WMK-1
WMK-1 is a 1,2,4,5-tetraoxane derivative and ferroptosis inducer, with significantly higher cytotoxicity against cancer cells than non-cancerous cells. WMK-1 triggers ferroptosis in cancer cells and cancer stem cells. WMK-1 can be used for the research of cancer.
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- No. CAS: 2814563-83-0
- Fòrmula: C35H51IN2O6
- Peso molecular:722.69
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Almacenamiento:
Please store the product under the recommended conditions in the Certificate of Analysis.
Actividad biológica
Descripciòn
In Vitro
WMK-1 (compound 48) (48 h) potently inhibits viability of MDA-MB-231, Hela, T47D, Jurkat, HCT116, and HL-60 cancer cells with IC50 values ranging from 1.0 μM to 6.3 μM[1].
WMK-1 (48 h) potently inhibits viability of HeyA8 ovarian cancer cells (IC50 = 2.3 μM) and HeyA8sp ovarian cancer stem cell spheres (IC50 = 1.2 μM)[1].
WMK-1 (24 h) induces ferroptosis in HeyA8 ovarian cancer cells, HeyA8 ovarian cancer stem cells, and HeyA8 ovarian cancer stem cell spheres[1].
WMK-1 (5 μM; 6 h) increases lipid reactive oxygen species levels in MDA-MB-231 triple negative breast cancer cells[1].
WMK-1 (5 μM) induced cell death in MDA-MB-231 triple-negative breast cancer cells at indicated concentrations within 24 h, and this effect was significantly reversed by 30 μM liproxstatin-1 (HY-12726) pretreatment[1].
MedChemExpress (MCE) has not independently confirmed the accuracy of these methods. They are for reference only. Further protocols information, click here.
In Vivo
MedChemExpress (MCE) has not independently confirmed the accuracy of these methods. They are for reference only.
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Animal Model:Nude mice (female)[1]
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Dosage:5 mg/kg; 10 mg/kg
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Administration:i.p.
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Result:Reduced ovarian cancer xenograft tumor size.
Caused no abnormal behavior or weight loss in treated animals during the entire study period.
Chemical Information
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No. CAS 2814563-83-0
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Peso molecular 722.69
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Fòrmula C35H51IN2O6
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SMILES
CC(C)(C)C1CCC2(OOC3(CCC(OC(NCCC[N+](CC4=CC=CC=C4)(C)CC5=CC=CC=C5)=O)CC3)OO2)CC1.[I-]
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Envío
Room temperature in continental US; may vary elsewhere.
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Almacenamiento
Please store the product under the recommended conditions in the Certificate of Analysis.
Protocolo
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Cell Cytotoxicity Assay
Cytotoxicity assays are usually based on the assessment of cell membrane damage, which can also be indirectly detected by measuring cell viability. Detection methods include MTT assay, CKK-8 assay, LDH assay and ATP assay, etc.
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Mammalian live/dead viability and cytotoxicity staining
Live/dead viability and cytotoxicity staining assays are based on the simultaneous detection of intracellular esterase activity in metabolically active (viable) cells and membrane integrity loss in non-viable cells. In commonly used dual-staining approaches, membrane-permeant fluorogenic substrates are converted by intracellular esterases into fluorescent products in live cells, while impermeant DNA-binding dyes selectively enter cells with compromised plasma membranes and label nucleic acids in dead or dying cells, enabling discrimination between viable and non-viable populations by fluorescence microscopy or flow cytometry.
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Ferroptosis Solutions
Ferroptosis is an iron-dependent, non-apoptotic form of regulated cell death characterized by lethal lipid peroxidation and sensitivity to suppression by iron chelators or lipophilic radical-trapping antioxidants. The core pathway links cystine uptake through system Xc−, glutathione availability, GPX4-dependent detoxification of phospholipid hydroperoxides, iron-dependent oxidative reactions, and polyunsaturated-phospholipid metabolism into a cell-death program that is biochemically and morphologically distinct from apoptosis, necrosis, and autophagy. The ferroptosis pathway is experimentally linked to phenotype through chemical and genetic perturbation. Erastin induces ferroptosis by inhibiting cystine uptake through system Xc− and weakening antioxidant defenses, while GPX4 inhibition or depletion causes lipid peroxide accumulation and ferroptotic cancer-cell death. ACSL4 and oxidizable arachidonoyl- or adrenoyl-containing phosphatidylethanolamines shape ferroptosis sensitivity by con
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Cell Viability Determination by MTT Colorimetric Assay
The following protocol uses the MTT colorimetric assay as a classic literature-established method for assessing cell viability/metabolic activity in cultured mammalian cells. MTT[3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltetrazolium bromide] is reduced by metabolically active cells to a colored formazan product; the amount of formazan is quantified spectrophotometrically and provides an indirect measure of metabolically active viable cells. Importantly, MTT reduction reflects cellular oxidoreductase/metabolic activity rather than an absolute direct count of living cells, so changes in cellular metabolism can alter the signal independently of cell number.
Pureza y Documentación
Referencias
Calculators
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)