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Updated: Aug 22, 2026

Cochlear Surface Preparation in the Adult Mouse
Published on: November 6, 2019
Aging Alters Hair Cell Physiological Properties in Mice With Late-Onset Age-Related Hearing Loss
Piece Yen1, Adam J Carlton1, Andrew O'Connor1
1School of Biosciences, University of Sheffield, Sheffield, UK.
None:
Mammalian cochlear hair cells convert acoustic stimuli into electrical signals, which are relayed to the central auditory pathway via auditory neurons. Progressive loss of hair cells and their synapses is a characteristic of age-related hearing loss (ARHL), but the underlying mechanisms remain poorly understood. In this study, we tested the hypothesis that hair cell physiological properties change with age in CBA/CaJ mice, a strain known for its slow ARHL progression. We found that hair cell size began to decrease from 10 months of age, well before detectable increase in hearing thresholds from auditory brainstem responses. This structural change was associated with a significant decrease in the size of the basolateral membrane current, in particular that carried by the large conductance calcium-activated potassium (BK) channel currents (IK,f) in the apical inner hair cells (IHCs). However, the size of the mechanoelectrical transducer (MET) current measured in the IHCs remained unaffected at least up to 22 months of age. Our results provide clear evidence of an early change in the physiological properties of apical IHCs with age, which precedes measurable hearing loss, suggesting that these cellular deficits might define a distinct pathological route in the CBA/CaJ mice.
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