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March 30, 2026Molecular Medicine Reports0 citationsOpen Access

Polyphyllin II regulates ROS levels and promotes ferroptosis in bladder cancer cells

QQQinbo QiaoShandong University of Traditional Chinese MedicineRGRuifang GuoShandong University of Traditional Chinese MedicineZSZhonghua SunShandong University of Traditional Chinese Medicine

Key Points

  • The aim is to investigate how polyphyllin II affects ferroptosis in bladder cancer cells.
  • Conducted cell viability and colony formation assays to evaluate cell proliferation.
  • Performed RNA sequencing to identify differentially expressed genes after PPII treatment.
  • Utilized gene ontology and pathway enrichment analyses to assess ferroptosis-related pathways.
  • Measured levels of reactive oxygen species and Fe²+ accumulation in bladder cancer cells after PPII treatment.
  • Examined the expression changes of glutathione peroxidase 4 (GPX4) in response to PPII.
  • PPII significantly inhibited the proliferation of bladder cancer cells.
  • PPII treatment increased reactive oxygen species (ROS) levels and Fe²+ accumulation in cells.
  • Downregulation of glutathione peroxidase 4 (GPX4) was observed upon PPII treatment.
  • RNA sequencing revealed dosage-dependent expression changes in ferroptosis-related genes.

Abstract

Bladder cancer is a challenging disease with high recurrence rates and limited treatment options. Studies have highlighted the role of ferroptosis, an iron‑dependent cell death mechanism, in cancer progression and treatment. In the present study, the regulatory mechanisms of polyphyllin II (PPII) on ferroptosis in bladder cancer cells were investigated. Cell viability and colony formation assays demonstrated that PPII effectively inhibited the proliferation of bladder cancer cells. RNA sequencing analysis revealed differentially expressed genes upon PPII treatment, with Cluster 6 exhibiting dose‑dependent expression changes. Gene Ontology and pathway enrichment analyses revealed enrichment of ferroptosis‑related pathways. PPII treatment markedly increased reactive oxygen species (ROS) levels and promoted Fe²+ accumulation in bladder cancer cells. Additionally, PPII downregulated the expression of glutathione peroxidase 4 (GPX4), a key regulator of ferroptosis. These findings indicate that PPII promotes ferroptosis in bladder cancer cells through the modulation of ROS levels and GPX4 activity. Further investigations into the molecular mechanisms and potential combination therapies are warranted.

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Cite This Study

Qiao et al. (2026) studied this question.

synapsesocial.com/papers/69ca1280883daed6ee094ea1https://doi.org/10.3892/mmr.2026.13858
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  5. 5APR-246 drives ROS-dependent ferroptosis and apoptosis and enhances anti–PD-1 efficacy in bladder cancer2026