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Human Neural Progenitors Expressing GDNF Enhance Retinal Protection in a Rodent Model of Retinal Degeneration

Stem cell therapy for retinal degenerative diseases has been extensively tested in preclinical and clinical studies. However, preclinical studies performed in animal models at the early stage of disease do not optimally translate to patients that present to the clinic at a later stage of disease. As...

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Autores principales: Shahin, Saba, Tan, Patrick, Chetsawang, Jason, Lu, Bin, Svendsen, Soshana, Ramirez, Stephany, Conniff, Trevor, Alfaro, Jorge S, Fernandez, Michael, Fulton, Aaron, Laperle, Alexander H, Svendsen, Clive N, Wang, Shaomei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10630082/
https://www.ncbi.nlm.nih.gov/pubmed/37786347
http://dx.doi.org/10.1093/stcltm/szad054
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author Shahin, Saba
Tan, Patrick
Chetsawang, Jason
Lu, Bin
Svendsen, Soshana
Ramirez, Stephany
Conniff, Trevor
Alfaro, Jorge S
Fernandez, Michael
Fulton, Aaron
Laperle, Alexander H
Svendsen, Clive N
Wang, Shaomei
author_facet Shahin, Saba
Tan, Patrick
Chetsawang, Jason
Lu, Bin
Svendsen, Soshana
Ramirez, Stephany
Conniff, Trevor
Alfaro, Jorge S
Fernandez, Michael
Fulton, Aaron
Laperle, Alexander H
Svendsen, Clive N
Wang, Shaomei
author_sort Shahin, Saba
collection PubMed
description Stem cell therapy for retinal degenerative diseases has been extensively tested in preclinical and clinical studies. However, preclinical studies performed in animal models at the early stage of disease do not optimally translate to patients that present to the clinic at a later stage of disease. As the retina degenerates, inflammation and oxidative stress increase and trophic factor support declines. Testing stem cell therapies in animal models at a clinically relevant stage is critical for translation to the clinic. Human neural progenitor cells (hNPC) and hNPC engineered to stably express GDNF (hNPC(GDNF)) were subretinally injected into the Royal College of Surgeon (RCS) rats, a well-established model for retinal degeneration, at early and later stages of the disease. hNPC(GDNF) treatment at the early stage of retinal degeneration provided enhanced visual function compared to hNPC alone. Treatment with both cell types resulted in preserved retinal morphology compared to controls. hNPC(GDNF) treatment led to significantly broader photoreceptor protection than hNPC treatment at both early and later times of intervention. The phagocytic role of hNPC appears to support RPE cell functions and the secreted GDNF offers neuroprotection and enables the extended survival of photoreceptor cells in transplanted animal eyes. Donor cells in the RCS rat retina survived with only limited proliferation, and hNPC(GDNF) produced GDNF in vivo. Cell treatment led to significant changes in various pathways related to cell survival, antioxidative stress, phagocytosis, and autophagy. A combined stem cell and trophic factor therapy holds great promise for treating retinal degenerative diseases including retinitis pigmentosa and age-related macular degeneration.
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spelling pubmed-106300822023-11-08 Human Neural Progenitors Expressing GDNF Enhance Retinal Protection in a Rodent Model of Retinal Degeneration Shahin, Saba Tan, Patrick Chetsawang, Jason Lu, Bin Svendsen, Soshana Ramirez, Stephany Conniff, Trevor Alfaro, Jorge S Fernandez, Michael Fulton, Aaron Laperle, Alexander H Svendsen, Clive N Wang, Shaomei Stem Cells Transl Med Fetal and Neonatal Stem Cells Stem cell therapy for retinal degenerative diseases has been extensively tested in preclinical and clinical studies. However, preclinical studies performed in animal models at the early stage of disease do not optimally translate to patients that present to the clinic at a later stage of disease. As the retina degenerates, inflammation and oxidative stress increase and trophic factor support declines. Testing stem cell therapies in animal models at a clinically relevant stage is critical for translation to the clinic. Human neural progenitor cells (hNPC) and hNPC engineered to stably express GDNF (hNPC(GDNF)) were subretinally injected into the Royal College of Surgeon (RCS) rats, a well-established model for retinal degeneration, at early and later stages of the disease. hNPC(GDNF) treatment at the early stage of retinal degeneration provided enhanced visual function compared to hNPC alone. Treatment with both cell types resulted in preserved retinal morphology compared to controls. hNPC(GDNF) treatment led to significantly broader photoreceptor protection than hNPC treatment at both early and later times of intervention. The phagocytic role of hNPC appears to support RPE cell functions and the secreted GDNF offers neuroprotection and enables the extended survival of photoreceptor cells in transplanted animal eyes. Donor cells in the RCS rat retina survived with only limited proliferation, and hNPC(GDNF) produced GDNF in vivo. Cell treatment led to significant changes in various pathways related to cell survival, antioxidative stress, phagocytosis, and autophagy. A combined stem cell and trophic factor therapy holds great promise for treating retinal degenerative diseases including retinitis pigmentosa and age-related macular degeneration. Oxford University Press 2023-10-03 /pmc/articles/PMC10630082/ /pubmed/37786347 http://dx.doi.org/10.1093/stcltm/szad054 Text en © The Author(s) 2023. Published by Oxford University Press. 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 reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Fetal and Neonatal Stem Cells
Shahin, Saba
Tan, Patrick
Chetsawang, Jason
Lu, Bin
Svendsen, Soshana
Ramirez, Stephany
Conniff, Trevor
Alfaro, Jorge S
Fernandez, Michael
Fulton, Aaron
Laperle, Alexander H
Svendsen, Clive N
Wang, Shaomei
Human Neural Progenitors Expressing GDNF Enhance Retinal Protection in a Rodent Model of Retinal Degeneration
title Human Neural Progenitors Expressing GDNF Enhance Retinal Protection in a Rodent Model of Retinal Degeneration
title_full Human Neural Progenitors Expressing GDNF Enhance Retinal Protection in a Rodent Model of Retinal Degeneration
title_fullStr Human Neural Progenitors Expressing GDNF Enhance Retinal Protection in a Rodent Model of Retinal Degeneration
title_full_unstemmed Human Neural Progenitors Expressing GDNF Enhance Retinal Protection in a Rodent Model of Retinal Degeneration
title_short Human Neural Progenitors Expressing GDNF Enhance Retinal Protection in a Rodent Model of Retinal Degeneration
title_sort human neural progenitors expressing gdnf enhance retinal protection in a rodent model of retinal degeneration
topic Fetal and Neonatal Stem Cells
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10630082/
https://www.ncbi.nlm.nih.gov/pubmed/37786347
http://dx.doi.org/10.1093/stcltm/szad054
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