Perilymph pharmacokinetics of locally-applied gentamicin in the guinea pig

A N Salt1, J J Hartsock1, R M Gill1

  • 1Department of Otolaryngology, Washington University School of Medicine, 660 South Euclid Avenue, St Louis MO, USA.

Hearing Research
|October 12, 2016
PubMed

Insights

Intratympanic gentamicin therapy for Meniere

Area of Science:

  • Oto-neurology
  • Pharmacokinetics
  • Inner ear physiology

Background:

  • Intratympanic gentamicin is a common treatment for Meniere's disease vestibular symptoms.
  • Current dosing is empirical, with limited understanding of gentamicin's inner ear distribution and kinetics.
  • Knowledge gaps exist regarding gentamicin's entry, concentration, and time course within the inner ear following local application.

Purpose of the Study:

  • To investigate the distribution and kinetics of gentamicin within the inner ear after intratympanic administration.
  • To quantify gentamicin entry routes (round window vs. stapes) and elimination in perilymph.
  • To correlate gentamicin distribution with potential vestibulotoxicity and cochleotoxicity.

Main Methods:

  • Gentamicin was applied to the round window niche (20 μL of 40 mg/ml solution).
  • Sequential perilymph samples were collected from the lateral semi-circular canal (LSCC) over 1-4 hours.
  • Perilymph elimination kinetics were determined by injecting gentamicin into the LSCC and monitoring concentration decline.

Main Results:

  • Gentamicin concentrations were highest in the vestibule and lower in scala tympani.
  • Gentamicin was retained well in scala vestibuli and vestibule but declined rapidly in scala tympani.
  • Quantitative analysis indicated 57% entry via the round window membrane and 35% via the stapes, with greater losses in scala tympani.

Conclusions:

  • Higher gentamicin levels in the vestibule contribute to vestibulotoxic effects.
  • Gentamicin distribution suggests cochleotoxicity risk is linked to scala vestibuli concentrations, not scala tympani.
  • This study provides crucial pharmacokinetic data for optimizing intratympanic gentamicin therapy for Meniere's disease.