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Stem-cell therapy for hearing loss: are we there yet?()

INTRODUCTION: Mammalian hair cells and auditory neurons do not show regenerative capacity. Hence, damage to these cell types is permanent and leads to hearing loss. However, there is no treatment that re-establishes auditory function. Regenerative therapies using stem cells represent a promising alt...

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Autores principales: Dufner-Almeida, Luiz Gustavo, Cruz, Dayane Bernardino da, Mingroni Netto, Regina Célia, Batissoco, Ana Carla, Oiticica, Jeanne, Salazar-Silva, Rodrigo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9443044/
https://www.ncbi.nlm.nih.gov/pubmed/31186186
http://dx.doi.org/10.1016/j.bjorl.2019.04.006
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author Dufner-Almeida, Luiz Gustavo
Cruz, Dayane Bernardino da
Mingroni Netto, Regina Célia
Batissoco, Ana Carla
Oiticica, Jeanne
Salazar-Silva, Rodrigo
author_facet Dufner-Almeida, Luiz Gustavo
Cruz, Dayane Bernardino da
Mingroni Netto, Regina Célia
Batissoco, Ana Carla
Oiticica, Jeanne
Salazar-Silva, Rodrigo
author_sort Dufner-Almeida, Luiz Gustavo
collection PubMed
description INTRODUCTION: Mammalian hair cells and auditory neurons do not show regenerative capacity. Hence, damage to these cell types is permanent and leads to hearing loss. However, there is no treatment that re-establishes auditory function. Regenerative therapies using stem cells represent a promising alternative. OBJECTIVE: This article aims to review the current literature about the main types of stem cells with potential for application in cell therapy for sensorineural hearing loss, the most relevant experiments already performed in animals, as well as the advances that have been recently made in the field. METHODS: Research included the databases PubMed/MEDLINE, Web of Science, Science Direct and SciELO, as well as gray literature. Search strategy included the following main terms: “stem cells”, “hair cells” and “auditory neurons”. Additionally, the main terms were combined with the following secondary terms: “mesenchymal”, “iPS”, “inner ear”, “auditory”. The research was conducted independently by three researchers. RESULTS: Differentiation of stem cells into hair cells and auditory neurons has a high success rate, reaching up to 82% for the first and 100% for the latter. Remarkably, these differentiated cells are able to interact with hair cells and auditory neurons of cochlear explants through formation of new synapses. When transplanted into the cochlea of animals with hearing loss, auditory restoration has been documented to date only in deafferented animals. CONCLUSION: Advances have been more prominent in cases of auditory neuropathy, since partial improvement of auditory nerve conditions through cell-based therapy may increase the number of patients who can successfully receive cochlear implants.
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spelling pubmed-94430442022-09-09 Stem-cell therapy for hearing loss: are we there yet?() Dufner-Almeida, Luiz Gustavo Cruz, Dayane Bernardino da Mingroni Netto, Regina Célia Batissoco, Ana Carla Oiticica, Jeanne Salazar-Silva, Rodrigo Braz J Otorhinolaryngol Review Article INTRODUCTION: Mammalian hair cells and auditory neurons do not show regenerative capacity. Hence, damage to these cell types is permanent and leads to hearing loss. However, there is no treatment that re-establishes auditory function. Regenerative therapies using stem cells represent a promising alternative. OBJECTIVE: This article aims to review the current literature about the main types of stem cells with potential for application in cell therapy for sensorineural hearing loss, the most relevant experiments already performed in animals, as well as the advances that have been recently made in the field. METHODS: Research included the databases PubMed/MEDLINE, Web of Science, Science Direct and SciELO, as well as gray literature. Search strategy included the following main terms: “stem cells”, “hair cells” and “auditory neurons”. Additionally, the main terms were combined with the following secondary terms: “mesenchymal”, “iPS”, “inner ear”, “auditory”. The research was conducted independently by three researchers. RESULTS: Differentiation of stem cells into hair cells and auditory neurons has a high success rate, reaching up to 82% for the first and 100% for the latter. Remarkably, these differentiated cells are able to interact with hair cells and auditory neurons of cochlear explants through formation of new synapses. When transplanted into the cochlea of animals with hearing loss, auditory restoration has been documented to date only in deafferented animals. CONCLUSION: Advances have been more prominent in cases of auditory neuropathy, since partial improvement of auditory nerve conditions through cell-based therapy may increase the number of patients who can successfully receive cochlear implants. Elsevier 2019-05-18 /pmc/articles/PMC9443044/ /pubmed/31186186 http://dx.doi.org/10.1016/j.bjorl.2019.04.006 Text en © 2019 Associação Brasileira de Otorrinolaringologia e Cirurgia Cérvico-Facial. Published by Elsevier Editora Ltda. https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Review Article
Dufner-Almeida, Luiz Gustavo
Cruz, Dayane Bernardino da
Mingroni Netto, Regina Célia
Batissoco, Ana Carla
Oiticica, Jeanne
Salazar-Silva, Rodrigo
Stem-cell therapy for hearing loss: are we there yet?()
title Stem-cell therapy for hearing loss: are we there yet?()
title_full Stem-cell therapy for hearing loss: are we there yet?()
title_fullStr Stem-cell therapy for hearing loss: are we there yet?()
title_full_unstemmed Stem-cell therapy for hearing loss: are we there yet?()
title_short Stem-cell therapy for hearing loss: are we there yet?()
title_sort stem-cell therapy for hearing loss: are we there yet?()
topic Review Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9443044/
https://www.ncbi.nlm.nih.gov/pubmed/31186186
http://dx.doi.org/10.1016/j.bjorl.2019.04.006
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