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Proteome of normal human perilymph and perilymph from people with disabling vertigo

The vast majority of hearing loss, the most common sensory impairment, and vertigo, which commonly causes falls, both reflect underlying dysfunction of inner ear cells. Perilymph sampling can thus provide molecular cues to hearing and balance disorders. While such “liquid biopsy” of the inner ear is...

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Autores principales: Lin, Hsiao-Chun, Ren, Yin, Lysaght, Andrew C., Kao, Shyan-Yuan, Stankovic, Konstantina M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6559673/
https://www.ncbi.nlm.nih.gov/pubmed/31185063
http://dx.doi.org/10.1371/journal.pone.0218292
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author Lin, Hsiao-Chun
Ren, Yin
Lysaght, Andrew C.
Kao, Shyan-Yuan
Stankovic, Konstantina M.
author_facet Lin, Hsiao-Chun
Ren, Yin
Lysaght, Andrew C.
Kao, Shyan-Yuan
Stankovic, Konstantina M.
author_sort Lin, Hsiao-Chun
collection PubMed
description The vast majority of hearing loss, the most common sensory impairment, and vertigo, which commonly causes falls, both reflect underlying dysfunction of inner ear cells. Perilymph sampling can thus provide molecular cues to hearing and balance disorders. While such “liquid biopsy” of the inner ear is not yet in routine clinical practice, previous studies have uncovered alterations in perilymph in patients with certain types of hearing loss. However, the proteome of perilymph from patients with intact hearing has been unknown. Furthermore, no complete characterization of perilymph from patients with vestibular dysfunction has been reported. Here, using liquid-chromatography with tandem mass spectrometry, we analyzed samples of normal perilymph collected from three patients with skull base meningiomas and intact hearing. We identified 228 proteins that were common across the samples, establishing a greatly expanded proteome of the previously inferred normal human perilymph. Further comparison to perilymph obtained from three patients with vestibular dysfunction with drop attacks due to Meniere’s disease showed 38 proteins with significantly differential abundance. The abundance of four protein candidates with previously unknown roles in inner ear biology was validated in murine cochleae by immunohistochemistry and in situ hybridization: AACT, HGFAC, EFEMP1, and TGFBI. Together, these results motivate future work in characterizing the normal human perilymph and identifying biomarkers of inner ear disease.
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spelling pubmed-65596732019-06-17 Proteome of normal human perilymph and perilymph from people with disabling vertigo Lin, Hsiao-Chun Ren, Yin Lysaght, Andrew C. Kao, Shyan-Yuan Stankovic, Konstantina M. PLoS One Research Article The vast majority of hearing loss, the most common sensory impairment, and vertigo, which commonly causes falls, both reflect underlying dysfunction of inner ear cells. Perilymph sampling can thus provide molecular cues to hearing and balance disorders. While such “liquid biopsy” of the inner ear is not yet in routine clinical practice, previous studies have uncovered alterations in perilymph in patients with certain types of hearing loss. However, the proteome of perilymph from patients with intact hearing has been unknown. Furthermore, no complete characterization of perilymph from patients with vestibular dysfunction has been reported. Here, using liquid-chromatography with tandem mass spectrometry, we analyzed samples of normal perilymph collected from three patients with skull base meningiomas and intact hearing. We identified 228 proteins that were common across the samples, establishing a greatly expanded proteome of the previously inferred normal human perilymph. Further comparison to perilymph obtained from three patients with vestibular dysfunction with drop attacks due to Meniere’s disease showed 38 proteins with significantly differential abundance. The abundance of four protein candidates with previously unknown roles in inner ear biology was validated in murine cochleae by immunohistochemistry and in situ hybridization: AACT, HGFAC, EFEMP1, and TGFBI. Together, these results motivate future work in characterizing the normal human perilymph and identifying biomarkers of inner ear disease. Public Library of Science 2019-06-11 /pmc/articles/PMC6559673/ /pubmed/31185063 http://dx.doi.org/10.1371/journal.pone.0218292 Text en © 2019 Lin 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 (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Lin, Hsiao-Chun
Ren, Yin
Lysaght, Andrew C.
Kao, Shyan-Yuan
Stankovic, Konstantina M.
Proteome of normal human perilymph and perilymph from people with disabling vertigo
title Proteome of normal human perilymph and perilymph from people with disabling vertigo
title_full Proteome of normal human perilymph and perilymph from people with disabling vertigo
title_fullStr Proteome of normal human perilymph and perilymph from people with disabling vertigo
title_full_unstemmed Proteome of normal human perilymph and perilymph from people with disabling vertigo
title_short Proteome of normal human perilymph and perilymph from people with disabling vertigo
title_sort proteome of normal human perilymph and perilymph from people with disabling vertigo
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6559673/
https://www.ncbi.nlm.nih.gov/pubmed/31185063
http://dx.doi.org/10.1371/journal.pone.0218292
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