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.

Frontiers in Neurology
|October 3, 2022
PubMed

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.