In mammals, damage to sensory receptor cells (hair cells) of the inner ear results in permanent sensorineural hearing loss. Here, we investigated whether postnatal mouse inner ear progenitor/stem cells (mIESCs) are viable after transplantation into the basal turns of neomycin-injured guinea pig cochleas. We also examined the effects of mIESC transplantation on auditory functions. Eight adult female Cavia porcellus guinea pigs (250-350g) were deafened by intratympanic neomycin delivery. After 7 days, the animals were randomly divided in two groups. The study group (n=4) received transplantation of LacZ-positive mIESCs in culture medium into the scala tympani. The control group (n=4) received culture medium only. At 2 weeks after transplantat...
Technologies such as hearing aids and cochlear implants do provide useful benefit to a large number ...
A practical consideration in the development of cellular therapy technology for the inner ear is the...
The mammalian inner ear has very limited ability to regenerate lost sensory hair cells. This deficie...
Introdução: Em mamíferos, a morte das células sensoriais (células ciliadas) da orelha interna acarre...
ObjectivesIn mammals, cochlear hair cell loss is irreversible and may result in a permanent sensorin...
none5Objectives. Mesenchymal stem cells (MSC) are currently being investigated in numerous pre-clini...
Hearing loss is a sensory deprivation that can affect the quality of life. Currently, only rehabilit...
Noise exposure causes damage of multiple cochlear cell types producing permanent hearing loss with i...
Noise exposure causes damage of multiple cochlear cell types producing permanent hearing loss with i...
Abstract\ud \ud Background\ud Culturing otospheres fro...
Abstract Background Hearing loss affects 25% of the population at ages 60–69 years. Loss of the hair...
We investigated the fate of human cord blood CD133+ hematopoietic stem cells (HSC) transplanted intr...
none5Mesenchymal stem cells (MSC) are currently being investigated in numerous pre-clinical and clin...
The mammalian auditory system is sensitive to genetic disorders, aging and injuries caused by overst...
We investigated whether human cord blood CD133+ hematopoietic stem cells (HSC) engraft the cochlea...
Technologies such as hearing aids and cochlear implants do provide useful benefit to a large number ...
A practical consideration in the development of cellular therapy technology for the inner ear is the...
The mammalian inner ear has very limited ability to regenerate lost sensory hair cells. This deficie...
Introdução: Em mamíferos, a morte das células sensoriais (células ciliadas) da orelha interna acarre...
ObjectivesIn mammals, cochlear hair cell loss is irreversible and may result in a permanent sensorin...
none5Objectives. Mesenchymal stem cells (MSC) are currently being investigated in numerous pre-clini...
Hearing loss is a sensory deprivation that can affect the quality of life. Currently, only rehabilit...
Noise exposure causes damage of multiple cochlear cell types producing permanent hearing loss with i...
Noise exposure causes damage of multiple cochlear cell types producing permanent hearing loss with i...
Abstract\ud \ud Background\ud Culturing otospheres fro...
Abstract Background Hearing loss affects 25% of the population at ages 60–69 years. Loss of the hair...
We investigated the fate of human cord blood CD133+ hematopoietic stem cells (HSC) transplanted intr...
none5Mesenchymal stem cells (MSC) are currently being investigated in numerous pre-clinical and clin...
The mammalian auditory system is sensitive to genetic disorders, aging and injuries caused by overst...
We investigated whether human cord blood CD133+ hematopoietic stem cells (HSC) engraft the cochlea...
Technologies such as hearing aids and cochlear implants do provide useful benefit to a large number ...
A practical consideration in the development of cellular therapy technology for the inner ear is the...
The mammalian inner ear has very limited ability to regenerate lost sensory hair cells. This deficie...