Scinovex
article Open AccessTop 1% cited

Ferroptosis is induced following siramesine and lapatinib treatment of breast cancer cells

Cell Death and Disease · 2016 · Vol. 7(7) · pp. e2307–e2307
Shumei MaElizabeth S. HensonYongqiang ChenSpencer B. Gibson

Abstract

Ferroptosis is an iron-dependent, oxidative cell death, and is distinct from apoptosis, necrosis and autophagy. In this study, we demonstrated that lysosome disrupting agent, siramesine and a tyrosine kinase inhibitor, lapatinib synergistically induced cell death and reactive oxygen species (ROS) in MDA MB 231, MCF-7, ZR-75 and SKBr3 breast cancer cells over a 24 h time course. Furthermore, the iron chelator deferoxamine (DFO) significantly reduced cytosolic ROS and cell death following treatment with siramesine and lapatinib. Furthermore, we determined that FeCl3 levels were elevated in cells treated with siramesine and lapatinib indicating an iron-dependent cell death, ferroptosis. To confirm this, we treated cells with a potent inhibitor of ferroptosis, ferrastatin-1 that effectively inhibited cell death following siramesine and lapatinib treatment. The increase levels of iron could be due to changes in iron transport. We found that the expression of transferrin, which is responsible for the transport of iron into cells, is increased following treatment with lapatinib alone or in combination with siramesine. Knocking down of transferrin resulted in decreased cell death and ROS after treatment. In addition, ferroportin-1 (FPN) is an iron transport protein, responsible for removal of iron from cells. We found its expression is decreased after treatment with siramesine alone or in combination with lapatinib. Overexpression FPN resulted in decreased ROS and cell death whereas knockdown of FPN increased cell death after siramesine and lapatinib treatment. This indicates a novel induction of ferroptosis through altered iron regulation by treating breast cancer cells with a lysosome disruptor and a tyrosine kinase inhibitor.

Ferroptosis and cancer prognosisDrug Transport and Resistance MechanismsIron Metabolism and DisordersLapatinibProgrammed cell deathSKBR3ApoptosisCancer researchCancer cellChemistryDeferoxamineTransferrin receptorNecroptosis

MeSH terms

LapatinibFerroportinAntineoplastic AgentsCyclohexylaminesDeferoxamineDrug SynergismFemaleFerritinsGene Expression RegulationHumansImidazolesIndolesIronIron Chelating AgentsLysosomes

Funding

  • CancerCare Manitoba Foundation
Citations
611
FWCI
12.56
field-weighted impact
References
53
Percentile
99%
vs. same field & year
Citations per year
Cited by
The Role of Ferroptosis in Cancer Development and Treatment Response
Frontiers in Pharmacology · 2018 · 460 citations
Role of GPX4 in ferroptosis and its pharmacological implication
Free Radical Biology and Medicine · 2018 · 1,452 citations
Targeting Ferroptosis to Iron Out Cancer
Cancer Cell · 2019 · 2,515 citations
The emerging role of ferroptosis in inflammation
Biomedicine & Pharmacotherapy · 2020 · 724 citations
References
Glutaminolysis and Transferrin Regulate Ferroptosis
Molecular Cell · 2015 · 1,981 citations
Necroptosis as an alternative form of programmed cell death
Current Opinion in Cell Biology · 2010 · 779 citations
Regulation of iron transport and the role of transferrin
Biochimica et Biophysica Acta (BBA) - General Subjects · 2011 · 511 citations
Lysosomal membrane permeabilization in cell death
Oncogene · 2008 · 1,388 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.