Resolution of Cochlear Inflammation: Novel Target for Preventing or Ameliorating Drug-, Noise- and Age-related

Gilda M Kalinec1, Gwen Lomberk2, Raul A Urrutia2

  • 1Laboratory of Auditory Cell Biology, Department of Head and Neck Surgery, David Geffen School of Medicine, University of CaliforniaLos Angeles, Los Angeles, CA, United States.

Insights

Inflammation is linked to hearing loss. Instead of suppressing inflammation, enhancing its natural resolution may prevent cochlear damage from drug-, noise-, and age-related hearing loss (DRHL, NRHL, ARHL).

Area of Science:

  • Otoacoustic emissions
  • Auditory neuroscience
  • Inflammation research

Background:

  • Inflammatory responses are implicated in drug-, noise-, and age-related hearing loss (DRHL, NRHL, ARHL).
  • Current strategies focus on suppressing inflammation, which may have adverse effects.
  • Inflammation is a crucial adaptive response for tissue repair.

Purpose of the Study:

  • To review advances in understanding inflammation resolution in the cochlea.
  • To highlight therapeutic strategies for preventing inflammation-induced cochlear damage.
  • To explore the potential of enhancing inflammation resolution for preventing hearing loss.

Main Methods:

  • Review of recent scientific literature on inflammation resolution.
  • Analysis of pre-clinical models of ototoxicity (cisplatin, aminoglycosides).
  • Discussion of specialized pro-resolving mediators and their functions.

Main Results:

  • Inflammation resolution is an active, regulated process.
  • Specialized pro-resolving mediators (lipoxins, resolvins, protectins, maresins, annexin A1, galectins, adenosine, NO, H2S, CO, acetylcholine, netrin-1) play key roles.
  • Pre-clinical studies show promise for strategies that enhance inflammation resolution.

Conclusions:

  • Improving cochlear inflammation resolution, rather than inhibition, is a promising therapeutic approach.
  • Strategies enhancing resolution may prevent or mitigate DRHL, NRHL, and ARHL.
  • Further research into inflammation resolution pathways could lead to novel treatments for hearing loss.

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