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Cellular Interplay Through Extracellular Vesicle miR-184 Alleviates Corneal Endothelium Degeneration

OBJECTIVE: The objective of the study was to reveal the presence of cellular interplay through extracellular vesicle (EV) microRNAs (miRs), to dampen the vicious cycle to degenerate human corneal endothelium (HCE) tissues. DESIGN: Prospective, comparative, observational study. METHODS: The miR level...

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Autores principales: Yamashita, Tomoko, Asada, Kazuko, Ueno, Morio, Hiramoto, Nao, Fujita, Tomoko, Toda, Munetoyo, Sotozono, Chie, Kinoshita, Shigeru, Hamuro, Junji
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9755023/
https://www.ncbi.nlm.nih.gov/pubmed/36531590
http://dx.doi.org/10.1016/j.xops.2022.100212
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author Yamashita, Tomoko
Asada, Kazuko
Ueno, Morio
Hiramoto, Nao
Fujita, Tomoko
Toda, Munetoyo
Sotozono, Chie
Kinoshita, Shigeru
Hamuro, Junji
author_facet Yamashita, Tomoko
Asada, Kazuko
Ueno, Morio
Hiramoto, Nao
Fujita, Tomoko
Toda, Munetoyo
Sotozono, Chie
Kinoshita, Shigeru
Hamuro, Junji
author_sort Yamashita, Tomoko
collection PubMed
description OBJECTIVE: The objective of the study was to reveal the presence of cellular interplay through extracellular vesicle (EV) microRNAs (miRs), to dampen the vicious cycle to degenerate human corneal endothelium (HCE) tissues. DESIGN: Prospective, comparative, observational study. METHODS: The miR levels in neonate-derived corneal tissues, in the aqueous humor (AqH) of bullous keratoplasty and cataract patients, as well as in the culture supernatant (CS) and EV of cultured human corneal endothelial cells (hCECs), were determined using 3D-Gene human miR chips and then validated using the real-time polymerase chain reaction. The extracellularly released miRs were profiled after the forced downregulation of cellular miR-34a, either by an miR-34a inhibitor or exposure to H(2)O(2). The senescence-associated secretory phenotypes and mitochondrial membrane potential (MMP) were assessed to determine the functional features of the released miRs. MAIN OUTCOME MEASURES: Identification of functional miRs attenuating HCE degeneration. RESULTS: The miRs in AqH were classified into 2 groups: expression in 1 group was significantly reduced in neonate-derived tissues, whereas that in the other group remained almost constant, independent of aging. The miR-34a and -29 families were typical in the former group, whereas miR-184 and -24-3p were typical in the latter. Additionally, a larger amount of the latter miRs was detected in AqH compared with those of the former miRs. There was also a greater abundance of miR-184 and -24-3p in hCECs, EV, and CS in fully mature CD44(−/dull) hCEC, leading to sufficient clinical tissue regenerative capacity in cell injection therapy. The repression of cellular miR-34a, either due to miR-34a inhibitors or exposure to oxidative stress, unexpectedly resulted in the elevated release of miR-184 and -24-3p. Secretions of VEGF, interleukin 6, monocyte chemotactic protein-1, and MMP were all repressed in both mature CD44(−/dull) and degenerated CD44(+++) hCEC, transfected with an miR-184 mimic. CONCLUSIONS: The elevated release of miR-184 into AqH may constitute cellular interplay that prevents the aggravation of HCE degeneration induced by oxidative stress, thereby sustaining tissue homeostasis in HCE.
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spelling pubmed-97550232022-12-17 Cellular Interplay Through Extracellular Vesicle miR-184 Alleviates Corneal Endothelium Degeneration Yamashita, Tomoko Asada, Kazuko Ueno, Morio Hiramoto, Nao Fujita, Tomoko Toda, Munetoyo Sotozono, Chie Kinoshita, Shigeru Hamuro, Junji Ophthalmol Sci Original Article OBJECTIVE: The objective of the study was to reveal the presence of cellular interplay through extracellular vesicle (EV) microRNAs (miRs), to dampen the vicious cycle to degenerate human corneal endothelium (HCE) tissues. DESIGN: Prospective, comparative, observational study. METHODS: The miR levels in neonate-derived corneal tissues, in the aqueous humor (AqH) of bullous keratoplasty and cataract patients, as well as in the culture supernatant (CS) and EV of cultured human corneal endothelial cells (hCECs), were determined using 3D-Gene human miR chips and then validated using the real-time polymerase chain reaction. The extracellularly released miRs were profiled after the forced downregulation of cellular miR-34a, either by an miR-34a inhibitor or exposure to H(2)O(2). The senescence-associated secretory phenotypes and mitochondrial membrane potential (MMP) were assessed to determine the functional features of the released miRs. MAIN OUTCOME MEASURES: Identification of functional miRs attenuating HCE degeneration. RESULTS: The miRs in AqH were classified into 2 groups: expression in 1 group was significantly reduced in neonate-derived tissues, whereas that in the other group remained almost constant, independent of aging. The miR-34a and -29 families were typical in the former group, whereas miR-184 and -24-3p were typical in the latter. Additionally, a larger amount of the latter miRs was detected in AqH compared with those of the former miRs. There was also a greater abundance of miR-184 and -24-3p in hCECs, EV, and CS in fully mature CD44(−/dull) hCEC, leading to sufficient clinical tissue regenerative capacity in cell injection therapy. The repression of cellular miR-34a, either due to miR-34a inhibitors or exposure to oxidative stress, unexpectedly resulted in the elevated release of miR-184 and -24-3p. Secretions of VEGF, interleukin 6, monocyte chemotactic protein-1, and MMP were all repressed in both mature CD44(−/dull) and degenerated CD44(+++) hCEC, transfected with an miR-184 mimic. CONCLUSIONS: The elevated release of miR-184 into AqH may constitute cellular interplay that prevents the aggravation of HCE degeneration induced by oxidative stress, thereby sustaining tissue homeostasis in HCE. Elsevier 2022-08-18 /pmc/articles/PMC9755023/ /pubmed/36531590 http://dx.doi.org/10.1016/j.xops.2022.100212 Text en © 2022 by the American Academy of Ophthalmology. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Yamashita, Tomoko
Asada, Kazuko
Ueno, Morio
Hiramoto, Nao
Fujita, Tomoko
Toda, Munetoyo
Sotozono, Chie
Kinoshita, Shigeru
Hamuro, Junji
Cellular Interplay Through Extracellular Vesicle miR-184 Alleviates Corneal Endothelium Degeneration
title Cellular Interplay Through Extracellular Vesicle miR-184 Alleviates Corneal Endothelium Degeneration
title_full Cellular Interplay Through Extracellular Vesicle miR-184 Alleviates Corneal Endothelium Degeneration
title_fullStr Cellular Interplay Through Extracellular Vesicle miR-184 Alleviates Corneal Endothelium Degeneration
title_full_unstemmed Cellular Interplay Through Extracellular Vesicle miR-184 Alleviates Corneal Endothelium Degeneration
title_short Cellular Interplay Through Extracellular Vesicle miR-184 Alleviates Corneal Endothelium Degeneration
title_sort cellular interplay through extracellular vesicle mir-184 alleviates corneal endothelium degeneration
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9755023/
https://www.ncbi.nlm.nih.gov/pubmed/36531590
http://dx.doi.org/10.1016/j.xops.2022.100212
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