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Updated: Aug 26, 2025

Trans-Tympanic Drug Delivery for the Treatment of Ototoxicity
Published on: March 16, 2018
Development and in vivo validation of small interfering RNAs targeting NOX3 to prevent sensorineural hearing loss
German Nacher-Soler1, Antoine Marteyn2, Natasha Barenzung1,2
1The Inner Ear and Olfaction Lab, Department of Pathology and Immunology, Faculty of Medicine, University of Geneva, Geneva, Switzerland.
Abstract:
The reactive oxygen species (ROS)-generating enzyme NOX3 has recently been implicated in the pathophysiology of several acquired forms of sensorineural hearing loss, including cisplatin-, noise- and age-related hearing loss. NOX3 is highly and specifically expressed in the inner ear and therefore represents an attractive target for specific intervention aiming at otoprotection. Despite the strong rationale to inhibit NOX3, there is currently no specific pharmacological inhibitor available. Molecular therapy may represent a powerful alternative. In this study, we developed and tested a collection of small interfering (si) RNA constructs to establish a proof of concept of NOX3 inhibition through local delivery in the mouse inner ear. The inhibitory potential of 10 different siRNA constructs was first assessed in three different cells lines expressing the NOX3 complex. Efficacy of the most promising siRNA construct to knock-down NOX3 was then further assessed in vivo, comparing middle ear delivery and direct intracochlear delivery through the posterior semi-circular canal. While hearing was completely preserved through the intervention, a significant downregulation of NOX3 expression in the mouse inner ear and particularly in the spiral ganglion area at clinically relevant levels (>60%) was observed 48 h after treatment. In contrast to successful intracochlear delivery, middle ear administration of siRNA failed to significantly inhibit Nox3 mRNA expression. In conclusion, intracochlear delivery of NOX3-siRNAs induces a robust temporal NOX3 downregulation, which could be of relevance to prevent predictable acute insults such as cisplatin chemotherapy-mediated ototoxicity and other forms of acquired hearing loss, including post-prevention of noise-induced hearing loss immediately after trauma. Successful translation of our concept into an eventual clinical use in humans will depend on the development of atraumatic and efficient delivery routes into the cochlea without a risk to induce hearing loss through the intervention.
Insights
Small interfering RNA (siRNA) targeting NOX3 effectively reduced NOX3 expression in the mouse inner ear, offering a potential strategy for preventing hearing loss from chemotherapy or noise exposure.
Area of Science:
- Ototopics and molecular biology
- Inner ear drug delivery and gene silencing
Background:
- Reactive oxygen species (ROS)-generating enzyme NOX3 is implicated in acquired sensorineural hearing loss.
- NOX3's specific expression in the inner ear makes it a target for otoprotection.
- Lack of specific pharmacological inhibitors necessitates alternative therapeutic strategies like molecular therapy.
Purpose of the Study:
- To develop and test small interfering RNA (siRNA) constructs for NOX3 inhibition in the mouse inner ear.
- To establish a proof of concept for NOX3 downregulation via local siRNA delivery.
- To assess the efficacy of different delivery methods for NOX3-siRNA in the inner ear.
Main Methods:
- Screening of 10 siRNA constructs in cell lines expressing the NOX3 complex.
- In vivo assessment of the most effective siRNA construct via middle ear and intracochlear delivery.
- Measurement of NOX3 expression levels in the inner ear 48 hours post-treatment.
Main Results:
- Intracochlear delivery of NOX3-siRNA achieved significant NOX3 downregulation (>60%) in the inner ear, particularly the spiral ganglion.
- Hearing was preserved in all treated mice.
- Middle ear delivery of siRNA did not significantly inhibit NOX3 mRNA expression.
Conclusions:
- Intracochlear delivery of NOX3-siRNA provides a robust method for temporal NOX3 downregulation.
- This approach holds potential for preventing ototoxicity from cisplatin chemotherapy and noise-induced hearing loss.
- Clinical translation requires development of atraumatic and efficient cochlear delivery methods.
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