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Updated: Aug 2, 2026

Cochlear Implantation in the Guinea Pig
Published on: June 15, 2018
Cochlear protection from carbon monoxide exposure by free radical blockers in the guinea pig
L D Fechter1, Y Liu, T A Pearce
1Toxicology Program, College of Pharmacy, University of Oklahoma Health Sciences Center, Oklahoma City 73190, USA.
Abstract:
Acute carbon monoxide exposure produces a significant impairment in high-frequency auditory sensitivity that can be prevented using the N-methyl-D-aspartate receptor blocker MK-801. This finding suggests an excitotoxic component to carbon monoxide ototoxicity and establishes the potential for free radical formation. Free radical scavengers and inhibitors are protective in many organs, including the brain and cochlea, during hypoxic events such as ischemia/reperfusion and, in the cochlea, during noise exposure. This study evaluated the protection afforded by two such agents, phenyl-n-tert-butyl-nitrone (PBN), which acts as a general free radical scavenger, and allopurinol, which acts as a free radical inhibitor specific to the xanthine oxidase metabolic pathway. Guinea pigs were pretreated with PBN (100 mg/kg i.p.), allopurinol (100 mg/kg i.p.), or saline 1 hr prior to exposure to carbon monoxide (35 ml/kg i.p.) or to an equal volume of air. They were monitored at 15, 30, and 60 min after carbon monoxide exposure for alterations in compound action potential threshold and cochlear microphonic amplitude. The groups receiving carbon monoxide alone displayed characteristic compound action potential threshold elevations particularly at the higher test frequencies (16-40 kHz), consistent with earlier studies; no loss of cochlear microphonic amplitude was exhibited. Both free radical inhibitors, PBN and allopurinol, blocked loss of auditory threshold sensitivity produced by carbon monoxide. These data suggest that free radical generation may play a significant role in the impairment of high-frequency auditory sensitivity resulting from carbon monoxide.
Insights
Acute carbon monoxide exposure harms high-frequency hearing, but free radical inhibitors like PBN and allopurinol offer protection. This suggests free radicals contribute to carbon monoxide-induced hearing loss.
Area of Science:
- Ototoxicity Research
- Neuroscience
- Auditory Physiology
Background:
- Acute carbon monoxide (CO) exposure impairs high-frequency auditory sensitivity.
- N-methyl-D-aspartate receptor blockade prevents this CO-induced ototoxicity, suggesting excitotoxicity.
- Free radical formation is implicated in CO ototoxicity, similar to hypoxic events.
Purpose of the Study:
- To evaluate the protective effects of free radical scavengers against carbon monoxide ototoxicity.
- To investigate the role of phenyl-n-tert-butyl-nitrone (PBN) and allopurinol in preventing CO-induced hearing loss.
Main Methods:
- Guinea pigs were pretreated with PBN, allopurinol, or saline.
- Animals were exposed to carbon monoxide or air.
- Auditory sensitivity (compound action potential threshold) and cochlear microphonics were assessed post-exposure.
Main Results:
- Carbon monoxide exposure significantly elevated auditory thresholds, especially at high frequencies.
- Neither PBN nor allopurinol pretreatment altered cochlear microphonic amplitude.
- Both PBN and allopurinol effectively blocked the loss of auditory threshold sensitivity caused by carbon monoxide.
Conclusions:
- Free radical generation plays a significant role in high-frequency auditory sensitivity impairment from carbon monoxide exposure.
- PBN and allopurinol demonstrate protective effects against carbon monoxide ototoxicity.
- Targeting free radical pathways may offer therapeutic strategies for CO-induced hearing damage.

