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Single-cell transcriptomics reveals maturation of transplanted stem cell–derived retinal pigment epithelial cells toward native state

Transplantation of stem cell–derived retinal pigment epithelial (RPE) cells is considered a viable therapeutic option for age-related macular degeneration (AMD). Several landmark Phase I/II clinical trials have demonstrated safety and tolerability of RPE transplants in AMD patients, albeit with limi...

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Autores principales: Parikh, Bhav Harshad, Blakeley, Paul, Regha, Kakkad, Liu, Zengping, Yang, Binxia, Bhargava, Mayuri, Wong, Daniel Soo Lin, Tan, Queenie Shu Woon, Wong, Claudine See Wei, Wang, Hao Fei, Al-Mubaarak, Abdurrahmaan, Chou, Chai, Cheung, Chui Ming Gemmy, Lim, Kah Leong, Barathi, Veluchamy Amutha, Hunziker, Walter, Lingam, Gopal, Hu, Tim Xiaoming, Su, Xinyi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10293804/
https://www.ncbi.nlm.nih.gov/pubmed/37339216
http://dx.doi.org/10.1073/pnas.2214842120
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author Parikh, Bhav Harshad
Blakeley, Paul
Regha, Kakkad
Liu, Zengping
Yang, Binxia
Bhargava, Mayuri
Wong, Daniel Soo Lin
Tan, Queenie Shu Woon
Wong, Claudine See Wei
Wang, Hao Fei
Al-Mubaarak, Abdurrahmaan
Chou, Chai
Cheung, Chui Ming Gemmy
Lim, Kah Leong
Barathi, Veluchamy Amutha
Hunziker, Walter
Lingam, Gopal
Hu, Tim Xiaoming
Su, Xinyi
author_facet Parikh, Bhav Harshad
Blakeley, Paul
Regha, Kakkad
Liu, Zengping
Yang, Binxia
Bhargava, Mayuri
Wong, Daniel Soo Lin
Tan, Queenie Shu Woon
Wong, Claudine See Wei
Wang, Hao Fei
Al-Mubaarak, Abdurrahmaan
Chou, Chai
Cheung, Chui Ming Gemmy
Lim, Kah Leong
Barathi, Veluchamy Amutha
Hunziker, Walter
Lingam, Gopal
Hu, Tim Xiaoming
Su, Xinyi
author_sort Parikh, Bhav Harshad
collection PubMed
description Transplantation of stem cell–derived retinal pigment epithelial (RPE) cells is considered a viable therapeutic option for age-related macular degeneration (AMD). Several landmark Phase I/II clinical trials have demonstrated safety and tolerability of RPE transplants in AMD patients, albeit with limited efficacy. Currently, there is limited understanding of how the recipient retina regulates the survival, maturation, and fate specification of transplanted RPE cells. To address this, we transplanted stem cell–derived RPE into the subretinal space of immunocompetent rabbits for 1 mo and conducted single-cell RNA sequencing analyses on the explanted RPE monolayers, compared to their age-matched in vitro counterparts. We observed an unequivocal retention of RPE identity, and a trajectory-inferred survival of all in vitro RPE populations after transplantation. Furthermore, there was a unidirectional maturation toward the native adult human RPE state in all transplanted RPE, regardless of stem cell resource. Gene regulatory network analysis suggests that tripartite transcription factors (FOS, JUND, and MAFF) may be specifically activated in posttransplanted RPE cells, to regulate canonical RPE signature gene expression crucial for supporting host photoreceptor function, and to regulate prosurvival genes required for transplanted RPE’s adaptation to the host subretinal microenvironment. These findings shed insights into the transcriptional landscape of RPE cells after subretinal transplantation, with important implications for cell-based therapy for AMD.
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spelling pubmed-102938042023-06-28 Single-cell transcriptomics reveals maturation of transplanted stem cell–derived retinal pigment epithelial cells toward native state Parikh, Bhav Harshad Blakeley, Paul Regha, Kakkad Liu, Zengping Yang, Binxia Bhargava, Mayuri Wong, Daniel Soo Lin Tan, Queenie Shu Woon Wong, Claudine See Wei Wang, Hao Fei Al-Mubaarak, Abdurrahmaan Chou, Chai Cheung, Chui Ming Gemmy Lim, Kah Leong Barathi, Veluchamy Amutha Hunziker, Walter Lingam, Gopal Hu, Tim Xiaoming Su, Xinyi Proc Natl Acad Sci U S A Biological Sciences Transplantation of stem cell–derived retinal pigment epithelial (RPE) cells is considered a viable therapeutic option for age-related macular degeneration (AMD). Several landmark Phase I/II clinical trials have demonstrated safety and tolerability of RPE transplants in AMD patients, albeit with limited efficacy. Currently, there is limited understanding of how the recipient retina regulates the survival, maturation, and fate specification of transplanted RPE cells. To address this, we transplanted stem cell–derived RPE into the subretinal space of immunocompetent rabbits for 1 mo and conducted single-cell RNA sequencing analyses on the explanted RPE monolayers, compared to their age-matched in vitro counterparts. We observed an unequivocal retention of RPE identity, and a trajectory-inferred survival of all in vitro RPE populations after transplantation. Furthermore, there was a unidirectional maturation toward the native adult human RPE state in all transplanted RPE, regardless of stem cell resource. Gene regulatory network analysis suggests that tripartite transcription factors (FOS, JUND, and MAFF) may be specifically activated in posttransplanted RPE cells, to regulate canonical RPE signature gene expression crucial for supporting host photoreceptor function, and to regulate prosurvival genes required for transplanted RPE’s adaptation to the host subretinal microenvironment. These findings shed insights into the transcriptional landscape of RPE cells after subretinal transplantation, with important implications for cell-based therapy for AMD. National Academy of Sciences 2023-06-20 2023-06-27 /pmc/articles/PMC10293804/ /pubmed/37339216 http://dx.doi.org/10.1073/pnas.2214842120 Text en Copyright © 2023 the Author(s). Published by PNAS. https://creativecommons.org/licenses/by/4.0/This open access article is distributed under Creative Commons Attribution License 4.0 (CC BY) (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Biological Sciences
Parikh, Bhav Harshad
Blakeley, Paul
Regha, Kakkad
Liu, Zengping
Yang, Binxia
Bhargava, Mayuri
Wong, Daniel Soo Lin
Tan, Queenie Shu Woon
Wong, Claudine See Wei
Wang, Hao Fei
Al-Mubaarak, Abdurrahmaan
Chou, Chai
Cheung, Chui Ming Gemmy
Lim, Kah Leong
Barathi, Veluchamy Amutha
Hunziker, Walter
Lingam, Gopal
Hu, Tim Xiaoming
Su, Xinyi
Single-cell transcriptomics reveals maturation of transplanted stem cell–derived retinal pigment epithelial cells toward native state
title Single-cell transcriptomics reveals maturation of transplanted stem cell–derived retinal pigment epithelial cells toward native state
title_full Single-cell transcriptomics reveals maturation of transplanted stem cell–derived retinal pigment epithelial cells toward native state
title_fullStr Single-cell transcriptomics reveals maturation of transplanted stem cell–derived retinal pigment epithelial cells toward native state
title_full_unstemmed Single-cell transcriptomics reveals maturation of transplanted stem cell–derived retinal pigment epithelial cells toward native state
title_short Single-cell transcriptomics reveals maturation of transplanted stem cell–derived retinal pigment epithelial cells toward native state
title_sort single-cell transcriptomics reveals maturation of transplanted stem cell–derived retinal pigment epithelial cells toward native state
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10293804/
https://www.ncbi.nlm.nih.gov/pubmed/37339216
http://dx.doi.org/10.1073/pnas.2214842120
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