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Junctional Modulation of Round Window Membrane Enhances Dexamethasone Uptake into the Inner Ear and Recovery after NIHL

Delivery of substances into the inner ear via local routes is increasingly being used in clinical treatment. Studies have focused on methods to increase permeability through the round window membrane (RWM) and enhance drug diffusion into the inner ear. However, the clinical applications of those met...

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Autores principales: Jeong, Seong-Hun, Kim, Yoonjoong, Lyu, Ah-Ra, Shin, Sun-Ae, Kim, Tae Hwan, Huh, Yang Hoon, Je, A Reum, Gajibhiye, Akanksha, Yu, Yang, Jin, Yongde, Park, Min Jung, Park, Yong-Ho
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8464844/
https://www.ncbi.nlm.nih.gov/pubmed/34576224
http://dx.doi.org/10.3390/ijms221810061
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author Jeong, Seong-Hun
Kim, Yoonjoong
Lyu, Ah-Ra
Shin, Sun-Ae
Kim, Tae Hwan
Huh, Yang Hoon
Je, A Reum
Gajibhiye, Akanksha
Yu, Yang
Jin, Yongde
Park, Min Jung
Park, Yong-Ho
author_facet Jeong, Seong-Hun
Kim, Yoonjoong
Lyu, Ah-Ra
Shin, Sun-Ae
Kim, Tae Hwan
Huh, Yang Hoon
Je, A Reum
Gajibhiye, Akanksha
Yu, Yang
Jin, Yongde
Park, Min Jung
Park, Yong-Ho
author_sort Jeong, Seong-Hun
collection PubMed
description Delivery of substances into the inner ear via local routes is increasingly being used in clinical treatment. Studies have focused on methods to increase permeability through the round window membrane (RWM) and enhance drug diffusion into the inner ear. However, the clinical applications of those methods have been unclear and few studies have investigated the efficacy of methods in an inner ear injury model. Here, we employed the medium chain fatty acid caprate, a biologically safe, clinically applicable substance, to modulate tight junctions of the RWM. Intratympanic treatment of sodium caprate (SC) induced transient, but wider, gaps in intercellular spaces of the RWM epithelial layer and enhanced the perilymph and cochlear concentrations/uptake of dexamethasone. Importantly, dexamethasone co–administered with SC led to significantly more rapid recovery from noise-induced hearing loss at 4 and 8 kHz, compared with the dexamethasone-only group. Taken together, our data indicate that junctional modulation of the RWM by SC enhances dexamethasone uptake into the inner ear, thereby hastening the recovery of hearing sensitivity after noise trauma.
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spelling pubmed-84648442021-09-27 Junctional Modulation of Round Window Membrane Enhances Dexamethasone Uptake into the Inner Ear and Recovery after NIHL Jeong, Seong-Hun Kim, Yoonjoong Lyu, Ah-Ra Shin, Sun-Ae Kim, Tae Hwan Huh, Yang Hoon Je, A Reum Gajibhiye, Akanksha Yu, Yang Jin, Yongde Park, Min Jung Park, Yong-Ho Int J Mol Sci Article Delivery of substances into the inner ear via local routes is increasingly being used in clinical treatment. Studies have focused on methods to increase permeability through the round window membrane (RWM) and enhance drug diffusion into the inner ear. However, the clinical applications of those methods have been unclear and few studies have investigated the efficacy of methods in an inner ear injury model. Here, we employed the medium chain fatty acid caprate, a biologically safe, clinically applicable substance, to modulate tight junctions of the RWM. Intratympanic treatment of sodium caprate (SC) induced transient, but wider, gaps in intercellular spaces of the RWM epithelial layer and enhanced the perilymph and cochlear concentrations/uptake of dexamethasone. Importantly, dexamethasone co–administered with SC led to significantly more rapid recovery from noise-induced hearing loss at 4 and 8 kHz, compared with the dexamethasone-only group. Taken together, our data indicate that junctional modulation of the RWM by SC enhances dexamethasone uptake into the inner ear, thereby hastening the recovery of hearing sensitivity after noise trauma. MDPI 2021-09-17 /pmc/articles/PMC8464844/ /pubmed/34576224 http://dx.doi.org/10.3390/ijms221810061 Text en © 2021 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
Jeong, Seong-Hun
Kim, Yoonjoong
Lyu, Ah-Ra
Shin, Sun-Ae
Kim, Tae Hwan
Huh, Yang Hoon
Je, A Reum
Gajibhiye, Akanksha
Yu, Yang
Jin, Yongde
Park, Min Jung
Park, Yong-Ho
Junctional Modulation of Round Window Membrane Enhances Dexamethasone Uptake into the Inner Ear and Recovery after NIHL
title Junctional Modulation of Round Window Membrane Enhances Dexamethasone Uptake into the Inner Ear and Recovery after NIHL
title_full Junctional Modulation of Round Window Membrane Enhances Dexamethasone Uptake into the Inner Ear and Recovery after NIHL
title_fullStr Junctional Modulation of Round Window Membrane Enhances Dexamethasone Uptake into the Inner Ear and Recovery after NIHL
title_full_unstemmed Junctional Modulation of Round Window Membrane Enhances Dexamethasone Uptake into the Inner Ear and Recovery after NIHL
title_short Junctional Modulation of Round Window Membrane Enhances Dexamethasone Uptake into the Inner Ear and Recovery after NIHL
title_sort junctional modulation of round window membrane enhances dexamethasone uptake into the inner ear and recovery after nihl
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8464844/
https://www.ncbi.nlm.nih.gov/pubmed/34576224
http://dx.doi.org/10.3390/ijms221810061
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