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.

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.

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