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Genetics and the Individualized Therapy of Vestibular Disorders

Background: Vestibular disorders (VDs) are a clinically divergent group of conditions that stem from pathology at the level of the inner ear, vestibulocochlear nerve, or central vestibular pathway. No etiology can be identified in the majority of patients with VDs. Relatively few families have been...

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Autores principales: Mei, Christine, Dong, Hongsong, Nisenbaum, Eric, Thielhelm, Torin, Nourbakhsh, Aida, Yan, Denise, Smeal, Molly, Lundberg, Yesha, Hoffer, Michael E., Angeli, Simon, Telischi, Fred, Nie, Guohui, Blanton, Susan H., Liu, Xuezhong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7892966/
https://www.ncbi.nlm.nih.gov/pubmed/33613440
http://dx.doi.org/10.3389/fneur.2021.633207
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author Mei, Christine
Dong, Hongsong
Nisenbaum, Eric
Thielhelm, Torin
Nourbakhsh, Aida
Yan, Denise
Smeal, Molly
Lundberg, Yesha
Hoffer, Michael E.
Angeli, Simon
Telischi, Fred
Nie, Guohui
Blanton, Susan H.
Liu, Xuezhong
author_facet Mei, Christine
Dong, Hongsong
Nisenbaum, Eric
Thielhelm, Torin
Nourbakhsh, Aida
Yan, Denise
Smeal, Molly
Lundberg, Yesha
Hoffer, Michael E.
Angeli, Simon
Telischi, Fred
Nie, Guohui
Blanton, Susan H.
Liu, Xuezhong
author_sort Mei, Christine
collection PubMed
description Background: Vestibular disorders (VDs) are a clinically divergent group of conditions that stem from pathology at the level of the inner ear, vestibulocochlear nerve, or central vestibular pathway. No etiology can be identified in the majority of patients with VDs. Relatively few families have been reported with VD, and so far, no causative genes have been identified despite the fact that more than 100 genes have been identified for inherited hearing loss. Inherited VDs, similar to deafness, are genetically heterogeneous and follow Mendelian inheritance patterns with all modes of transmission, as well as multifactorial inheritance. With advances in genetic sequencing, evidence of familial clustering in VD has begun to highlight the genetic causes of these disorders, potentially opening up new avenues of treatment, particularly in Meniere's disease and disorders with comorbid hearing loss, such as Usher syndrome. In this review, we aim to present recent findings on the genetics of VDs, review the role of genetic sequencing tools, and explore the potential for individualized medicine in the treatment of these disorders. Methods: A search of the PubMed database was performed for English language studies relevant to the genetic basis of and therapies for vestibular disorders, using search terms including but not limited to: “genetics,” “genomics,” “vestibular disorders,” “hearing loss with vestibular dysfunction,” “individualized medicine,” “genome-wide association studies,” “precision medicine,” and “Meniere's syndrome.” Results: Increasing numbers of studies on vestibular disorder genetics have been published in recent years. Next-generation sequencing and new genetic tools are being utilized to unearth the significance of the genomic findings in terms of understanding disease etiology and clinical utility, with growing research interest being shown for individualized gene therapy for some disorders. Conclusions: The genetic knowledge base for vestibular disorders is still in its infancy. Identifying the genetic causes of balance problems is imperative in our understanding of the biology of normal function of the vestibule and the disease etiology and process. There is an increasing effort to use new and efficient genetic sequencing tools to discover the genetic causes for these diseases, leading to the hope for precise and personalized treatment for these patients.
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spelling pubmed-78929662021-02-20 Genetics and the Individualized Therapy of Vestibular Disorders Mei, Christine Dong, Hongsong Nisenbaum, Eric Thielhelm, Torin Nourbakhsh, Aida Yan, Denise Smeal, Molly Lundberg, Yesha Hoffer, Michael E. Angeli, Simon Telischi, Fred Nie, Guohui Blanton, Susan H. Liu, Xuezhong Front Neurol Neurology Background: Vestibular disorders (VDs) are a clinically divergent group of conditions that stem from pathology at the level of the inner ear, vestibulocochlear nerve, or central vestibular pathway. No etiology can be identified in the majority of patients with VDs. Relatively few families have been reported with VD, and so far, no causative genes have been identified despite the fact that more than 100 genes have been identified for inherited hearing loss. Inherited VDs, similar to deafness, are genetically heterogeneous and follow Mendelian inheritance patterns with all modes of transmission, as well as multifactorial inheritance. With advances in genetic sequencing, evidence of familial clustering in VD has begun to highlight the genetic causes of these disorders, potentially opening up new avenues of treatment, particularly in Meniere's disease and disorders with comorbid hearing loss, such as Usher syndrome. In this review, we aim to present recent findings on the genetics of VDs, review the role of genetic sequencing tools, and explore the potential for individualized medicine in the treatment of these disorders. Methods: A search of the PubMed database was performed for English language studies relevant to the genetic basis of and therapies for vestibular disorders, using search terms including but not limited to: “genetics,” “genomics,” “vestibular disorders,” “hearing loss with vestibular dysfunction,” “individualized medicine,” “genome-wide association studies,” “precision medicine,” and “Meniere's syndrome.” Results: Increasing numbers of studies on vestibular disorder genetics have been published in recent years. Next-generation sequencing and new genetic tools are being utilized to unearth the significance of the genomic findings in terms of understanding disease etiology and clinical utility, with growing research interest being shown for individualized gene therapy for some disorders. Conclusions: The genetic knowledge base for vestibular disorders is still in its infancy. Identifying the genetic causes of balance problems is imperative in our understanding of the biology of normal function of the vestibule and the disease etiology and process. There is an increasing effort to use new and efficient genetic sequencing tools to discover the genetic causes for these diseases, leading to the hope for precise and personalized treatment for these patients. Frontiers Media S.A. 2021-02-05 /pmc/articles/PMC7892966/ /pubmed/33613440 http://dx.doi.org/10.3389/fneur.2021.633207 Text en Copyright © 2021 Mei, Dong, Nisenbaum, Thielhelm, Nourbakhsh, Yan, Smeal, Lundberg, Hoffer, Angeli, Telischi, Nie, Blanton and Liu. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Neurology
Mei, Christine
Dong, Hongsong
Nisenbaum, Eric
Thielhelm, Torin
Nourbakhsh, Aida
Yan, Denise
Smeal, Molly
Lundberg, Yesha
Hoffer, Michael E.
Angeli, Simon
Telischi, Fred
Nie, Guohui
Blanton, Susan H.
Liu, Xuezhong
Genetics and the Individualized Therapy of Vestibular Disorders
title Genetics and the Individualized Therapy of Vestibular Disorders
title_full Genetics and the Individualized Therapy of Vestibular Disorders
title_fullStr Genetics and the Individualized Therapy of Vestibular Disorders
title_full_unstemmed Genetics and the Individualized Therapy of Vestibular Disorders
title_short Genetics and the Individualized Therapy of Vestibular Disorders
title_sort genetics and the individualized therapy of vestibular disorders
topic Neurology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7892966/
https://www.ncbi.nlm.nih.gov/pubmed/33613440
http://dx.doi.org/10.3389/fneur.2021.633207
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