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Pathways Recommended: Protein Tyrosine Kinase/RTK
Results for "

EphB4 tyrosine kinase

" in MedChemExpress (MCE) Product Catalog:

5

Inhibitors & Agonists

3

Antibodies

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-15268

    c-Met/HGFR PI3K DNA-PK mTOR Bcr-Abl Src VEGFR EGFR PDGFR Cancer
    PP487 is a selective dual inhibitor of Tyrosine kinase/PI3-K, with IC50 values of 0.017 μM, 0.072 μM, 0.004 μM, 0.01 μM, 0.55 μM, 0.22 μM, and < 0.01 μM against DNA-PK, mTOR, Hck, Src, EGFR, EphB4, and PDGFR, respectively. PP487 can be used in cancer research .
    PP487
  • HY-10654

    Ephrin Receptor Cancer
    EphB4-IN-2 is a tyrosine kinase inhibitor targeting the Eph family and Src family. EphB4-IN-2 binds to the ATP-binding site of the kinase domain of EphB4, and exhibits high affinity for tyrosine kinases with threonine as the gatekeeper residue, such as Abl, Lck and Src. EphB4-IN-2 can be used in research related to tumor-associated angiogenesis .
    EphB4-IN-2
  • HY-185227

    Ephrin Receptor Src Bcr-Abl EGFR Cancer
    EphB4-IN-1 is a selective EphB4 tyrosine kinase inhibitor with IC50 values of 0.16-0.30 μM. EphB4-IN-1 binds to the ATP binding site of EphB4 in a DFG-in conformation, forming four stable intermolecular hydrogen bonds. EphB4-IN-1 also inhibits Src, Abl1, Lck, and EGFR kinases. EphB4-IN-1 inhibits EphB4 autophosphorylation. EphB4-IN-1 can be used for the research of cancer, such as non small cell lung cancer .
    EphB4-IN-1
  • HY-171217

    Src Bcr-Abl Ephrin Receptor Cancer
    TG-100435 is a multitargeted, orally active protein tyrosine kinase inhibitor, with Ki of 13 to 64 nM for Src, Lyn, Abl, Yes, Lck, and EphB4. TG-100435 plays an important role in cancer research .
    TG-100435
  • HY-179572

    EGFR Akt Mitochondrial Metabolism Metabolic Disease
    STA-013 is a EphB tyrosine kinase inhibitor. STA-013 shows promising potency against EphB1 (IC50 = 0.69 µM), EphB2 (IC50 = 1.73 µM), and EphB4 (IC50 = 1.02 µM) tyrosine kinases. STA-013 results a inhibition of the EphB phosphorylated signal, coupled with increased p-AKT/AKT signaling, to suggest insulin signaling activation. STA-013 inhibits EphB tyrosine kinase by enhancing insulin receptor beta (IRβ) signaling, and decreasing TGF-β levels in the heart. STA-013 can be used for the study of type 2 diabetes and cardiac complications (diabetic cardiomyopathy) .
    STA-013

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