Nitazoxanide impairs mitophagy flux through ROS-mediated mitophagy initiation and lysosomal dysfunction in bladder

Haiyan Sun1, Tong Ou2, Jianyang Hu3

  • 1Institute of Urology, The Third Affiliated Hospital of Shenzhen University (Luohu Hospital Group), Shenzhen 518000, China; Shenzhen Following Precision Medical Research Institute, Luohu Hospital Group, Shenzhen 518000, China.

Insights

Nitazoxanide (NTZ) triggers mitochondrial damage and impairs mitophagy in bladder cancer cells by modulating reactive oxygen species (ROS). This drug shows potential for treating bladder tumors with minimal toxicity.

Area of Science:

  • Oncology
  • Cell Biology
  • Pharmacology

Background:

  • Bladder cancer presents significant clinical challenges due to high recurrence and drug resistance.
  • Exploring existing drugs like Nitazoxanide (NTZ) offers a promising avenue for alternative bladder cancer treatments.
  • The precise mechanisms of NTZ's effects on bladder cancer remain largely unelucidated.

Purpose of the Study:

  • To investigate the anti-tumor effects of Nitazoxanide (NTZ) in bladder cancer.
  • To elucidate the underlying molecular mechanisms, focusing on mitochondrial damage and mitophagy.
  • To evaluate NTZ's therapeutic potential in preclinical bladder cancer models.

Main Methods:

  • Investigated NTZ's impact on mitochondrial integrity and mitophagy pathways (PINK1/pS65-Ub).
  • Assessed the role of mitochondrial reactive oxygen species (ROS) using N-acetylcysteine (NAC).
  • Evaluated NTZ efficacy in 3D bladder tumor spheroids and in vivo orthotopic tumor models.

Main Results:

  • NTZ induced mitochondrial damage and mitophagy initiation, independent of Atg5/Beclin1, but impaired lysosomal degradation.
  • Mitochondrial ROS production was critical; ROS scavenging with NAC inhibited NTZ-induced mitophagy and lysosomal dysfunction.
  • NTZ demonstrated significant inhibition of orthotopic bladder tumors in vivo with no observable systemic toxicity.

Conclusions:

  • Nitazoxanide exhibits anti-tumor activity in bladder cancer by modulating mitophagy through ROS.
  • NTZ disrupts mitophagy at multiple stages, leading to apoptosis and tumor growth inhibition.
  • NTZ represents a potential therapeutic candidate for bladder tumors, warranting further clinical investigation.