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Glucococorticoid receptor activation exacerbates aminoglycoside-induced damage to the zebrafish lateral line. | LitMetric

Glucococorticoid receptor activation exacerbates aminoglycoside-induced damage to the zebrafish lateral line.

Hear Res

School of Biological Sciences, Washington State University, 14204 NE Salmon Creek Ave, Vancouver, WA, 98686, USA; College of Arts and Sciences, Washington State University, 14204 NE Salmon Creek Ave, Vancouver, WA, 98686, USA; Department of Integrative Physiology and Neuroscience, Washington State University, 14204 NE Salmon Creek Ave, Vancouver, WA, 98686, USA. Electronic address:

Published: June 2019

AI Article Synopsis

  • Aminoglycoside antibiotics are effective against bacteria but can lead to hearing loss in about 25% of patients, especially when used with high levels of stress hormones like glucocorticoids.
  • The study found that the stress hormone cortisol increases the susceptibility of hair cells in zebrafish to damage from neomycin, a type of aminoglycoside antibiotic, through the action of the glucocorticoid receptor.
  • Understanding cortisol's role in this process is crucial for improving treatment strategies and recognizing the effects of stress on hearing loss in clinical settings.

Article Abstract

Aminoglycoside antibiotics have potent antibacterial properties but cause hearing loss in up to 25% of patients. These drugs are commonly administered in patients with high glucocorticoid stress hormone levels and can be combined with exogenous glucocorticoid treatment. However, the interaction of stress and aminoglycoside-induced hearing loss has not been fully explored. In this study, we investigated the effect of the glucocorticoid stress hormone cortisol on hair cells in the zebrafish lateral line as an important step toward understanding how physiological stressors modulate hair cell survival. We found that 24-hr cortisol incubation sensitized hair cells to neomycin damage. Pharmacological and genetic manipulation demonstrates that sensitization depended on the action of the glucocorticoid receptor but not the mineralocorticoid receptor. Blocking endogenous cortisol production reduced hair cell susceptibility to neomycin, further evidence that glucocorticoids modulate aminoglycoside ototoxicity. Glucocorticoid transcriptional activity was apparent in lateral line hair cells, suggesting a direct action of cortisol in these aminoglycoside-sensitive cells. Our work shows that the stress hormone cortisol can increase hair cell sensitivity to aminoglycoside damage, which highlights the importance of recognizing stress and the impacts of glucocorticoid signaling in both ototoxicity research and clinical practice.

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Source
http://dx.doi.org/10.1016/j.heares.2019.03.002DOI Listing

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