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Current Response in CaV1.3–/– Mouse Vestibular and Cochlear Hair Cells

Articolo
Data di Pubblicazione:
2021
Abstract:
Signal transmission by sensory auditory and vestibular hair cells relies upon Ca2+- dependent exocytosis of glutamate. The Ca2+ current in mammalian inner ear hair cells is predominantly carried through CaV1.3 voltage-gated Ca2+ channels. Despite this, CaV1.3 deficient mice (CaV1.3−/−) are deaf but do not show any obvious vestibular phenotype. Here, we compared the Ca2+ current (ICa) in auditory and vestibular hair cells from wild-type and CaV1.3−/− mice, to assess whether differences in the size of the residual ICa could explain, at least in part, the two phenotypes. Using 5 mM extracellular Ca2+ and near-body temperature conditions, we investigated the cochlear primary sensory receptors inner hair cells (IHCs) and both type I and type II hair cells of the semicircular canals. We found that the residual ICa in both auditory and vestibular hair cells from CaV1.3−/− mice was less than 20% (12–19%, depending on the hair cell type and age investigated) compared to controls, indicating a comparable expression of CaV1.3 Ca2+ channels in both sensory organs. We also showed that, different from IHCs, type I and type II hair cells from CaV1.3−/− mice were able to acquire the adult-like K+ current profile in their basolateral membrane. Intercellular K+ accumulation was still present in CaV1.3−/− mice during IK,L activation, suggesting that the K+-based, non-exocytotic, afferent transmission is still functional in these mice. This non-vesicular mechanism might contribute to the apparent normal vestibular functions in CaV1.3−/− mice.
Tipologia CRIS:
1.1 Articolo in rivista
Keywords:
auditory, vestibular, development, calcium current, potassium current, hair cells
Elenco autori:
Manca, Marco; Yen, Piece; Spaiardi, Paolo; Russo, Giancarlo; Giunta, Roberta; Johnson, Stuart L.; Marcotti, Walter; Masetto, Sergio
Autori di Ateneo:
GIUNTA ROBERTA
MASETTO SERGIO
RUSSO GIANCARLO
SPAIARDI PAOLO
Link alla scheda completa:
https://iris.unipv.it/handle/11571/1445914
Pubblicato in:
FRONTIERS IN NEUROSCIENCE
Journal
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Dati Generali

URL

https://www.frontiersin.org/articles/10.3389/fnins.2021.749483/full
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