ArticleHearing research2025
Prevention of aminoglycoside-induced outer hair cell loss by silencing CaMKKβ in an acute mouse model.
Article in Hearing research, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 5 papers.
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Who cites it
5 citing papers in PubMed.
- AMPKα Silencing Prevents Kanamycin-Induced Ototoxicity in an Acute Mouse Model.Sensory neuroscience · 2026Article
- A Newly Identified Role of the Tectorial Membrane in Aminoglycoside Ototoxicity.bioRxiv : the preprint server for biology · 2026Article
- TRPV4 mediates aminoglycoside trafficking and ototoxicity without compromising antimicrobial efficacy.Cell death discovery · 2026Article
- Furosemide prevents noise-induced hearing loss and enhances the preventive effect of N-acetylcysteine.Hearing research · 2026Article
- Combined Effects of Low-Dose Kanamycin and Noise Exposure on Auditory Brainstem Response and Cochlear Microphonic Potential in Guinea Pigs.Iranian journal of child neurology · 2026Article
Corrections and comments
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Authors and funding
6 authors.
Funding
Abstract
The use of ototoxic drugs remains a common cause of acquired hearing loss worldwide. Among them, aminoglycoside antibiotics are still widely used in clinical practice. Although the pathological mechanisms underlying aminoglycoside-induced hearing loss have been extensively studied, no clinically effective pharmacological treatment is currently available to prevent such ototoxicity. Our previous study demonstrated that calcium overload and activation of the Ca²⁺/calmodulin-dependent protein kinase kinase (CaMKK) pathway play a critical role in noise-induced hearing loss. In this study, we assessed the activation of CaMKKβ in an acute ototoxicity model induced by kanamycin plus furosemide (KM + FU). We silenced CaMKKβ using small interfering RNA in young adult CBA/J mice and AAV-mediated shRNA in FVB/NJ mice to determine whether reduction of CaMKKβ in hair cells could prevent KM + FU-induced outer hair cell loss and hearing loss. Remarkably, both silencing approaches provided significant prevention of KM + FU-induced outer hair cell loss. Moreover, RNA interference targeting CaMKKβ did not alter the permeability of the stria vascularis or the uptake of kanamycin through mechanoelectrical transduction channels in hair cells. These findings suggest that CaMKKβ is a promising therapeutic target for prevention of aminoglycoside-induced hearing loss in acute model.
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