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Hair cells and spiral ganglion neurons of the mammalian auditory system do not regenerate, and their loss leads to irreversible hearing loss. Aminoglycosides induce auditory hair cell death in vitro, and evidence suggests that phosphatidylinositol-3-kinase/Akt signaling opposes gentamicin toxicity via its downstream target, the protein kinase Akt. We previously demonstrated that somatostatin-a peptide with hormone/neurotransmitter properties-can protect hair cells from gentamicin-induced hair cell death in vitro, and that somatostatin receptors are expressed in the mammalian inner ear. However, it remains unknown how this protective effect is mediated. In the present study, we show a highly significant protective effect of octreotide (a drug that mimics and is more potent than somatostatin) on gentamicin-induced hair cell death, and increased Akt phosphorylation in octreotide-treated organ of Corti explants in vitro. Moreover, we demonstrate that somatostatin receptor-1 knockout mice overexpress somatostatin receptor-2 in the organ of Corti, and are less susceptible to gentamicin-induced hair cell loss than wild-type or somatostatin-1/somatostatin-2 double-knockout mice. Finally, we show that octreotide affects auditory hair cells, enhances spiral ganglion neurite number, and decreases spiral ganglion neurite length.
Science, Octreotide, Protective Agents, Mice, Organ Culture Techniques, Hair Cells, Auditory, Neurites, Animals, Receptors, Somatostatin, Phosphorylation, Hearing Loss, Mice, Knockout, Cell Death, Q, R, Gene Expression Regulation, Medicine, Gentamicins, Spiral Ganglion, Proto-Oncogene Proteins c-akt, Research Article, Signal Transduction
Science, Octreotide, Protective Agents, Mice, Organ Culture Techniques, Hair Cells, Auditory, Neurites, Animals, Receptors, Somatostatin, Phosphorylation, Hearing Loss, Mice, Knockout, Cell Death, Q, R, Gene Expression Regulation, Medicine, Gentamicins, Spiral Ganglion, Proto-Oncogene Proteins c-akt, Research Article, Signal Transduction
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