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Mechanisms of hair cell death and protection
Alan G Cheng1, Lisa L Cunningham, Edwin W Rubel
1Virginia Merrill Bloedel Hearing Research Center, Department of Otolaryngology-Head and Neck Surgery, University of Washington Medical Center, 1959 NE Pacific Street, Seattle, WA 98195, USA. aglcheng@u.washington.edu
Purpose Of Review:
Sensory hair cells are mechanotransducers of the inner ear that are essential for hearing and balance. Hair cell death commonly occurs following acoustic trauma or exposure to ototoxins, such as the aminoglycoside antibiotics and the antineoplastic agent cisplatin. Loss of these inner ear sensory cells can lead to permanent sensorineural hearing loss, balance disturbance, or both. Currently, the only effective clinical intervention is prevention from exposure to known ototoxic insults. To help improve therapeutic strategies, a better understanding of the molecular mechanisms underlying hair cell degeneration is required. Current knowledge of these cell death mechanisms and potential therapeutic targets are discussed in this review.
Recent Findings:
Studies have shown that caspase-9 and caspase-3 are key mediators of hair cell death induced by noise, aminoglycosides, and cisplatin. The Bcl-2 family consists of a group of proapoptotic and antiapoptotic molecules that act upstream of and regulate caspase activation. Recent studies have shed light on the roles of molecules acting more upstream, including mitogen-activated protein kinases and p53.
Summary:
The mechanisms of sensory hair cell degeneration in response to different ototoxic stimuli share a final common pathway: caspase activation. Inhibition of caspases prevents or delays hair cell death and may preserve hearing/balance function. Inhibition of mitogen-activated protein kinases protects against noise-induced and aminoglycoside-induced but not cisplatin-induced hair cell death, which suggests divergent upstream regulatory mechanisms.
Insights
Sensory hair cell death, crucial for hearing and balance, involves caspase activation. Inhibiting caspases may prevent hair cell loss and preserve function, though upstream triggers vary.
Area of Science:
- Oto-neuroscience
- Cellular biology
- Molecular mechanisms of cell death
Background:
- Sensory hair cells in the inner ear are vital for hearing and balance.
- Hair cell death from acoustic trauma or ototoxins (e.g., aminoglycosides, cisplatin) causes permanent hearing loss and balance issues.
- Current interventions focus on preventing exposure to ototoxic agents.
Purpose of the Study:
- To review the molecular mechanisms underlying sensory hair cell degeneration.
- To identify potential therapeutic targets for preventing hair cell death.
- To understand the shared and divergent pathways of ototoxicity.
Main Methods:
- Review of existing scientific literature on hair cell death mechanisms.
- Analysis of studies investigating molecular mediators of apoptosis in hair cells.
- Examination of the role of caspases, Bcl-2 family proteins, MAPKs, and p53.
Main Results:
- Caspase-9 and caspase-3 are key mediators of hair cell death induced by noise, aminoglycosides, and cisplatin.
- The Bcl-2 family regulates caspase activation.
- Upstream molecules like mitogen-activated protein kinases (MAPKs) and p53 play significant roles.
Conclusions:
- Caspase activation represents a final common pathway for sensory hair cell degeneration.
- Inhibiting caspases can prevent or delay hair cell death, potentially preserving hearing and balance.
- MAPK inhibition shows efficacy against noise and aminoglycoside-induced cell death but not cisplatin-induced, indicating varied upstream regulation.
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