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Published on: May 26, 2021
Measurements of ionic concentrations along with endocochlear potential in wild-type and claudin 14 knockout mice
Yuka Shiraiwa1, Eriko Daikoku1, Masahisa Saito1
1Department of Physiology, Faculty of Medicine, Osaka Medical College, 2-7, Daigaku-machi, Takatsuki, Osaka 569-8686, Japan.
Objective:
To examine whether the changes in endolymphatic ion concentrations were involved in hair cells degeneration in claudin-14 knockout (KO) mice (Cldn14-/-), we measured the endocochlear potential (EP) along with concentrations of K+, Na+, H+, or Ca2+ ([K]e, [Na]e, pHe, [Ca]e) in Cldn14-/-, in which hair cells were selectively damaged, and compared with measurements in wild type mice (Wt).
Methods:
We used the Cldn14-/- from 3 weeks of age, in which the auditory brain responses (ABR) was severely diminished. Using double-barreled ion-selective microelectrodes, we measured [K]e, [Na]e, pHe, and [Ca]e in both Wt and Cldn14-/- at 8-10 weeks of age.
Results:
(1) In Wt, the EP was +92mV. [K]e, [Na]e, pHe, and [Ca]e were 169mM, ∼1.0mM, 7.50, and 395nM, respectively. In the Cldn14-/-, the EP was +96mV. [K]e, [Na]e, pHe, and [Ca]e were 167mM, ∼1.0mM, 7.73, and 179nM, respectively. No significant differences in the above values were observed between Wt and Cldn14-/-. (2) A significant linear correlation between EP and [Ca]e (R=0.93) was observed for both Wt and Cldn14-/-, but no correlation was observed between EP and K+, Na+, or H+.
Conclusion:
These findings suggest that (1) the changes in endolymphatic ion concentrations might not be involved in hair cells degeneration in Cldn14-/-, (2) [Ca]e might be regulated by EP in both Wt and Cldn14-/-.

