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Updated: Sep 26, 2026

Trans-Tympanic Drug Delivery for the Treatment of Ototoxicity
Published on: March 16, 2018
Evidence of a Common Pathway in Noise-Induced Hearing Loss and Carboplatin Ototoxicity
Donald Henderson1, Bohua Hu, Sandra McFadden
1Center for Hearing and Deafness, 215 Parker Hall, State University of New York at Buffalo, Buffalo, NY 14214, USA.
Abstract:
In spite of the differences in the nature of the insult, the hearing loss from ototoxic drugs and noise exposure share a number of similarities in cochlear pathology. This paper explores the common factors between noise-induced hearing loss and ototoxicity by experimentally manipulating cochlear glutathione (GSH). In the first experiment, chinchillas were treated with a drop of saline (50 &mgr;l) on the round window of one ear and a drop of buthionine sulfoximine (BSO, 50 &mgr;l of 200 mM) on the other ear. BSO is a drug that blocks GSH synthesis and it was hypothesised that GSH-depressed ears would be more vulnerable to noise. Six hours after treatment, the animals were exposed to a 105 dB 4 kHz octave band noise for 4 hours, then a second dose of BSO was applied 2 hours later. The BSO treated ears showed more temporary threshold shifts and reduced GSH staining at day 4 post exposure, but there was no BSO effect in terms of greater permanent threshold shift (PTS) or hair cell loss. In the second experiment, chinchillas were pretreated with BSO and 3 days later were given either a single dose of carboplatin (25 mg/kg i.p.), a double dose (day 3 and 7) or only BSO. Chinchillas that received BSO and the double dose of carboplatin had significantly greater loss of inner and outer hair cells than the carboplatin chinchillas. In addition, the BSO and carboplatin chinchillas also had larger decreases in evoked response amplitudes suggesting that GSH depletion potentiated the ototoxicity of carboplatin. These results are discussed in terms of the role of reactive oxygen species in creating hearing loss and the potential protective role of glutathione.
Insights
This study shows that depleting glutathione (GSH) in chinchillas increases vulnerability to noise-induced hearing loss and potentiates carboplatin ototoxicity, highlighting GSH's protective role.
Area of Science:
- Ototoxicity and Auditory Neuroscience
- Cellular and Molecular Biology
Background:
- Hearing loss from ototoxic drugs and noise share cochlear pathology similarities.
- Glutathione (GSH) is a key cellular antioxidant with a potential role in protecting against hearing damage.
Purpose of the Study:
- To investigate the common mechanisms of noise-induced hearing loss and ototoxicity.
- To explore the role of cochlear glutathione (GSH) in protecting against hearing damage.
Main Methods:
- Chinchillas were treated with buthionine sulfoximine (BSO) to deplete cochlear GSH.
- Animals were exposed to noise or carboplatin to assess hearing loss and hair cell damage.
- GSH levels and auditory function were measured post-insult.
Main Results:
- BSO-treated ears showed temporary threshold shifts and reduced GSH staining after noise exposure, but no permanent threshold shift or hair cell loss.
- GSH depletion potentiated carboplatin ototoxicity, leading to significantly greater hair cell loss and reduced evoked response amplitudes.
- These findings suggest GSH depletion exacerbates ototoxic damage.
Conclusions:
- Cochlear glutathione depletion increases susceptibility to noise-induced temporary hearing loss.
- Glutathione depletion potentiates the ototoxic effects of carboplatin, indicating a protective role for GSH.
- Reactive oxygen species likely mediate hearing loss, and GSH may offer protection.
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