SummaryMice lacking the vesicular glutamate transporter-3 (VGLUT3) are congenitally deaf due to loss of glutamate release at the inner hair cell afferent synapse. Cochlear delivery of VGLUT3 using adeno-associated virus type 1 (AAV1) leads to transgene expression in only inner hair cells (IHCs), despite broader viral uptake. Within 2 weeks of AAV1-VGLUT3 delivery, auditory brainstem response (ABR) thresholds normalize, along with partial rescue of the startle response. Lastly, we demonstrate partial reversal of the morphologic changes seen within the afferent IHC ribbon synapse. These findings represent a successful restoration of hearing by gene replacement in mice, which is a significant advance toward gene therapy of human deafness
Hearing Loss (HL) is the most prevalent sensorineural disorder, affecting 360 million people worldwi...
Because there are currently no biological treatments for deafness, we sought to advance gene therapy...
International audienceAutosomal-dominant sensorineural hearing loss is genetically heterogeneous, wi...
SummaryMice lacking the vesicular glutamate transporter-3 (VGLUT3) are congenitally deaf due to loss...
Genetic loss of VGLUT3 in cochlear inner hair cells results in profound deafness. In this issue of N...
International audienceDFNA25 is an autosomal-dominant and progressive form of human deafness caused ...
Gene therapy for genetic hearing loss is an emerging therapeutic modality for hearing restoration. H...
Efforts to develop gene therapies for hearing loss have been hampered by the lack of safe, efficient...
Genetic hearing loss accounts for up to 50% of prelingual deafness worldwide, yet there are no biolo...
Adeno-associated virus (AAV) is a safe and effective vector for gene therapy for retinal disorders. ...
DFNA25 is an autosomal-dominant and progressive form of human deafness caused by mutations in the SL...
Efforts to develop gene therapies for hearing loss have been hampered by the lack of safe, efficient...
International audienceAutosomal recessive genetic forms (DFNB) account for most cases of profound co...
Normal hearing and synaptic transmission at afferent auditory inner hair cell (IHC) synapses require...
The use of viral vectors for inner ear gene therapy is receiving increased attention for treatment o...
Hearing Loss (HL) is the most prevalent sensorineural disorder, affecting 360 million people worldwi...
Because there are currently no biological treatments for deafness, we sought to advance gene therapy...
International audienceAutosomal-dominant sensorineural hearing loss is genetically heterogeneous, wi...
SummaryMice lacking the vesicular glutamate transporter-3 (VGLUT3) are congenitally deaf due to loss...
Genetic loss of VGLUT3 in cochlear inner hair cells results in profound deafness. In this issue of N...
International audienceDFNA25 is an autosomal-dominant and progressive form of human deafness caused ...
Gene therapy for genetic hearing loss is an emerging therapeutic modality for hearing restoration. H...
Efforts to develop gene therapies for hearing loss have been hampered by the lack of safe, efficient...
Genetic hearing loss accounts for up to 50% of prelingual deafness worldwide, yet there are no biolo...
Adeno-associated virus (AAV) is a safe and effective vector for gene therapy for retinal disorders. ...
DFNA25 is an autosomal-dominant and progressive form of human deafness caused by mutations in the SL...
Efforts to develop gene therapies for hearing loss have been hampered by the lack of safe, efficient...
International audienceAutosomal recessive genetic forms (DFNB) account for most cases of profound co...
Normal hearing and synaptic transmission at afferent auditory inner hair cell (IHC) synapses require...
The use of viral vectors for inner ear gene therapy is receiving increased attention for treatment o...
Hearing Loss (HL) is the most prevalent sensorineural disorder, affecting 360 million people worldwi...
Because there are currently no biological treatments for deafness, we sought to advance gene therapy...
International audienceAutosomal-dominant sensorineural hearing loss is genetically heterogeneous, wi...