone.0281404
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author Daniele, Elena
Bosio, Lorenzo
Hussain, Noor Ahmed
Ferrari, Barbara
Ferrari, Stefano
Barbaro, Vanessa
McArdle, Brian
Rassu, Nicolò
Mura, Marco
Parmeggiani, Francesco
Ponzin, Diego
author_facet Daniele, Elena
Bosio, Lorenzo
Hussain, Noor Ahmed
Ferrari, Barbara
Ferrari, Stefano
Barbaro, Vanessa
McArdle, Brian
Rassu, Nicolò
Mura, Marco
Parmeggiani, Francesco
Ponzin, Diego
author_sort Daniele, Elena
collection PubMed
description Recent clinical studies suggest that retinal pigment epithelial (RPE) cell replacement therapy may preserve vision in retinal degenerative diseases. Scaffold-based methods are being tested in ongoing clinical trials for delivering pluripotent-derived RPE cells to the back of the eye. The aim of this study was to investigate human embryonic stem cell-derived retinal pigment epithelial (hESC-RPE) cells survival and behaviour on a decellularized Descemet’s Membrane (DM), which may be of clinical relevance in retinal transplantation. DMs were isolated from human donor corneas and treated with thermolysin. The DM surface topology and the efficiency of the denudation method were evaluated by atomic force microscope, scanning electron microscopy and histology. hESC-RPE cells were seeded onto the endothelial-side surface of decellularized DM in order to determine the potential of the membrane to support hESC-RPE cell culture, alongside maintaining their viability. Integrity of the hESC-RPE monolayer was assessed by measuring transepithelial resistance. RPE-specific gene expression and growth factors secretion were assessed to confirm maturation and functionality of the cells over the new substrate. Thermolysin treatment did not affect the integrity of the tissue, thus ensuring a reliable method to standardize the preparation of decellularized DM. 24 hours post-seeding, hESC-RPE cell attachment and initial proliferation rate over the denuded DM were higher than hESC-RPE cells cultured on tissue culture inserts. On the new matrix, hESC-RPE cells succeeded in forming an intact monolayer with mature tight junctions. The resulting cell culture showed characteristic RPE cell morphology and proper protein localization. Gene expression analysis and VEGF secretion demonstrate DM provides supportive scaffolding and inductive properties to enhance hESC-RPE cells maturation. Decellularized DM was shown to be capable of sustaining hESC-RPE cells culture, thus confirming to be potentially a suitable candidate for retinal cell therapy.
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spelling pubmed-99017692023-02-07 Denuded Descemet’s membrane supports human embryonic stem cell-derived retinal pigment epithelial cell culture Daniele, Elena Bosio, Lorenzo Hussain, Noor Ahmed Ferrari, Barbara Ferrari, Stefano Barbaro, Vanessa McArdle, Brian Rassu, Nicolò Mura, Marco Parmeggiani, Francesco Ponzin, Diego PLoS One Research Article Recent clinical studies suggest that retinal pigment epithelial (RPE) cell replacement therapy may preserve vision in retinal degenerative diseases. Scaffold-based methods are being tested in ongoing clinical trials for delivering pluripotent-derived RPE cells to the back of the eye. The aim of this study was to investigate human embryonic stem cell-derived retinal pigment epithelial (hESC-RPE) cells survival and behaviour on a decellularized Descemet’s Membrane (DM), which may be of clinical relevance in retinal transplantation. DMs were isolated from human donor corneas and treated with thermolysin. The DM surface topology and the efficiency of the denudation method were evaluated by atomic force microscope, scanning electron microscopy and histology. hESC-RPE cells were seeded onto the endothelial-side surface of decellularized DM in order to determine the potential of the membrane to support hESC-RPE cell culture, alongside maintaining their viability. Integrity of the hESC-RPE monolayer was assessed by measuring transepithelial resistance. RPE-specific gene expression and growth factors secretion were assessed to confirm maturation and functionality of the cells over the new substrate. Thermolysin treatment did not affect the integrity of the tissue, thus ensuring a reliable method to standardize the preparation of decellularized DM. 24 hours post-seeding, hESC-RPE cell attachment and initial proliferation rate over the denuded DM were higher than hESC-RPE cells cultured on tissue culture inserts. On the new matrix, hESC-RPE cells succeeded in forming an intact monolayer with mature tight junctions. The resulting cell culture showed characteristic RPE cell morphology and proper protein localization. Gene expression analysis and VEGF secretion demonstrate DM provides supportive scaffolding and inductive properties to enhance hESC-RPE cells maturation. Decellularized DM was shown to be capable of sustaining hESC-RPE cells culture, thus confirming to be potentially a suitable candidate for retinal cell therapy. Public Library of Science 2023-02-06 /pmc/articles/PMC9901769/ /pubmed/36745611 http://dx.doi.org/10.1371/journal.pone.0281404 Text en © 2023 Daniele et al https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Daniele, Elena
Bosio, Lorenzo
Hussain, Noor Ahmed
Ferrari, Barbara
Ferrari, Stefano
Barbaro, Vanessa
McArdle, Brian
Rassu, Nicolò
Mura, Marco
Parmeggiani, Francesco
Ponzin, Diego
Denuded Descemet’s membrane supports human embryonic stem cell-derived retinal pigment epithelial cell culture
title Denuded Descemet’s membrane supports human embryonic stem cell-derived retinal pigment epithelial cell culture
title_full Denuded Descemet’s membrane supports human embryonic stem cell-derived retinal pigment epithelial cell culture
title_fullStr Denuded Descemet’s membrane supports human embryonic stem cell-derived retinal pigment epithelial cell culture
title_full_unstemmed Denuded Descemet’s membrane supports human embryonic stem cell-derived retinal pigment epithelial cell culture
title_short Denuded Descemet’s membrane supports human embryonic stem cell-derived retinal pigment epithelial cell culture
title_sort denuded descemet’s membrane supports human embryonic stem cell-derived retinal pigment epithelial cell culture
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9901769/
https://www.ncbi.nlm.nih.gov/pubmed/36745611
http://dx.doi.org/10.1371/journal.pone.0281404
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