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Publication : Apoptosis of type I spiral ganglion neuron cells in Otof-mutant mice.

First Author  Tsuzuki N Year  2023
Journal  Neurosci Lett Volume  803
Pages  137178 PubMed ID  36914046
Mgi Jnum  J:334158 Mgi Id  MGI:7446873
Doi  10.1016/j.neulet.2023.137178 Citation  Tsuzuki N, et al. (2023) Apoptosis of type I spiral ganglion neuron cells in Otof-mutant mice. Neurosci Lett 803:137178
abstractText  Otof, which encodes otoferlin, knockout mice are considered model mice for auditory neuropathy spectrum disorder, which is characterized by an absent auditory brainstem response (ABR) despite preserved distortion product otoacoustic emission (DPOAE). Although otoferlin-deficient mice lack neurotransmitter release at the inner hair cell (IHC) synapse, it remains unclear how the Otof mutation affects spiral ganglions. Thus, we used Otof-mutant mice carrying the Otof(tm1a(KOMP)Wtsi) allele (Otof(tm1a)) and analyzed spiral ganglion neurons (SGNs) in Otof(tm1a/tm1a) mice by immunolabeling type SGNs (SGN-) and type II SGNs (SGN-II). We also examined apoptotic cells in SGNs. Four-week-old Otof(tm1a/tm1a) mice had an absent ABR but normal DPOAEs. The number of SGNs was significantly lower in Otof(tm1a/tm1a) mice on postnatal day 7 (P7), P14, and P28 compared with that of wild-type mice. Moreover, significantly more apoptotic SGNs were observed in Otof(tm1a/tm1a) mice than in wild-type mice on P7, P14, and P28. SGN-IIs were not significantly reduced in Otof(tm1a/tm1a) mice on P7, P14, and P28. No apoptotic SGN-IIs were observed under our experimental conditions. In summary, Otof(tm1a/tm1a) mice showed a reduction in SGNs accompanied by apoptosis of SGN-s even before the onset of hearing. We speculate that the reduction in SGNs with apoptosis is a secondary defect caused by a lack of otoferlin in IHCs. Appropriate glutamatergic synaptic inputs may be important for the survival of SGNs.
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