TY - JOUR
T1 - Connexin 26 null mice exhibit spiral ganglion degeneration that can be blocked by BDNF gene therapy
AU - Takada, Yohei
AU - Beyer, Lisa A.
AU - Swiderski, Donald L.
AU - O'Neal, Aubrey L.
AU - Prieskorn, Diane M.
AU - Shivatzki, Shaked
AU - Avraham, Karen B.
AU - Raphael, Yehoash
N1 - Funding Information:
The Ad.BDNF was kindly provided by Dr. Adriana Di Polo, University of Montreal. We would like to thank Hideto Fukui, Yong Ho Park and Hiu Tung (Candy) Wong for assistance and helpful comments on this paper. This work was supported by the Berte and Alan Hirschfield Foundation (Y.R. and K.B.A.), the R. Jamison and Betty Williams Professorship (Y.R.), I-CORE Gene Regulation in Complex Human Disease Center No. 41/11 (K.B.A.), and by NIH/NIDCD Grants R01-DC010412 , R01-DC007634 , P30-DC05188 (Y.R.) and R01-DC011835 (K.B.A.).
PY - 2014/3
Y1 - 2014/3
N2 - Mutations in the connexin 26 gene (GJB2) are the most common genetic cause of deafness, leading to congenital bilateral non-syndromic sensorineural hearing loss. Here we report the generation of a mouse model for a connexin 26 (Cx26) mutation, in which cre-Sox10 drives excision of the Cx26 gene from non-sensory cells flanking the auditory epithelium. We determined that these conditional knockout mice, designated Gjb2-CKO, have a severe hearing loss. Immunocytochemistry of the auditory epithelium confirmed absence of Cx26 in the non-sensory cells. Histology of the organ of Corti and the spiral ganglion neurons (SGNs) performed at ages 1, 3, or 6 months revealed that in Gjb2-CKO mice, the organ of Corti began to degenerate in the basal cochlear turn at an early stage, and the degeneration rapidly spread to the apex. In addition, the density of SGNs in Rosenthal's canal decreased rapidly along a gradient from the base of the cochlea to the apex, where some SGNs survived until at least 6 months of age. Surviving neurons often clustered together and formed clumps of cells in the canal. We then assessed the influence of brain derived neurotrophic factor (BDNF) gene therapy on the SGNs of Gjb2-CKO mice by inoculating Adenovirus with the BDNF gene insert (Ad.BDNF) into the base of the cochlea via the scala tympani or scala media. We determined that over-expression of BDNF beginning around 1 month of age resulted in a significant rescue of neurons in Rosenthal's canal of the cochlear basal turn but not in the middle or apical portions. This data may be used to design therapies for enhancing the SGN physiological status in all GJB2 patients and especially in a sub-group of GJB2 patients where the hearing loss progresses due to ongoing degeneration of the auditory nerve, thereby improving the outcome of cochlear implant therapy in these ears.
AB - Mutations in the connexin 26 gene (GJB2) are the most common genetic cause of deafness, leading to congenital bilateral non-syndromic sensorineural hearing loss. Here we report the generation of a mouse model for a connexin 26 (Cx26) mutation, in which cre-Sox10 drives excision of the Cx26 gene from non-sensory cells flanking the auditory epithelium. We determined that these conditional knockout mice, designated Gjb2-CKO, have a severe hearing loss. Immunocytochemistry of the auditory epithelium confirmed absence of Cx26 in the non-sensory cells. Histology of the organ of Corti and the spiral ganglion neurons (SGNs) performed at ages 1, 3, or 6 months revealed that in Gjb2-CKO mice, the organ of Corti began to degenerate in the basal cochlear turn at an early stage, and the degeneration rapidly spread to the apex. In addition, the density of SGNs in Rosenthal's canal decreased rapidly along a gradient from the base of the cochlea to the apex, where some SGNs survived until at least 6 months of age. Surviving neurons often clustered together and formed clumps of cells in the canal. We then assessed the influence of brain derived neurotrophic factor (BDNF) gene therapy on the SGNs of Gjb2-CKO mice by inoculating Adenovirus with the BDNF gene insert (Ad.BDNF) into the base of the cochlea via the scala tympani or scala media. We determined that over-expression of BDNF beginning around 1 month of age resulted in a significant rescue of neurons in Rosenthal's canal of the cochlear basal turn but not in the middle or apical portions. This data may be used to design therapies for enhancing the SGN physiological status in all GJB2 patients and especially in a sub-group of GJB2 patients where the hearing loss progresses due to ongoing degeneration of the auditory nerve, thereby improving the outcome of cochlear implant therapy in these ears.
UR - https://www.scopus.com/pages/publications/84891766892
U2 - 10.1016/j.heares.2013.11.009
DO - 10.1016/j.heares.2013.11.009
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AN - SCOPUS:84891766892
SN - 0378-5955
VL - 309
SP - 124
EP - 135
JO - Hearing Research
JF - Hearing Research
ER -