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Updated: Aug 6, 2025

Author Spotlight: Tracing the Ferroptotic Signatures and Cell Death Dynamics in Medulloblastoma for Advanced Therapeutics
Published on: March 15, 2024
The Multidrug Resistance Transporter P-glycoprotein Confers Resistance to Ferroptosis Inducers
William J E Frye1, Lyn M Huff1, José M González Dalmasy1
1Laboratory of Cell Biology, Center for Cancer Research, National Cancer Institute, National Institutes of Health, Bethesda, MD.
Abstract:
Ferroptosis is a form of cell death caused by direct or indirect inhibition of glutathione peroxidase 4 that leads to lethal lipid peroxidation. Several small molecule ferroptosis inducers (FINs) have been reported, yet little information is available regarding resistance mechanisms, particularly their interaction with the ATP-binding cassette (ABC) transporters P-glycoprotein (P-gp, ABCB1) and ABCG2. Given the role that ABC transporters play in absorption, distribution, and excretion of many drugs, characterizing these interactions could provide information regarding oral bioavailability and brain penetration and may predict drug-drug interactions. Using ferroptosis-sensitive A673 cells transfected to express P-gp or ABCG2, we found that P-gp overexpression was able to confer resistance to FIN56 and the erastin derivatives imidazole ketone erastin and piperazine erastin. Results were confirmed with OVCAR8-derived NCI/ADR-RES cells that overexpress P-gp, where the P-gp inhibitor valspodar completely inhibited resistance to the FINs. P-gp-mediated resistance to imidazole ketone erastin and piperazine erastin was also reversed in UO-31 renal cancer cells by CRISPR-mediated knockout of ABCB1. At a concentration of 10 μM, the FINs ML-162, GPX inhibitor 26a, and PACMA31 were able to increase intracellular rhodamine 123 fluorescence over 10-fold in P-gp-expressing MDR-19 cells and GPX inhibitor 26a was able to increase intracellular purpurin-18 fluorescence over 4-fold in ABCG2-expressing R-5 cells. Expression of P-gp may reduce the efficacy of these FINs in cancers that express the transporter and may prevent access to sanctuary sites such as the brain. The ability of some FINs to inhibit P-gp and ABCG2 suggests potential drug-drug interactions.
Insights
Certain ferroptosis inducers (FINs) can cause resistance through P-glycoprotein (P-gp) and ABCG2 transporters, impacting drug efficacy and brain penetration. Understanding these interactions is crucial for predicting drug responses and interactions.
Area of Science:
- Biochemistry
- Cell Biology
- Pharmacology
Background:
- Ferroptosis is a cell death pathway triggered by glutathione peroxidase 4 inhibition, leading to lipid peroxidation.
- Small molecule ferroptosis inducers (FINs) are emerging therapeutics, but resistance mechanisms remain poorly understood.
- ATP-binding cassette (ABC) transporters, like P-glycoprotein (P-gp) and ABCG2, influence drug pharmacokinetics and can confer multidrug resistance.
Approach:
- Investigated ferroptosis inducer interactions with P-gp and ABCG2 using engineered cell lines.
- Assessed P-gp-mediated resistance to FIN56 and erastin derivatives.
- Utilized P-gp inhibitors and CRISPR-Cas9 gene editing to confirm transporter involvement.
Key Points:
- P-gp overexpression conferred resistance to specific FINs (FIN56, imidazole ketone erastin, piperazine erastin).
- P-gp-mediated resistance was reversed by a P-gp inhibitor and by CRISPR-mediated knockout of ABCB1.
- Several FINs demonstrated substrate potential for P-gp and ABCG2, indicated by increased intracellular fluorescence.
Conclusions:
- P-gp expression can reduce ferroptosis inducer efficacy and limit brain penetration.
- FINs interacting with ABC transporters may lead to drug-drug interactions.
- Characterizing FIN-ABC transporter interplay is essential for optimizing ferroptosis-based cancer therapies.
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