Establishment of a human inner ear model reveals that gentamicin C2b is substantially less ototoxic than clinical

Minjin Jeong1, Hiroaki Mohri1, Dongjun Han1

  • 1Department of Otolaryngology-Head and Neck Surgery, Stanford University School of Medicine, 801 Welch Rd., Stanford, CA 94304, USA.

Insights

Gentamicin subtype C2b shows reduced ototoxicity compared to clinical gentamicin. This finding, observed in human inner ear cells and mouse models, suggests C2b may be a safer alternative.

Area of Science:

  • Ototoxicity research
  • Stem cell biology
  • Pharmacology

Background:

  • Gentamicin, an antibiotic, is a mixture of subtypes with varying ototoxicity.
  • Gentamicin C2b subtype shows potential for reduced ototoxicity, but human data is lacking.
  • Lack of human in vitro models hinders ototoxicity studies.

Purpose of the Study:

  • To develop and validate a human in vitro model for ototoxicity studies.
  • To compare the ototoxicity of gentamicin C2b and clinical gentamicin in human cells and animal models.
  • To investigate the potential of gentamicin C2b as a safer alternative antibiotic.

Main Methods:

  • Generated otic progenitor cells (OPCs) from human induced pluripotent stem cells.
  • Confirmed OPC identity using transcriptomic and immunocytochemical analyses.
  • Compared gentamicin C2b and clinical gentamicin effects on human OPCs and mouse auditory function.

Main Results:

  • Human OPCs showed lower cytotoxicity and higher viability with gentamicin C2b exposure.
  • Gentamicin C2b significantly reduced apoptosis in human OPCs.
  • Mice exposed to gentamicin C2b exhibited attenuated hearing loss across all frequencies.

Conclusions:

  • Gentamicin C2b demonstrates reduced ototoxicity compared to clinical gentamicin preparations.
  • Human OPCs derived from iPSCs serve as a relevant model for ototoxicity assessment.
  • Further clinical investigations into gentamicin C2b are warranted.