Table 2.
Application and mechanism of ferroptosis inducers.
Ferroptosis inducers | Mechanisms | Phenotype | References |
---|---|---|---|
Erastin | Inhibit System xc− | ROS accumulation, lipid peroxidation, GSH depletion, SLC7A11 upregulation | [134] |
Sulfasalazine | Inhibit System xc− | Lipid peroxidation, GSH depletion, SLC7A11 upregulation | [135, 136] |
Sorafenib | Inhibit System xc− | Increased overall ROS level and mitochondrial ROS level, lipid peroxidation, GSH depletion | [137, 138] |
RSL3 | Inhibit GPX4 | ROS accumulation, lipid peroxidation | [44] |
Diallyl trisulfide | Inhibit GPX4 | ROS accumulation, increase the labile iron pool | [149] |
6-Gingerol | Inhibit GPX4 | ROS accumulation, GSH depletion | [150] |
Altretamine | Inhibit GPX4 | Lipid peroxidation | [139, 144] |
Dihydroartemisinin | Inhibit GPX4, elevate Fe2+ level | Increased overall ROS level and mitochondrial ROS level, lipid peroxidation, GSH depletion, decreased GPX4 and ATP level | [145] |
FIN56 | Degrade GPX4 | Lipid peroxidation | [141] |
DPI2 | GSH depletion | Lipid peroxidation | [44] |
Cisplatin | GSH depletion | ROS accumulation | [142] |
Buthionine sulfoximine | GSH depletion | Lipid peroxidation, GSH depletion | [44] |
Artesunate | Elevate Fe2+ level, GSH depletion | ROS accumulation, lipid peroxidation | [143, 148] |
Flubendazole | Induce p53 express | ROS accumulation, decreased SLC7A11 and GPX4 level | [40] |