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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.
Abstract:
Intratympanic gentamicin therapy is widely used clinically to suppress the vestibular symptoms of Meniere's disease. Dosing in humans was empirically established and we still know remarkably little about where gentamicin enters the inner ear, where it reaches in the inner ear and what time course it follows after local applications. In this study, gentamicin was applied to the round window niche as a 20 μL bolus of 40 mg/ml solution. Ten 2 μL samples of perilymph were collected sequentially from the lateral semi-circular canal (LSCC) at times from 1 to 4 h after application. Gentamicin concentration was typically highest in samples originating from the vestibule and was lower in samples originating from scala tympani. To interpret these results, perilymph elimination kinetics for gentamicin was quantified by loading the entire perilymph space by injection at the LSCC with a 500 μg/ml gentamicin solution followed by sequential perilymph sampling from the LSCC after different delay times. This allowed concentration decline in perilymph to be followed with time. Gentamicin was retained well in scala vestibuli and the vestibule but declined rapidly at the base of scala tympani, dominated by interactions of perilymph with CSF, as reported for other substances. Quantitative analysis, taking into account perilymph kinetics for gentamicin, showed that more gentamicin entered at the round window membrane (57%) than at the stapes (35%) but the lower concentrations found in scala tympani were due to greater losses there. The gentamicin levels found in perilymph of the vestibule, which are higher than would be expected from round window entry alone, undoubtedly contribute to the vestibulotoxic effects of the drug. Furthermore, calculations of gentamicin distribution following targeted applications to the RW or stapes are more consistent with cochleotoxicity depending on the gentamicin concentration in scala vestibuli rather than that in scala tympani.
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.
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