1.CASE REPORT - Topical gentamicin-induced acute vestibulopathy: A case report
Teik Beng Lau ; Jeyasakthy Saniasiaya ; Revadi Govindaraju
Malaysian Family Physician 2023;18(All Issues):1-3
Evidence suggests that otologic injury from ototopical aminoglycoside preparations is infrequent when used to treat ear infections with an intact tympanic membrane. Meanwhile, parenteral administration of aminoglycosides, is well known to be associated with a significant incidence of cochlear and vestibular damage. The discrepancy between topical and parenteral ototoxic effects is thought to result from a combination of factors, including the protective function of debris overlying the round window membrane, low antibiotic concentrations of topical antibiotic preparations, length of exposure and inability to detect subtle hearing or vestibular changes. Herein, we present a case of acute vestibulopathy following a 2-week course of topical gentamicinotic drops. Awareness of vestibulotoxicity following topical gentamicin therapy is prudent as vestibulopathic symptoms can be severely debilitating.
Aminoglycosides
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Ototoxicity
2.Effects of Toluene on the Development of the Inner Ear and Lateral Line Sensory System of Zebrafish.
Xu Dong LI ; Hong Wei TU ; Ke Qi HU ; Yun Gang LIU ; Li Na MAO ; Feng Yan WANG ; Hong Ying QU ; Qing CHEN
Biomedical and Environmental Sciences 2021;34(2):110-118
Objective:
The aim of this study was to explore the ototoxicity of toluene in the early development of zebrafish embryos/larvae.
Methods:
Zebrafish were utilized to explore the ototoxicity of toluene. Locomotion analysis, immunofluorescence, and qPCR were used to understand the phenotypes and molecular mechanisms of toluene ototoxicity.
Results:
The results demonstrated that at 2 mmol/L, toluene induced zebrafish larvae death at 120 hours post fertilization (hpf) at a rate of 25.79% and inhibited the rate of hatching at 72 hpf. Furthermore, toluene exposure inhibited the distance travelled and average swimming velocity of zebrafish larvae while increasing the frequency of movements. As shown by fluorescence staining of hair cells, toluene inhibited the formation of lateral line neuromasts and middle line 1 (Ml
Conclusion
This study indicated that toluene may affect the development of both the inner ear and lateral line systems in zebrafish, while the lateral line system may be more sensitive to toluene than the inner ear.
Animals
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Ear, Inner/growth & development*
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Embryo, Nonmammalian/drug effects*
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Gene Expression Regulation, Developmental/drug effects*
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Hair Cells, Auditory/metabolism*
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Lateral Line System/growth & development*
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Locomotion/drug effects*
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Ototoxicity/physiopathology*
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Toluene/toxicity*
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Zebrafish