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Updated: Jul 23, 2025

Data Acquisition and Analysis In Brainstem Evoked Response Audiometry In Mice
Published on: May 10, 2019
RotaRod and acoustic startle reflex performance of two potential mouse models for Meniere's disease
Vidya Babu1, Rose Bahari1, Nora Laban1
1University of Illinois at Chicago College of Medicine, Chicago, Illinois, USA.
Abstract:
Meniere's disease (MD) is a disorder of the inner ear characterized by chronic episodes of vertigo, tinnitus, increased aural pressure, and sensorineural hearing loss. Causes of MD are unknown, but endolymphatic hydrops is a hallmark. In addition, 5%-15% of MD cases have been identified as familial. Whole-genome sequencing studies of individuals with familial MD identified DTNA and FAM136A as candidate genes for autosomal dominant inheritance of MD. Although the exact roles of these genes in MD are unknown, FAM136A encodes a mitochondrial protein, and DTNA encodes a cytoskeletal protein involved in synapse formation and maintenance, important for maintaining the blood-brain barrier. It is also associated with a particular aquaporin. We tested vestibular and auditory function in dtna and fam136a knockout (KO) mice, using RotaRod and startle reflex-based clicker tests, respectively. Three-factor analysis of variance (ANOVA) results indicated that sex, age, and genotype were significantly correlated with reduced mean latencies to fall ("latencies") for male dtna KO mice, while only age was a significant factor for fam136a KO mice. Fam136a KO mice lost their hearing months before WTs (9-11 months vs. 15-20 months). In male dtna KO mice, divergence in mean latencies compared with other genotypes was first evident at 4 months of age, with older males having an even greater decrease. Our results indicate that fam136a gene mutations generate hearing problems, while dtna gene mutations produce balance deficits. Both mouse models should help to elucidate hearing loss and balance-related symptoms associated with MD.
Insights
Gene mutations in FAM136A cause hearing loss, while DTNA gene mutations lead to balance deficits in mouse models, offering insights into Meniere's disease.
Area of Science:
- Genetics
- Neuroscience
- Otolaryngology
Background:
- Meniere's disease (MD) is an inner ear disorder with unknown causes, often featuring vertigo, tinnitus, and hearing loss.
- Familial forms of MD suggest a genetic component, with DTNA and FAM136A identified as candidate genes.
- The specific roles of DTNA and FAM136A in MD pathogenesis remain unclear.
Purpose of the Study:
- To investigate the functional roles of DTNA and FAM136A in auditory and vestibular systems.
- To establish mouse models for studying the genetic basis of Meniere's disease symptoms.
Main Methods:
- Generated knockout (KO) mice for dtna and fam136a genes.
- Assessed vestibular function using the RotaRod test.
- Evaluated auditory function via startle reflex-based clicker tests.
- Analyzed data using three-factor analysis of variance (ANOVA).
Main Results:
- Male dtna KO mice exhibited reduced latency to fall, indicating balance deficits, with effects significant for sex, age, and genotype.
- Fam136a KO mice showed age-dependent hearing loss, occurring earlier than in wild-type (WT) mice.
- DTNA mutations were linked to balance issues, while FAM136A mutations were associated with hearing impairment.
Conclusions:
- FAM136A gene mutations are implicated in hearing problems.
- DTNA gene mutations are linked to balance deficits.
- These mouse models provide valuable tools for understanding MD-related hearing loss and balance disorders.

