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February 21, 2026International Journal of Nanomedicine3 citationsOpen Access

Engineered Exosomes: Advances in Therapeutic Applications for Otolaryngology–Head and Neck Diseases

HZHan ZhuJHJing HeSYShishi Yang

Key Points

  • The research aims to evaluate the advancements and challenges of engineered exosomes in otolaryngology–head and neck diseases.
  • Reviewed recent literature on engineered exosomes in OHNS treatment
  • Analyzed engineering strategies including genetic editing and surface modification
  • Evaluated their effects on drug loading, stability, and targeting precision
  • Synthesized challenges for clinical translation and applicability
  • Identified improvements in drug-loading capacity and targeting accuracy of engineered exosomes
  • Noted enhanced in vivo stability leading to potential therapeutic benefits
  • Highlighted the need for interdisciplinary collaboration to overcome clinical translation barriers

Abstract

Abstract: Given the intricate anatomy of otolaryngology–head and neck (OHNS) regions and the inherent limitations of conventional therapies, many OHNS diseases have suboptimal clinical outcomes. As natural intercellular mediators, exosomes have demonstrated unique application potential in OHNS treatment in recent years, thanks to their high biocompatibility, low immunogenicity, and intrinsic targeting capabilities. However, such issues as limited drug-loading capacity, suboptimal in vivo stability, and insufficient targeting precision still hinder their clinical translation. Notably, recent advances in engineering strategies such as genetic editing, surface modification, and optimized drug loading enhance natural exosomes’ functionality, boosting targeting accuracy, in vivo stability, and therapeutic efficacy. Considering conventional therapy limitations and engineered exosomes’ unique potential, this review synthesizes their progress, mechanisms, and translational challenges in OHNS, and addresses lingering technical and translation barriers via interdisciplinary collaboration to optimize their design, utility, and bench-to-bedside translation, as these exosomes are promising precision tools for refractory OHNS diseases advancing precision medicine in the field. Keywords: engineered exosomes, otorhinolaryngological tumors, inflammatory diseases, tissue regeneration and repair, targeted delivery

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Cite This Study

Zhu et al. (2026) studied this question.

synapsesocial.com/papers/69994b01873532290d01f4dbhttps://doi.org/10.2147/ijn.s574708
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