Near-infrared-light pre-treatment attenuates noise-induced hearing loss in mice

Dietmar Basta1, Moritz Gröschel1, Ira Strübing1

  • 1Department of ENT at ukb, Charité Medical School, University of Berlin, Berlin, Germany.

Peerj
|June 30, 2020
PubMed

Insights

A single near-infrared light (NIR) pre-treatment effectively protects against noise induced hearing loss (NIHL) by preserving cochlear structures. A 10-minute NIR exposure before noise demonstrated optimal protection, suggesting a novel preventative strategy.

Area of Science:

  • Otolaryngology
  • Neuroscience
  • Biomedical Engineering

Background:

  • Noise induced hearing loss (NIHL) results in cochlear hair cell and spiral ganglion neuron reduction.
  • Near-infrared light (NIR) influences cellular apoptosis and has shown potential in preventing NIHL when applied post-noise exposure.
  • The efficacy of a single NIR treatment *before* noise exposure for NIHL prevention remains unexplored.

Purpose of the Study:

  • To investigate the protective effects of a single, pre-emptive near-infrared light (NIR) treatment against noise induced hearing loss (NIHL).
  • To determine the optimal duration of NIR pre-treatment for mitigating NIHL.
  • To assess NIR's impact on auditory threshold shifts and cochlear hair cell survival.

Main Methods:

  • Adult NMRI mice underwent pre-treatment with 808 nm NIR light for varying durations (5-40 minutes) before noise exposure.
  • Noise exposure involved 30 minutes of broad band noise (5-20 kHz) at 115 dB SPL.
  • Auditory Brainstem Response (ABR) recordings and cochlear hair cell counts were analyzed two weeks post-noise exposure.

Main Results:

  • NIR pre-treated animals exhibited significantly lower ABR threshold shifts compared to controls (p < 0.05).
  • A 10-minute NIR pre-treatment showed optimal protection across the entire frequency range.
  • NIR pre-treatment did not significantly affect outer hair cell loss but preserved inner hair cells.

Conclusions:

  • A single NIR pre-treatment offers substantial protection against NIHL, preserving cochlear structures.
  • 10 minutes of NIR pre-exposure appears to be the optimal dosage in this experimental model.
  • These findings suggest NIR pre-treatment is a promising strategy for protecting hearing, particularly in otoneurosurgical contexts.

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