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Updated: Nov 16, 2025

Author Spotlight: Tracing the Ferroptotic Signatures and Cell Death Dynamics in Medulloblastoma for Advanced Therapeutics
Published on: March 15, 2024
Physical plasma-derived oxidants sensitize pancreatic cancer cells to ferroptotic cell death
Naresh Kumar1, Claudina Perez-Novo2, Priyanka Shaw3
1Research Group PLASMANT, Department of Chemistry, University of Antwerp, Antwerp, 2610, Belgium; National Institute of Pharmaceutical Education and Research, Guwahati, 781125, Guwahati, Assam, India.
Abstract:
Despite modern therapeutic advances, the survival prospects of pancreatic cancer patients remain poor, due to chemoresistance and dysregulated oncogenic kinase signaling networks. We applied a novel kinome activity-mapping approach using biological peptide targets as phospho-sensors to identify vulnerable kinase dependencies for therapy sensitization by physical plasma. Ser/Thr-kinome specific activity changes were mapped upon induction of ferroptotic cell death in pancreatic tumor cells exposed to reactive oxygen and nitrogen species of plasma-treated water (PTW). This revealed a broad kinome activity response involving the CAMK, the AGC and CMGC family of kinases. This systems-level kinome network response supports stress adaptive switches between chemoresistant anti-oxidant responses of Kelch-like ECH-associated protein 1 (KEAP1)/Heme Oxygenase 1 (HMOX1) and ferroptotic cell death sensitization upon suppression of Nuclear factor (erythroid derived 2)-like 2 (NRF2) and Glutathione peroxidase 4 (GPX4). This is further supported by ex vivo experiments in the chicken chorioallantoic membrane assay, showing decreased GPX4 and Glutathione (GSH) expression as well as increased lipid peroxidation, along with suppressed BxPC-3 tumor growth in response to PTW. Taken all together, we demonstrate that plasma treated water-derived oxidants sensitize pancreatic cancer cells to ferroptotic cell death by targeting a NRF2-HMOX1-GPX4 specific kinase signaling network.
Insights
Physical plasma-treated water sensitizes pancreatic cancer cells to ferroptosis by targeting the NRF2-HMOX1-GPX4 kinase network. This approach overcomes chemoresistance and improves therapeutic outcomes.
Area of Science:
- Oncology
- Biochemistry
- Plasma Medicine
Background:
- Pancreatic cancer survival remains poor due to chemoresistance and kinase signaling.
- Novel therapeutic strategies are needed to overcome treatment resistance.
Purpose of the Study:
- To identify kinase dependencies for sensitizing pancreatic cancer to therapy using physical plasma.
- To investigate the role of plasma-treated water (PTW) in inducing ferroptotic cell death.
Main Methods:
- Applied a novel kinome activity-mapping approach using peptide phospho-sensors.
- Mapped Ser/Thr-kinome activity changes in pancreatic tumor cells exposed to PTW.
- Utilized the chicken chorioallantoic membrane assay for ex vivo validation.
Main Results:
- PTW induced ferroptotic cell death and broad kinome activity changes (CAMK, AGC, CMGC kinases).
- Observed stress adaptive switches involving KEAP1/HMOX1 and NRF2/GPX4.
- Ex vivo studies showed decreased GPX4/GSH, increased lipid peroxidation, and suppressed tumor growth.
Conclusions:
- PTW-derived oxidants sensitize pancreatic cancer cells to ferroptosis.
- Targeting the NRF2-HMOX1-GPX4 kinase signaling network is a key mechanism.
- This study highlights PTW as a potential therapeutic sensitizer for pancreatic cancer.

