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Published on: August 30, 2019
Peripheral Vestibular Dysfunction Is a Common Occurrence in Children With Non-syndromic and Syndromic Genetic Hearing
Alicia Wang1, A Eliot Shearer1,2, Guang Wei Zhou1,2
1Department of Otolaryngology and Communication Enhancement, Boston Children's Hospital, Boston, MA, United States.
Insights
Peripheral vestibular loss (PVL) is common in children with genetic hearing loss (HL). Over half of patients studied showed PVL, highlighting its importance in pediatric audiology and vestibular research.
Area of Science:
- Pediatric Otolaryngology
- Neuroscience
- Genetics
Background:
- Hearing loss (HL) is the most common human sensory deficit, often co-occurring with peripheral vestibular loss (PVL).
- PVL can impair motor development and quality of life in children, yet its extent in genetic pediatric HL is poorly understood.
- Vestibular hair cells are crucial in models of deafness, necessitating a clearer understanding of their dysfunction in genetic HL.
Purpose of the Study:
- To investigate the prevalence and characteristics of peripheral vestibular loss (PVL) in children with genetically defined hearing loss (HL).
- To assess the association between syndromic and non-syndromic genetic HL and the occurrence of PVL.
- To provide insights into vestibular hair cell dysfunction in pediatric genetic hearing loss.
Main Methods:
- Retrospective analysis of 44 children with known genetic HL undergoing preoperative vestibular testing for cochlear implantation (June 2014-July 2020).
- Vestibular assessment included videonystagmography, rotary chair, video head impulse testing, and vestibular evoked myogenic potentials.
- Etiology of HL was determined via comprehensive clinical and genetic evaluations.
Main Results:
- Overall, 52% (23/44) of children exhibited PVL.
- PVL was more frequent in syndromic HL (60%) than non-syndromic HL (46%), though not statistically significant (p=0.3).
- The occurrence of PVL varied depending on the specific gene implicated in the hearing loss.
Conclusions:
- Peripheral vestibular loss (PVL) is a frequent comorbidity in children with both syndromic and non-syndromic genetic hearing loss.
- Understanding vestibular hair cell dysfunction is critical for clinical management and research, including the use of animal and in vitro models.
- This study underscores the importance of routine vestibular evaluation in pediatric patients with genetic hearing loss.
Abstract:
Hearing loss (HL) is the most common sensory deficit in humans and is frequently accompanied by peripheral vestibular loss (PVL). While often overlooked, PVL is an important sensory dysfunction that may impair development of motor milestones in children and can have a significant negative impact on quality of life. In addition, many animal and in vitro models of deafness use vestibular hair cells as a proxy to study cochlear hair cells. The extent of vestibular end organ dysfunction associated with genetic pediatric hearing loss is not well-understood. We studied children with a known genetic cause of hearing loss who underwent routine preoperative vestibular testing prior to cochlear implantation between June 2014 and July 2020. Vestibular testing included videonystagmography, rotary chair, video head impulse testing, and/or vestibular evoked myogenic potentials. Etiology of HL was determined through history, physical examination, imaging, laboratory testing, and/or genetic testing. Forty-four children (21 female/23 male) met inclusion criteria; 24 had genetic non-syndromic and 20 had genetic syndromic forms of HL. Mean age at the time of testing was 2.8 ± 3.8 years (range 7 months-17 years). The most common cause of non-syndromic HL was due to mutations in GJB2 (n = 13) followed by MYO15A (3), MYO6 (2), POU3F4 (2), TMPRSS3 (1), CDH23 (1), TMC1 (1), and ESRRB (1). The most common forms of syndromic HL were Usher syndrome (4) and Waardenburg (4), followed by SCID/reticular dysgenesis (3), CHARGE (2), CAPOS (1), Coffin-Siris (1), Jervell and Lange-Nielsen (1), Noonan (1), peroxisome biogenesis disorder (1), Perrault (1), and Trisomy 21 (1). Overall, 23 patients (52%) had PVL. A larger proportion of children with syndromic forms of HL had PVL (12/20, 60%) compared with children with genetic non-syndromic HL (11/24, 46%), though without statistical significant (p = 0.3). The occurrence of PVL varied by affected gene. In conclusion, PVL is a common finding in children with syndromic and non-syndromic genetic HL undergoing vestibular evaluation prior to cochlear implantation. Improved understanding of the molecular physiology of vestibular hair cell dysfunction is important for clinical care as well as research involving vestibular hair cells in model organisms and in vitro models.
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