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Developmental Changes of ENaC Expression and Function in the Inner Ear of Pendrin Knock-Out Mice as a Perspective on the Development of Endolymphatic Hydrops

Pendrin mutations cause enlarged vestibular aqueducts and various degrees of sensorineural hearing loss. The selective abolition of pendrin causes dilation of the membranous labyrinth known as endolymphatic hydrops, loss of the endocochlear potential, and consequently loss of hearing function. Becau...

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Autores principales: Kim, Bo Gyung, Kim, Jin Young, Kim, Hee Nam, Bok, Jinwoong, Namkung, Wan, Choi, Jae Young, Kim, Sung Huhn
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3994121/
https://www.ncbi.nlm.nih.gov/pubmed/24752462
http://dx.doi.org/10.1371/journal.pone.0095730
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author Kim, Bo Gyung
Kim, Jin Young
Kim, Hee Nam
Bok, Jinwoong
Namkung, Wan
Choi, Jae Young
Kim, Sung Huhn
author_facet Kim, Bo Gyung
Kim, Jin Young
Kim, Hee Nam
Bok, Jinwoong
Namkung, Wan
Choi, Jae Young
Kim, Sung Huhn
author_sort Kim, Bo Gyung
collection PubMed
description Pendrin mutations cause enlarged vestibular aqueducts and various degrees of sensorineural hearing loss. The selective abolition of pendrin causes dilation of the membranous labyrinth known as endolymphatic hydrops, loss of the endocochlear potential, and consequently loss of hearing function. Because Na(+) transport is one of the most important driving forces for fluid transport, the epithelial Na(+) channel (ENaC) is believed to play an important role in fluid volume regulation in the inner ear. Therefore, the dysfunction of Na(+) transport through ENaC by the acidification of endolymph in Pendred syndrome is one of the potential causes of endolymphatic hydrops. We investigated the changes of ENaC expression and function during the development of the pendrin knock-out mouse. In the cochlea, the expression of β and γENaC was significantly increased at P56 in Pds(−/−) mice compared with Pds(+/+) mice. In the vestibule, the expression of βENaC was significantly increased at P56, and γENaC expression significantly increased from P6 to P56 in Pds(−/−) mice. The ENaC-dependent trans-epithelial current was not significantly different between Pds(+/+) and Pds(−/−) mice in Reissner’s membrane or the saccular extramacular roof epithelium at P0, but the current was significantly increased in Pds(−/−) mice at P56 compared with Pds(+/+) mice. These findings indicate that the expression and function of ENaC were enhanced in Pds(−/−) mice after the development of endolymphatic hydrops as a compensatory mechanism. This result provides insight into the role of Na(+) transport in the development and regulation of endolymphatic hydrops due to pendrin mutations.
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spelling pubmed-39941212014-04-25 Developmental Changes of ENaC Expression and Function in the Inner Ear of Pendrin Knock-Out Mice as a Perspective on the Development of Endolymphatic Hydrops Kim, Bo Gyung Kim, Jin Young Kim, Hee Nam Bok, Jinwoong Namkung, Wan Choi, Jae Young Kim, Sung Huhn PLoS One Research Article Pendrin mutations cause enlarged vestibular aqueducts and various degrees of sensorineural hearing loss. The selective abolition of pendrin causes dilation of the membranous labyrinth known as endolymphatic hydrops, loss of the endocochlear potential, and consequently loss of hearing function. Because Na(+) transport is one of the most important driving forces for fluid transport, the epithelial Na(+) channel (ENaC) is believed to play an important role in fluid volume regulation in the inner ear. Therefore, the dysfunction of Na(+) transport through ENaC by the acidification of endolymph in Pendred syndrome is one of the potential causes of endolymphatic hydrops. We investigated the changes of ENaC expression and function during the development of the pendrin knock-out mouse. In the cochlea, the expression of β and γENaC was significantly increased at P56 in Pds(−/−) mice compared with Pds(+/+) mice. In the vestibule, the expression of βENaC was significantly increased at P56, and γENaC expression significantly increased from P6 to P56 in Pds(−/−) mice. The ENaC-dependent trans-epithelial current was not significantly different between Pds(+/+) and Pds(−/−) mice in Reissner’s membrane or the saccular extramacular roof epithelium at P0, but the current was significantly increased in Pds(−/−) mice at P56 compared with Pds(+/+) mice. These findings indicate that the expression and function of ENaC were enhanced in Pds(−/−) mice after the development of endolymphatic hydrops as a compensatory mechanism. This result provides insight into the role of Na(+) transport in the development and regulation of endolymphatic hydrops due to pendrin mutations. Public Library of Science 2014-04-21 /pmc/articles/PMC3994121/ /pubmed/24752462 http://dx.doi.org/10.1371/journal.pone.0095730 Text en © 2014 Kim et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Kim, Bo Gyung
Kim, Jin Young
Kim, Hee Nam
Bok, Jinwoong
Namkung, Wan
Choi, Jae Young
Kim, Sung Huhn
Developmental Changes of ENaC Expression and Function in the Inner Ear of Pendrin Knock-Out Mice as a Perspective on the Development of Endolymphatic Hydrops
title Developmental Changes of ENaC Expression and Function in the Inner Ear of Pendrin Knock-Out Mice as a Perspective on the Development of Endolymphatic Hydrops
title_full Developmental Changes of ENaC Expression and Function in the Inner Ear of Pendrin Knock-Out Mice as a Perspective on the Development of Endolymphatic Hydrops
title_fullStr Developmental Changes of ENaC Expression and Function in the Inner Ear of Pendrin Knock-Out Mice as a Perspective on the Development of Endolymphatic Hydrops
title_full_unstemmed Developmental Changes of ENaC Expression and Function in the Inner Ear of Pendrin Knock-Out Mice as a Perspective on the Development of Endolymphatic Hydrops
title_short Developmental Changes of ENaC Expression and Function in the Inner Ear of Pendrin Knock-Out Mice as a Perspective on the Development of Endolymphatic Hydrops
title_sort developmental changes of enac expression and function in the inner ear of pendrin knock-out mice as a perspective on the development of endolymphatic hydrops
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3994121/
https://www.ncbi.nlm.nih.gov/pubmed/24752462
http://dx.doi.org/10.1371/journal.pone.0095730
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