Single-Nucleus Transcriptomics Uncovers Xaf1-Driven PANoptosis as a Therapeutic Target in Aminoglycoside-Induced

Xinlin Wang1, Hairong Xiao1,2, Jiheng Wu1

  • 1Department of Otolaryngology Head and Neck Surgery, Zhongda Hospital, State Key Laboratory of Digital Medical Engineering, Jiangsu Provincial Key Laboratory of Critical Care Medicine, School of Life Sciences and Technology, School of Medicine, Advanced Institute for Life and Health, Southeast University, Nanjing, China.

Cell Proliferation
|July 2, 2025
PubMed

Insights

Neomycin causes hearing loss by damaging cochlear cells. Researchers identified X-linked inhibitor of apoptosis (Xiap)-associated factor 1 (Xaf1) as a key regulator of cell death, offering a potential therapeutic target for aminoglycoside ototoxicity.

Area of Science:

  • Ototoxicity research
  • Molecular mechanisms of cell death
  • Auditory system science

Background:

  • Aminoglycoside antibiotics are crucial for treating severe infections.
  • Neomycin, an aminoglycoside, can cause irreversible sensorineural hearing loss.
  • Understanding ototoxicity mechanisms is vital for developing protective strategies.

Purpose of the Study:

  • To create a detailed cochlear cell atlas of neomycin-induced ototoxicity.
  • To identify molecular targets for mitigating aminoglycoside-induced ototoxicity.
  • To investigate the role of X-linked inhibitor of apoptosis (Xiap)-associated factor 1 (Xaf1) in ototoxicity.

Main Methods:

  • Single-nucleus RNA sequencing to profile cochlear cells.
  • Augur and scDist algorithms for cell-type susceptibility analysis.
  • In vitro assays and adeno-associated virus (AAV)-based gene delivery to study Xaf1 function.

Main Results:

  • Generated a comprehensive cochlear cell atlas detailing neomycin-induced changes.
  • Identified Xaf1 as a key mediator of PANoptosis in cochlear cells.
  • Demonstrated that Xaf1 knockdown protects cochlear hair cells from neomycin toxicity.
  • Elucidated Xaf1's mechanism involving ZBP1 regulation in the PANoptosis pathway.

Conclusions:

  • Xaf1 is a critical regulator of PANoptosis and a potential therapeutic target for neomycin-induced ototoxicity.
  • This study provides valuable single-cell data for understanding ototoxicity at a molecular level.
  • Targeting Xaf1 offers a promising avenue for preventing aminoglycoside-induced hearing loss.