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February 5, 2026Molecular Pharmaceutics3 citations

Microbubbles for Acoustically Mediated Drug Delivery to the Inner Ear

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CJCharlotte JeanneauFMFabrice MicalettiDFDamien Fouan

Key Points

  • This review aims to evaluate microbubble-assisted ultrasound as a method for drug delivery to the inner ear, focusing on its efficacy and safety.
  • Review of current microbubble formulations for drug delivery.
  • Analysis of the mechanisms underlying microbubble-assisted ultrasound delivery.
  • Assessment of physiological and pharmacological factors affecting drug delivery through the round window membrane.
  • Microbubble-assisted ultrasound shows potential for targeted delivery of therapeutic agents to the inner ear.
  • The effectiveness depends on factors like tissue properties, drug characteristics, and ultrasound parameters.
  • Current formulations of microbubbles are evolving to enhance drug delivery to the inner ear.

Abstract

The blood-labyrinth barrier (BLB) is a selective endothelial barrier that maintains the homeostasis of the inner ear and protects it against toxic molecules and pathogens. This highly selective barrier represents a significant challenge for the delivery of therapeutic agents to the inner ear. To overcome this issue, various drug delivery methods have been developed. Among these modalities, microbubble-assisted ultrasound is an innovative and promising method for the noninvasive, targeted and efficient delivery of therapeutic agents through the round window membrane. The safety and the efficacy of this physical modality is strongly dependent on physiological properties of the targeted tissue, the pharmacological properties of the therapeutic molecules, the ultrasound parameters but also microbubble-related properties. The present review focuses on the current state of MB formulations and their use for the acoustically mediated inner ear drug delivery.

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Cite This Study

Jeanneau et al. (2026) studied this question.

synapsesocial.com/papers/69843371f1d9ada3c1fb098fhttps://doi.org/10.1021/acs.molpharmaceut.5c01397
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