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Mitochondrial calcium uptake underlies ROS generation during aminoglycoside-induced hair cell death
Robert Esterberg, Tor Linbo, Sarah B. Pickett, Patricia Wu, Henry C. Ou, Edwin W. Rubel, David W. Raible
Robert Esterberg, Tor Linbo, Sarah B. Pickett, Patricia Wu, Henry C. Ou, Edwin W. Rubel, David W. Raible
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Research Article Otology

Mitochondrial calcium uptake underlies ROS generation during aminoglycoside-induced hair cell death

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Abstract

Exposure to aminoglycoside antibiotics can lead to the generation of toxic levels of reactive oxygen species (ROS) within mechanosensory hair cells of the inner ear that have been implicated in hearing and balance disorders. Better understanding of the origin of aminoglycoside-induced ROS could focus the development of therapies aimed at preventing this event. In this work, we used the zebrafish lateral line system to monitor the dynamic behavior of mitochondrial and cytoplasmic oxidation occurring within the same dying hair cell following exposure to aminoglycosides. The increased oxidation observed in both mitochondria and cytoplasm of dying hair cells was highly correlated with mitochondrial calcium uptake. Application of the mitochondrial uniporter inhibitor Ru360 reduced mitochondrial and cytoplasmic oxidation, suggesting that mitochondrial calcium drives ROS generation during aminoglycoside-induced hair cell death. Furthermore, targeting mitochondria with free radical scavengers conferred superior protection against aminoglycoside exposure compared with identical, untargeted scavengers. Our findings suggest that targeted therapies aimed at preventing mitochondrial oxidation have therapeutic potential to ameliorate the toxic effects of aminoglycoside exposure.

Authors

Robert Esterberg, Tor Linbo, Sarah B. Pickett, Patricia Wu, Henry C. Ou, Edwin W. Rubel, David W. Raible

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Figure 5

Cytoplasmic oxidation (HyPer) is correlated with mitochondrial Ca2+ uptake (mitoRGECO) during aminoglycoside-induced hair cell death.

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Cytoplasmic oxidation (HyPer) is correlated with mitochondrial Ca2+ upta...
(A) Mean transformed (F/F0) intensity of HyPer and mitoRGECO within dying hair cells exposed to 400 μM neomycin aligned to the time at which they are cleared from the neuromast. The dashed line represents (F/F0) of 1, corresponding to preneomycin baseline levels. (B) Mean cross-correlation of transformed fluorescence intensity values of HyPer relative to mitoRGECO events occurring within the same cell. Maximal cross-correlation value (R) was at –1 minute (r = 0.411, P = 0.013), indicating that the initial onset of increased mitoRGECO fluorescence (mitochondrial Ca2+ uptake) precedes HyPer by 1 minute. Error bars = ±1 SEM; n = 36 cells from 1 to 3 neuromasts per animal and 7 animals.

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ISSN: 0021-9738 (print), 1558-8238 (online)

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