KZ-02
Based on 1 Customer Validation
KZ-02 is an orally active dual MEK1/Pim-1 kinase inhibitor, with an IC50 of 1.07 nM against MEK1 and an IC50 of 1.34 μM against Pim-1. KZ-02 reduces the phosphorylation levels of ERK and Cdc25C, and promotes the proteasomal degradation of Pim-1 protein. KZ-02 inhibits cancer cell growth and exerts anti-tumor effects. KZ-02 can be used in the research of colorectal cancer.
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- CAS No.: 1801756-14-8
- 화학식: C15H11F2IN4O3S
- 분자량:492.24
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보관:
-20°C, sealed storage, away from moisture and light
* In solvent : -80°C, 6 months; -20°C, 1 month (sealed storage, away from moisture and light)
All MEK Isoforms
More
Biological Activity
제품 설명
IC50 & Target
[1]|
MEK1 1.07 nM (IC50) |
PIM1 1.34 μM (IC50) |
In Vitro
KZ-02 (0.01-1000 nmol/L; 24-72 h) potently inhibits Colo205 human colorectal cancer cell proliferation with an IC50 of 0.015 nmol/L at 48 h, which is 1033-fold more potent than AZD6244[1].
KZ-02 (1-1000 nmol/L; 2 h, unspecified) inhibits MEK and Pim-1 activity in Colo205 and HT29 human colorectal cancer cells by decreasing ERK and Cdc25C phosphorylation, reducing Pim-1 protein levels, and inhibiting phosphorylation of Pim-1 downstream targets P21Cip1/Waf1, P27Kip1, and Bad[1].
KZ-02 (10 nmol/L; 2 h) increases Pim-1 mRNA levels in Colo205 and HT29 human colorectal cancer cells following 2 h of treatment at 10 nmol/L[1].
KZ-02 (10 nmol/L; 2 h) decreases Pim-1 protein levels in Colo205 and HT29 human colorectal cancer cells by promoting proteasome-dependent degradation[1].
MedChemExpress (MCE) has not independently confirmed the accuracy of these methods. They are for reference only. Further protocols information, click here.
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Cell Line:Colo205 and HT29 human colorectal cancer cells
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Concentration:1, 10, 100 and 1000 nM
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Incubation Time:Pretreatment for 2 hours, then 48 hours
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Result:Decreased Pim-1 protein levels and inhibited phosphorylation of ERK (a MEK substrate) and Cdc25C (a Pim-1 substrate) in both cell lines at 10 nM for 2 h.
Decreased Pim-1 protein levels and phosphorylation of P21Cip1/Waf1 (Thr145), P27Kip1 (Thr198), and Bad (Ser112) in Colo205 cells at 1-1000 nM.
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Cell Line:Colo205 and HT29 human colorectal cancer cells
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Concentration:10 nM
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Incubation Time:Pretreatment for 2 hours, then 48 hours
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Result:Significantly increased Pim-1 mRNA levels in both Colo205 and HT29 cells, similar to the effect of AZD6244.
In Vivo
MedChemExpress (MCE) has not independently confirmed the accuracy of these methods. They are for reference only.
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Animal Model:BALB/c (male, ~20 g, subcutaneously injected with 1×107 Colo205 human colon cancer cells)[1]
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Dosage:1 mg/kg
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Administration:p.o.; once daily; 20 days
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Result:Inhibited Colo205 xenograft growth by 56.6%.
Showed no apparent effect on mouse body weight during treatment.
Chemical Information
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CAS No. 1801756-14-8
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Appearance Solid
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분자량 492.24
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화학식 C15H11F2IN4O3S
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Color Light yellow to yellow
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SMILES
O=C(C1=CC2=C(C(F)=C1NC3=CC=C(C=C3F)I)N=NS2)NOCCO
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선적
Room temperature in continental US; may vary elsewhere.
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보관
-20°C, sealed storage, away from moisture and light
* In solvent : -80°C, 6 months; -20°C, 1 month (sealed storage, away from moisture and light)
Protocol
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Kinase activity and phosphorylation assays
Kinase activity assays measure the ability of kinases to transfer phosphate groups from ATP to specific substrates, while phosphorylation assays detect the presence and levels of phosphorylated proteins. Common methods include radiolabeled ATP incorporation (e. g. ,), ADP release detection via bioluminescence (e. g. ,[3]), enzyme-linked immunosorbent assays (ELISA) for phospho-specific epitopes (e. g. ,[6]), and microtiter-based formats for high-throughput screening (e. g. ,[8]). The ADP-Glo assay quantifies kinase activity by measuring ADP produced during phosphorylation using a luciferase-based system. Radiometric assays involve autoradiography or scintillation counting after incorporation of 32P-labeled ATP into substrate proteins. ELISA-based approaches rely on phospho-specific antibodies to detect activated kinases in cell lysates or purified samples.
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Western Blot
Western blotting (WB) is a commonly used experimental method in molecular biology, biochemistry, and immunogenetics for identifying and quantifying target proteins. It combines gel electrophoresis with immunoassay, enabling researchers to analyze protein expression, post-translational modifications, and molecular weight.
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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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Protocol for Cell Counting and Cell Density Analysis
Cell counting and cell-density analysis estimate the number of cells in a known volume or field area. Manual hemocytometer counting uses a chamber of defined geometry to convert counted cells into cells/mL, while automated counters and image-analysis workflows detect cell objects from optical, brightfield, fluorescence, impedance, or digital-image features. Trypan blue viability counting is based on dye exclusion: viable cells with intact membranes exclude dye, while non-viable cells with compromised membranes stain blue. The readout is total cell density, viable-cell density, dead-cell density, and percent viability. Cell density can also be estimated from microscopy images by counting objects per image area, from flow cytometry using calibrated volume or reference particles, or from in situ microscopy in bioreactors after calibration against reference methods such as hemocytometer or flow cytometry.
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Somatic Cell Culture
A method of simulating the in vivo environment in vitro to maintain the cell growth, differentation and main functions.
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CCK-8/WST-8 Cell Proliferation Assay
The CCK-8/WST-8 assay is based on the reduction of the water-soluble tetrazolium salt WST-8 to a water-soluble formazan product by cellular dehydrogenases in metabolically active cells, where the generated formazan amount is proportional to the number of living cells and is quantified by measuring absorbance in the visible range, providing a colorimetric readout for cell viability and proliferation assessment. This class of tetrazolium-based assays improves upon earlier MTT-based systems by producing a water-soluble formazan, eliminating the need for organic solubilization steps and enabling direct spectrophotometric measurement in culture medium.
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Protocol for Kinase activity and phosphorylation assays
Kinase activity assays measure transfer of phosphate from ATP to a protein or peptide substrate, generating phosphorylated substrate, ADP, or incorporated radiolabeled phosphate as the readout; phosphorylation assays measure site-specific phosphorylation in cells or tissues as a proxy for kinase-pathway activation, inhibition, or substrate regulation. Phosphorylation can be detected by phospho-specific Western blot, immunoprecipitation kinase assay, phospho-immunofluorescence, phospho-flow cytometry, luminescent ADP detection, radiolabeled ATP incorporation, or reporter-based pathway assays, and these readouts can be applied to cancer cells, primary neurons, mouse tumors, organoids, inflammatory macrophages, ferroptosis studies, and mitophagy studies when the kinase target is biologically relevant.
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Cell Counting-Based Growth Curve Assay
Cell counting-based growth curve assays quantify cell proliferation by directly measuring changes in viable cell number over time using manual or automated counting methods such as hemocytometer-based counting or instrument-assisted cell enumeration, enabling construction of growth curves that reflect population expansion dynamics in response to culture conditions. A widely used approach is trypan blue exclusion with hemocytometer counting, where membrane-compromised (non-viable) cells take up the dye, allowing discrimination between viable and non-viable cells while simultaneously enabling total cell number quantification. Repeated sampling across time points allows estimation of proliferation rate, growth phases, and comparative growth kinetics between experimental conditions.
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MTT Cell Proliferation Assay
The MTT assay is a colorimetric endpoint assay for estimating viable cell number, cell growth, cytotoxicity, or cell activation in cultured mammalian cells. Living cells reduce the yellow tetrazolium salt MTT into purple/blue formazan, while dead cells do not generate the same signal; the resulting color can be quantified with a multiwell spectrophotometer. MTT reduction is commonly interpreted as a readout of metabolic activity that often correlates with viable cell number, but it should not be treated as a direct cell-counting method unless the assay is optimized for the cell type and experimental condition. Studies show that MTT reduction can involve mitochondrial and non-mitochondrial reducing systems, and formazan may accumulate in intracellular lipid droplets rather than simply marking mitochondria.
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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.
순도&문서
References
Calculators
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)