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Aminoglycoside-induced vestibular injury: maintaining a sense of balance
Robert E Ariano1, Sheryl A Zelenitsky, Diamond A Kassum
1Department of Pharmacy, St Boniface General Hospital, Winnipeg, Manitoba, Canada. rariano@sbgh.mb.ca
Objective:
To describe the mechanism and risk factors for the development of aminoglycoside-induced vestibular injury and discuss their implications for therapeutic monitoring of aminoglycoside antibiotics.
Data Sources:
A MEDLINE search (1975-January 2008) was performed to identify literature on aminoglycoside-induced vestibular injury and risk factors associated with this outcome and their impact on therapeutic drug monitoring. Additional references were identified through review of bibliographies of identified articles.
Study Selection And Data Extraction:
Data on the mechanisms of vestibular toxicity and its development in association with aminoglycoside exposure were extracted from identified references.
Data Synthesis:
The mechanism leading to the development of irreversible vestibular injury from exposure to aminoglycosides appears to be through the excessive production of oxidative free radicals. This production and subsequent toxicity appears to be a time-dependent process and is unrelated to dose or serum concentration. For similarly designed studies, the pooled incidence of vestibular toxicity is 10.9% for gentamicin, 7.4% for amikacin, 3.5% for tobramycin, and 1.1% for netilmicin. Current evidence suggests that this form of drug toxicity is not restricted to traditionally dosed systemic therapy, since intraperitoneal administration, high-dose once-daily administration, topical inhalation, and eardrop administration have all been associated with the development of this adverse outcome.
Conclusions:
Given the lack of association between serum concentrations and vestibulotoxicity, it is imperative for the pharmacist to interview the patient and not focus solely on maintaining target range drug concentrations. Minimizing the duration of exposure to aminoglycosides is recommended to reduce the risk from this form of drug toxicity.
Insights
Aminoglycoside antibiotics can cause irreversible vestibular injury through oxidative free radical production, independent of dose or serum concentration. Minimizing exposure duration is key to reducing this risk.
Area of Science:
- Ototoxicity
- Pharmacology
- Neuroscience
Background:
- Aminoglycoside antibiotics are crucial for treating severe bacterial infections.
- Vestibular injury is a significant adverse effect associated with aminoglycoside use.
- Understanding the mechanisms and risk factors is vital for patient safety.
Purpose of the Study:
- To elucidate the mechanism of aminoglycoside-induced vestibular injury.
- To identify risk factors contributing to this toxicity.
- To discuss implications for therapeutic drug monitoring of aminoglycosides.
Main Methods:
- Comprehensive literature search of MEDLINE (1975-2008) and bibliographies.
- Extraction of data on vestibular toxicity mechanisms and risk factors.
- Synthesis of findings related to aminoglycoside exposure and outcomes.
Main Results:
- Vestibular injury results from excessive oxidative free radical production, a time-dependent process.
- Toxicity is unrelated to aminoglycoside dose or serum concentration.
- Incidence varies by drug (gentamicin 10.9%, amikacin 7.4%, tobramycin 3.5%, netilmicin 1.1%) and administration route.
Conclusions:
- Therapeutic drug monitoring should not solely rely on serum concentrations due to lack of correlation with vestibulotoxicity.
- Pharmacists must interview patients to assess risk factors.
- Reducing the duration of aminoglycoside therapy is recommended to minimize vestibular injury risk.
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