Ginsenoside Rh2 Suppresses the Fanconi Anemia Pathway by Inhibiting NF-κB-Mediated FANCL Transcription in Bladder

Chen Li1, Guanglin Lv1, Zhuang Xiong1

  • 1Department of Urology, Wuxi No. 2 People's Hospital, Wuxi, China.

Abstract

Insights

Ginsenoside Rh2 enhances cisplatin effectiveness in bladder cancer by blocking the Fanconi anemia (FA) DNA repair pathway. This natural compound targets NF-κB signaling, reducing FANCL expression and improving chemotherapy outcomes.

Area of Science:

  • Oncology
  • Molecular Biology
  • Pharmacology

Background:

  • Cisplatin is a key chemotherapy for bladder cancer (BC).
  • The Fanconi anemia (FA) pathway repairs cisplatin-induced DNA damage, but its hyperactivation leads to resistance.
  • Targeting the FA pathway is crucial for overcoming cisplatin resistance in BC.

Purpose of the Study:

  • To investigate the impact of ginsenoside Rh2 on FA signaling.
  • To determine if Rh2 can sensitize bladder cancer cells to cisplatin.

Main Methods:

  • Bladder cancer cell lines were treated with cisplatin and/or Rh2.
  • FA pathway activation markers (ID2 monoubiquitination, FANCD2 foci) were assessed.
  • FANCL expression, protein interactions, and NF-κB signaling were analyzed.
  • In vivo efficacy was tested using a T24 xenograft model.

Main Results:

  • Rh2 pretreatment inhibited cisplatin-induced FA pathway activation by reducing ID2 monoubiquitination and FANCD2 foci.
  • Rh2 suppressed FANCL transcription and disrupted key protein interactions within the FA pathway.
  • FANCL overexpression rescued the FA inhibition caused by Rh2.
  • NF-κB signaling agonists reversed Rh2's effects on FANCL and FA inhibition.
  • In vivo, Rh2 combined with cisplatin significantly inhibited tumor growth, an effect counteracted by NF-κB stimulation.

Conclusions:

  • Ginsenoside Rh2 enhances cisplatin cytotoxicity in bladder cancer by inhibiting the FA DNA repair pathway via suppression of NF-κB signaling and FANCL transcription.
  • Rh2 shows potential as a sensitizing agent to overcome platinum resistance in bladder cancer treatment.