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Strategies for Tracking Anastasis, A Cell Survival Phenomenon that Reverses Apoptosis
Published on: February 16, 2015
An otoprotective role for the apoptosis inhibitor protein survivin
S K Knauer1, U-R Heinrich, C Bier
1Department of Molecular and Cellular Oncology, University Hospital of Mainz, Mainz, Germany.
Abstract:
Hearing impairment caused by ototoxic insults, such as noise or gentamicin is a worldwide health problem. As the molecular circuitries involved are not yet resolved, current otoprotective therapies are rather empirical than rational. Here, immunohistochemistry and western blotting showed that the cytoprotective protein survivin is expressed in the human and guinea pig cochlea. In the guinea pig model, moderate noise exposure causing only a temporary hearing impairment transiently evoked survivin expression in the spiral ligament, nerve fibers and the organ of Corti. Mechanistically, survivin upregulation may involve nitric oxide (NO)-induced Akt signaling, as enhanced expression of the endothelial NO synthase and phosphorylated Akt were detectable in some surviving-positive cell types. In contrast, intratympanic gentamicin injection inducing cell damage and permanent hearing loss correlated with attenuated survivin levels in the cochlea. Subsequently, the protective activity of the human and the guinea pig survivin orthologs against the ototoxin gentamicin was demonstrated by ectopic overexpression and RNAi-mediated depletion studies in auditory cells in vitro. These data suggest that survivin represents an innate cytoprotective resistor against stress conditions in the auditory system. The pharmacogenetic modulation of survivin may thus provide the conceptual basis for the rational design of novel therapeutic otoprotective strategies.
Insights
Survivin, a cytoprotective protein, is expressed in the cochlea and may protect against hearing loss from noise or gentamicin. Modulating survivin could lead to new otoprotective therapies.
Area of Science:
- Ototolaryngology
- Cell Biology
- Molecular Medicine
Background:
- Hearing impairment from ototoxic insults is a global health issue.
- Current otoprotective therapies are empirical due to unresolved molecular mechanisms.
- Survivin, a cytoprotective protein, is investigated for its role in cochlear protection.
Purpose of the Study:
- To investigate the expression and function of survivin in the cochlea.
- To explore the role of survivin in response to ototoxic insults like noise and gentamicin.
- To assess the potential of survivin as a therapeutic target for hearing loss.
Main Methods:
- Immunohistochemistry and Western blotting in human and guinea pig cochlea.
- Guinean pig model of noise-induced and gentamicin-induced hearing impairment.
- In vitro studies using auditory cells with survivin overexpression and RNAi.
Main Results:
- Survivin is expressed in the human and guinea pig cochlea.
- Noise exposure transiently increased survivin expression, potentially via nitric oxide (NO)-induced Akt signaling.
- Gentamicin-induced hearing loss correlated with decreased survivin levels.
- Survivin protected auditory cells against gentamicin toxicity in vitro.
Conclusions:
- Survivin acts as an innate cytoprotective factor in the auditory system.
- Pharmacogenetic modulation of survivin offers a rational basis for developing novel otoprotective strategies.
- Targeting survivin may provide effective treatments for hearing impairment.
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