Synergistic Induction of Ferroptosis by GPX4 Inhibitor and GSH-Depleted Nanoparticles Effectively Reverses Gemcitabine Resistance in Pancreatic Ductal Adenocarcinoma PDX Model.
basic_science · Level V
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- Record sourced from PubMed, PMID 41454527.
- Also identified by DOI 10.1002/adhm.202503694.
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Abstract
Ferroptosis has emerged as a critical mechanism in overcoming drug resistance in various tumors; however, its role in gemcitabine-resistant pancreatic ductal adenocarcinoma (PDAC) has not been thoroughly explored. Additionally, the effectiveness of ferroptosis in many cancer therapies has been limited. In our study, we found that GPX4 is upregulated in gemcitabine-resistant (GR) PDAC patient tissues and cell lines. Notably, inhibiting GPX4 can reverse gemcitabine resistance in PDAC through the induction of ferroptosis, highlighting it as a potential therapeutic target. To address this, we developed a novel nanomedicine, GSH-depleted and ferroptosis-induced (FiN), designed to encapsulate and deliver the GPX4 inhibitor RSL3, resulting in a dual ferroptosis-induced nanomedicine (DFiN). In a PDAC patient-derived xenograft (PDX) mouse model exhibiting gemcitabine resistance, DFiN demonstrated significant accumulation in GR PDAC tumors, leading to a reduction in intracellular GSH levels and inhibition of GPX4. This dual action promoted lipid peroxidation and synergistically induced ferroptosis, effectively reversing gemcitabine resistance. Both in vitro and in vivo experiments confirmed that DFiN is effective in overcoming gemcitabine resistance in GR PDAC cells and PDX tumors, with minimal toxicity observed. This study presents a promising strategy for addressing drug resistance in cancer therapy.
Medical subject headings
- Ferroptosis
- Deoxycytidine
- Carcinoma, Pancreatic Ductal
- Nanoparticles
- Drug Resistance, Neoplasm
- Glutathione
- Pancreatic Neoplasms
- Phospholipid Hydroperoxide Glutathione Peroxidase