Cargando…

Intravitreal Administration of Retinal Organoids-Derived Exosomes Alleviates Photoreceptor Degeneration in Royal College of Surgeons Rats by Targeting the Mitogen-Activated Protein Kinase Pathway

Increasing evidence suggests that exosomes are involved in retinal cell degeneration, including their insufficient release; hence, they have become important indicators of retinopathies. The exosomal microRNA (miRNA), in particular, play important roles in regulating ocular and retinal cell function...

Descripción completa

Detalles Bibliográficos
Autores principales: Han, Jung Woo, Chang, Hun Soo, Yang, Jin Young, Choi, Han Sol, Park, Hyo Song, Jun, Hyoung Oh, Choi, Ji Hye, Paik, Sun-Sook, Chung, Kyung Hwun, Shin, Hee Jeong, Nam, Seungyeon, Son, Ji-Hye, Lee, Si Hyung, Lee, Eun Jung, Seo, Kyoung Yul, Lyu, Jungmook, Kim, Jin Woo, Kim, In-Beom, Park, Tae Kwann
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10419150/
https://www.ncbi.nlm.nih.gov/pubmed/37569444
http://dx.doi.org/10.3390/ijms241512068
_version_ 1785088444133801984
author Han, Jung Woo
Chang, Hun Soo
Yang, Jin Young
Choi, Han Sol
Park, Hyo Song
Jun, Hyoung Oh
Choi, Ji Hye
Paik, Sun-Sook
Chung, Kyung Hwun
Shin, Hee Jeong
Nam, Seungyeon
Son, Ji-Hye
Lee, Si Hyung
Lee, Eun Jung
Seo, Kyoung Yul
Lyu, Jungmook
Kim, Jin Woo
Kim, In-Beom
Park, Tae Kwann
author_facet Han, Jung Woo
Chang, Hun Soo
Yang, Jin Young
Choi, Han Sol
Park, Hyo Song
Jun, Hyoung Oh
Choi, Ji Hye
Paik, Sun-Sook
Chung, Kyung Hwun
Shin, Hee Jeong
Nam, Seungyeon
Son, Ji-Hye
Lee, Si Hyung
Lee, Eun Jung
Seo, Kyoung Yul
Lyu, Jungmook
Kim, Jin Woo
Kim, In-Beom
Park, Tae Kwann
author_sort Han, Jung Woo
collection PubMed
description Increasing evidence suggests that exosomes are involved in retinal cell degeneration, including their insufficient release; hence, they have become important indicators of retinopathies. The exosomal microRNA (miRNA), in particular, play important roles in regulating ocular and retinal cell functions, including photoreceptor maturation, maintenance, and visual function. Here, we generated retinal organoids (ROs) from human induced pluripotent stem cells that differentiated in a conditioned medium for 60 days, after which exosomes were extracted from ROs (Exo-ROs). Subsequently, we intravitreally injected the Exo-RO solution into the eyes of the Royal College of Surgeons (RCS) rats. Intravitreal Exo-RO administration reduced photoreceptor apoptosis, prevented outer nuclear layer thinning, and preserved visual function in RCS rats. RNA sequencing and miRNA profiling showed that exosomal miRNAs are mainly involved in the mitogen-activated protein kinase (MAPK) signaling pathway. In addition, the expression of MAPK-related genes and proteins was significantly decreased in the Exo-RO-treated group. These results suggest that Exo-ROs may be a potentially novel strategy for delaying retinal degeneration by targeting the MAPK signaling pathway.
format Online
Article
Text
id pubmed-10419150
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-104191502023-08-12 Intravitreal Administration of Retinal Organoids-Derived Exosomes Alleviates Photoreceptor Degeneration in Royal College of Surgeons Rats by Targeting the Mitogen-Activated Protein Kinase Pathway Han, Jung Woo Chang, Hun Soo Yang, Jin Young Choi, Han Sol Park, Hyo Song Jun, Hyoung Oh Choi, Ji Hye Paik, Sun-Sook Chung, Kyung Hwun Shin, Hee Jeong Nam, Seungyeon Son, Ji-Hye Lee, Si Hyung Lee, Eun Jung Seo, Kyoung Yul Lyu, Jungmook Kim, Jin Woo Kim, In-Beom Park, Tae Kwann Int J Mol Sci Article Increasing evidence suggests that exosomes are involved in retinal cell degeneration, including their insufficient release; hence, they have become important indicators of retinopathies. The exosomal microRNA (miRNA), in particular, play important roles in regulating ocular and retinal cell functions, including photoreceptor maturation, maintenance, and visual function. Here, we generated retinal organoids (ROs) from human induced pluripotent stem cells that differentiated in a conditioned medium for 60 days, after which exosomes were extracted from ROs (Exo-ROs). Subsequently, we intravitreally injected the Exo-RO solution into the eyes of the Royal College of Surgeons (RCS) rats. Intravitreal Exo-RO administration reduced photoreceptor apoptosis, prevented outer nuclear layer thinning, and preserved visual function in RCS rats. RNA sequencing and miRNA profiling showed that exosomal miRNAs are mainly involved in the mitogen-activated protein kinase (MAPK) signaling pathway. In addition, the expression of MAPK-related genes and proteins was significantly decreased in the Exo-RO-treated group. These results suggest that Exo-ROs may be a potentially novel strategy for delaying retinal degeneration by targeting the MAPK signaling pathway. MDPI 2023-07-27 /pmc/articles/PMC10419150/ /pubmed/37569444 http://dx.doi.org/10.3390/ijms241512068 Text en © 2023 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
Han, Jung Woo
Chang, Hun Soo
Yang, Jin Young
Choi, Han Sol
Park, Hyo Song
Jun, Hyoung Oh
Choi, Ji Hye
Paik, Sun-Sook
Chung, Kyung Hwun
Shin, Hee Jeong
Nam, Seungyeon
Son, Ji-Hye
Lee, Si Hyung
Lee, Eun Jung
Seo, Kyoung Yul
Lyu, Jungmook
Kim, Jin Woo
Kim, In-Beom
Park, Tae Kwann
Intravitreal Administration of Retinal Organoids-Derived Exosomes Alleviates Photoreceptor Degeneration in Royal College of Surgeons Rats by Targeting the Mitogen-Activated Protein Kinase Pathway
title Intravitreal Administration of Retinal Organoids-Derived Exosomes Alleviates Photoreceptor Degeneration in Royal College of Surgeons Rats by Targeting the Mitogen-Activated Protein Kinase Pathway
title_full Intravitreal Administration of Retinal Organoids-Derived Exosomes Alleviates Photoreceptor Degeneration in Royal College of Surgeons Rats by Targeting the Mitogen-Activated Protein Kinase Pathway
title_fullStr Intravitreal Administration of Retinal Organoids-Derived Exosomes Alleviates Photoreceptor Degeneration in Royal College of Surgeons Rats by Targeting the Mitogen-Activated Protein Kinase Pathway
title_full_unstemmed Intravitreal Administration of Retinal Organoids-Derived Exosomes Alleviates Photoreceptor Degeneration in Royal College of Surgeons Rats by Targeting the Mitogen-Activated Protein Kinase Pathway
title_short Intravitreal Administration of Retinal Organoids-Derived Exosomes Alleviates Photoreceptor Degeneration in Royal College of Surgeons Rats by Targeting the Mitogen-Activated Protein Kinase Pathway
title_sort intravitreal administration of retinal organoids-derived exosomes alleviates photoreceptor degeneration in royal college of surgeons rats by targeting the mitogen-activated protein kinase pathway
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10419150/
https://www.ncbi.nlm.nih.gov/pubmed/37569444
http://dx.doi.org/10.3390/ijms241512068
work_keys_str_mv AT hanjungwoo intravitrealadministrationofretinalorganoidsderivedexosomesalleviatesphotoreceptordegenerationinroyalcollegeofsurgeonsratsbytargetingthemitogenactivatedproteinkinasepathway
AT changhunsoo intravitrealadministrationofretinalorganoidsderivedexosomesalleviatesphotoreceptordegenerationinroyalcollegeofsurgeonsratsbytargetingthemitogenactivatedproteinkinasepathway
AT yangjinyoung intravitrealadministrationofretinalorganoidsderivedexosomesalleviatesphotoreceptordegenerationinroyalcollegeofsurgeonsratsbytargetingthemitogenactivatedproteinkinasepathway
AT choihansol intravitrealadministrationofretinalorganoidsderivedexosomesalleviatesphotoreceptordegenerationinroyalcollegeofsurgeonsratsbytargetingthemitogenactivatedproteinkinasepathway
AT parkhyosong intravitrealadministrationofretinalorganoidsderivedexosomesalleviatesphotoreceptordegenerationinroyalcollegeofsurgeonsratsbytargetingthemitogenactivatedproteinkinasepathway
AT junhyoungoh intravitrealadministrationofretinalorganoidsderivedexosomesalleviatesphotoreceptordegenerationinroyalcollegeofsurgeonsratsbytargetingthemitogenactivatedproteinkinasepathway
AT choijihye intravitrealadministrationofretinalorganoidsderivedexosomesalleviatesphotoreceptordegenerationinroyalcollegeofsurgeonsratsbytargetingthemitogenactivatedproteinkinasepathway
AT paiksunsook intravitrealadministrationofretinalorganoidsderivedexosomesalleviatesphotoreceptordegenerationinroyalcollegeofsurgeonsratsbytargetingthemitogenactivatedproteinkinasepathway
AT chungkyunghwun intravitrealadministrationofretinalorganoidsderivedexosomesalleviatesphotoreceptordegenerationinroyalcollegeofsurgeonsratsbytargetingthemitogenactivatedproteinkinasepathway
AT shinheejeong intravitrealadministrationofretinalorganoidsderivedexosomesalleviatesphotoreceptordegenerationinroyalcollegeofsurgeonsratsbytargetingthemitogenactivatedproteinkinasepathway
AT namseungyeon intravitrealadministrationofretinalorganoidsderivedexosomesalleviatesphotoreceptordegenerationinroyalcollegeofsurgeonsratsbytargetingthemitogenactivatedproteinkinasepathway
AT sonjihye intravitrealadministrationofretinalorganoidsderivedexosomesalleviatesphotoreceptordegenerationinroyalcollegeofsurgeonsratsbytargetingthemitogenactivatedproteinkinasepathway
AT leesihyung intravitrealadministrationofretinalorganoidsderivedexosomesalleviatesphotoreceptordegenerationinroyalcollegeofsurgeonsratsbytargetingthemitogenactivatedproteinkinasepathway
AT leeeunjung intravitrealadministrationofretinalorganoidsderivedexosomesalleviatesphotoreceptordegenerationinroyalcollegeofsurgeonsratsbytargetingthemitogenactivatedproteinkinasepathway
AT seokyoungyul intravitrealadministrationofretinalorganoidsderivedexosomesalleviatesphotoreceptordegenerationinroyalcollegeofsurgeonsratsbytargetingthemitogenactivatedproteinkinasepathway
AT lyujungmook intravitrealadministrationofretinalorganoidsderivedexosomesalleviatesphotoreceptordegenerationinroyalcollegeofsurgeonsratsbytargetingthemitogenactivatedproteinkinasepathway
AT kimjinwoo intravitrealadministrationofretinalorganoidsderivedexosomesalleviatesphotoreceptordegenerationinroyalcollegeofsurgeonsratsbytargetingthemitogenactivatedproteinkinasepathway
AT kiminbeom intravitrealadministrationofretinalorganoidsderivedexosomesalleviatesphotoreceptordegenerationinroyalcollegeofsurgeonsratsbytargetingthemitogenactivatedproteinkinasepathway
AT parktaekwann intravitrealadministrationofretinalorganoidsderivedexosomesalleviatesphotoreceptordegenerationinroyalcollegeofsurgeonsratsbytargetingthemitogenactivatedproteinkinasepathway