JAK/Stat

Items 451-500 of 1052

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  1. PIM Inhibitor

    Uzansertib is a potent, orally active pan-PIM kinase inhibitor that operates through ATP-competitive mechanisms, exhibiting IC50 values of 0.24 nM, 30 nM, and 0.12 nM for PIM1, PIM2, and PIM3, respectively. This compound demonstrates significant anti-proliferative activity across a range of hematologic tumor cell lines, making it a valuable tool for research in cancer biology and therapeutic development. Researchers can utilize Uzansertib to explore the roles of PIM kinases in tumorigenesis and potential treatment strategies.
  2. Pim-1/2 Kinase Inhibitor

    Pim-1/2 kinase inhibitor 1 is a selective inhibitor of Pim-1 and Pim-2 kinases, targeting their phosphorylation activity. This compound effectively disrupts the phosphorylation of key substrates, including 4E-BP1 and p27Kip1, which are crucial for cell cycle regulation and protein synthesis. Pim-1/2 kinase inhibitor 1 is primarily utilized in cancer research, particularly in studies focusing on the mechanisms underlying prostate cancer progression.
  3. PIM Inhibitor

    AZD1897 is a potent inhibitor of PIM1, PIM2, and PIM3 kinases, demonstrating IC50 values of less than 3 nM for each target. This compound exhibits significant anticancer activity, particularly in acute myeloid leukemia (AML) cells, where it shows a synergistic effect when used in combination with Capivasertib. The mechanism of action involves the inhibition of critical cellular pathways, including mTOR and MCL1, making AZD1897 a valuable tool for cancer research.
  4. Pim Inhibitor

    K00135 is a potent and selective inhibitor of PIM kinases, primarily targeting PIM1, PIM2, and PIM3. This compound demonstrates significant inhibition of cell survival and clonogenic growth in acute leukemia cells. Additionally, K00135 effectively reduces the phosphorylation of downstream targets of the PIM signaling pathway, making it a valuable tool for cancer research focusing on PIM kinase-related mechanisms.
  5. Pim/DAPK3 Inhibitor

    HS56 is an ATP-competitive dual inhibitor of Pim kinases and DAPK3, demonstrating Ki values of 0.26 μM for DAPK3, 0.208 μM for Pim-3, and over 100 μM for Pim-2 and Pim-1. This compound effectively inhibits LC20 phosphorylation and smooth muscle contraction, leading to a reduction in blood pressure in spontaneously hypertensive mouse models. HS56 is suitable for research investigating the mechanisms and potential treatments for hypertension.
  6. Pim-1 Kinase Inhibitor

    Pim-1 Kinase Inhibitor 13 is a selective inhibitor of Pim-1 kinase, exhibiting an IC50 of 4.41 μM. This compound is instrumental in the study of immunological processes and cancer biology, providing valuable insights into Pim-1's role in cell survival and proliferation. Its application in research may facilitate the development of targeted therapies for malignancies associated with aberrant Pim-1 activity.
  7. Pim Inhibitor

    DHPCC-9 is a selective inhibitor of Pim kinase, a critical regulator of cell survival and proliferation. This compound demonstrates potent biological activity in modulating cancer cell growth and has significant implications for cancer research, particularly in the investigation of therapeutic strategies targeting the Pim signaling pathway. Researchers can utilize DHPCC-9 to explore its effects on cellular responses and potential applications in developing anti-cancer therapies.
  8. Pim Inhibitor

    R8-T198wt is a cell-permeable peptide that functions as a Pim-1 kinase inhibitor. By targeting the carboxyl-terminal region of p27Kip1, it exhibits significant anti-tumor activity. This reagent is ideal for research applications involving cancer biology and cellular signaling pathways associated with cell cycle regulation and apoptosis.
  9. Pan-PIM Inhibitor

    GDC-0570 is a potent and selective pan-PIM inhibitor designed for oral administration. It exhibits pronounced antitumor activity and has shown synergistic effects when combined with Sotorasib in models of acquired KRAS-resistant non-small cell lung cancer (NSCLC). This compound serves as a valuable tool for investigating the role of PIM kinases in cancer biology and therapeutic resistance.
  10. PIM-1 Inhibitor

    PIM1-IN-7 is a potent inhibitor of the PIM-1 kinase, exhibiting an IC50 of 0.67 μM. This compound demonstrates significant cytotoxicity against HCT-116 and MCF-7 cancer cell lines, with IC50 values of 42.9 μM and 7.68 μM, respectively. Its ability to selectively inhibit PIM-1 makes it a valuable tool for investigating the role of this kinase in cancer biology and for exploring potential therapeutic strategies.
  11. Pim-1 Inhibitor

    Pim-1 kinase inhibitor 5 is a selective inhibitor of Pim-1 kinase, exhibiting an IC50 value of 0.61 μM. This compound demonstrates significant cytotoxicity across various cancer cell lines, including HepG2, MCF-7, PC3, and HCT-116, with IC50 values ranging from 6.95 to 20.19 μM. It serves as a valuable tool for researching the modulation of Pim-1 in cancer biology and therapeutic applications.
  12. PIM Inhibitor

    FD1024 is a potent PIM inhibitor with IC50 values of 1.96 nM, 38.9 nM, and 4.17 nM for PIM1, PIM2, and PIM3, respectively. This compound exhibits strong antiproliferative activity against various acute myeloid leukemia (AML) cell lines, showing effective concentrations of 0.16 μM, 0.12 μM, 1.05 μM, and 1.39 μM for EOL-1, MV-4-11, KG-1, and MOLM-16 cells. Additionally, FD1024 demonstrates significant antitumor efficacy in in vivo mouse models, making it a valuable tool for research into AML therapeutic strategies.
  13. PIM-1 Inhibitor

    PIM1-IN-6 is a potent inhibitor of Pim-1 kinase, exhibiting an IC50 of 0.60 μM. This compound demonstrates significant cytotoxic activity in HCT-116 and MCF-7 cancer cell lines, with IC50 values of 1.51 μM and 15.2 μM, respectively. PIM1-IN-6 holds promise for research applications in cancer biology, particularly in studies aimed at elucidating the role of Pim-1 in tumor proliferation and survival.
  14. Pim-1 Kinase Inhibitor

    10-DEBC is a selective inhibitor of Pim-1 kinase, demonstrating potent inhibitory activity with an IC50 of 1.28 μM. This compound plays a critical role in regulating cell proliferation and survival, making it a valuable tool for research in cancer biology and therapeutic interventions. Its specificity for Pim-1 kinase supports its use in studies exploring signal transduction pathways and the development of targeted cancer therapies.
  15. PIM1 Inhibitor

    PIM1-IN-4 is a selective inhibitor of PIM1 kinase, demonstrating potent activity in blocking PIM1-mediated signaling. In addition to PIM1, PIM1-IN-4 exhibits significant inhibition of several other kinases, including SGK-1, PKA, CaMK-1, GSK3β, and MSK1. This compound is valuable for investigating its role in cancer biology and therapeutic strategies targeting PIM1-related pathways.
  16. Pim-1 Inhibitor

    Pim-1 kinase inhibitor 3 (Compound H5) is a selective inhibitor of Pim-1 kinase, exhibiting an IC50 of 35.13 nM. This compound effectively modulates the activity of Pim-1, a serine/threonine kinase involved in cell growth and survival signaling pathways. It is valuable for studying the role of Pim-1 in cancer and other diseases where its dysregulation is implicated.
  17. Pim Inhibitor

    MNK/PIM-IN-1 is a dual inhibitor targeting MNK and PIM kinases, showcasing a favorable pharmacokinetic profile. This reagent exhibits significant antitumor activity and is applicable in studying the roles of MNK and PIM signaling pathways in cancer biology. It is an essential tool for researchers investigating the mechanisms of cell proliferation and survival in various malignancies.
  18. PIM1 Inhibitor

    NMS-P645 is a potent PIM1 inhibitor that exhibits anti-proliferative activity, particularly when used in combination with GDC-0941 in both TMPRSS2/ERG positive and negative prostate cancer cells. By reversing PIM1-induced pro-survival signals, NMS-P645 contributes valuable insights into the mechanisms underlying prostate cancer resistance and cell survival. This compound is suitable for research applications focused on prostate cancer treatment and the exploration of PIM1 signaling pathways.
  19. Pim-1 Kinase Inhibitor

    Pim-1 kinase inhibitor 4 is a potent inhibitor of Pim-1 kinase, with an inhibitory concentration (IC50) of 17.01 nM. This compound exhibits antioxidant activity and inhibits DPPH, contributing to its biological profile. Additionally, Pim-1 kinase inhibitor 4 induces apoptosis in PC-3 prostate cancer cells, demonstrating an IC50 of 16 nM for growth inhibition. This reagent is valuable for research focused on prostate cancer and cellular apoptosis mechanisms.
  20. Pim-2 Inhibitor

    PIM-IN-2 is a potent inhibitor of Pim-2 kinases, exhibiting an IC50 of 25 nM. This compound has demonstrated significant antiapoptotic properties and promotes cell survival, making it a valuable tool in cancer research. Its elevated expression in various human tumors positions PIM-IN-2 as a relevant reagent for studies on tumor biology and therapeutic strategies targeting the Pim kinase pathway.
  21. Pim-1 Inhibitor

    Pim-1 kinase inhibitor 6 is a selective inhibitor of Pim-1 kinase, demonstrating an IC50 value of 0.46 μM. This compound exhibits significant cytotoxic activity against various cancer cell lines, making it a valuable tool for cancer research. Its ability to target and inhibit Pim-1 kinase contributes to its potential applications in investigating therapeutic strategies for malignancies.
  22. Pim Inhibitor

    PIM-IN-4 is a potent inhibitor of Pim kinases, exhibiting Ki values of 2 nM, 3 nM, and 0.5 nM for Pim-1, Pim-2, and Pim-3, respectively. By inhibiting the phosphorylation of the pro-apoptotic protein Bad, PIM-IN-4 effectively induces apoptosis in leukemic cells. This compound is valuable for research into leukemia and related signaling pathways, contributing to the understanding of therapeutic strategies in hematological malignancies.
  23. PIM-1/PIM-2 Inhibitor

    Pim-1/2 kinase inhibitor 2 is a selective competitive inhibitor of PIM-1 and PIM-2 kinases, with IC50 values of 1.31 μM and 0.67 μM, respectively. This compound exhibits low cytotoxicity in normal human lung fibroblast Wi-38 cells while demonstrating potent anticancer activity against various cancer cell lines, including myeloid leukemia (NFS-60), liver (HepG-2), prostate (PC-3), and colon (Caco-2). It serves as a valuable tool for studying the therapeutic potential of PIM inhibition in cancer research.
  24. EGFR Inhibitor

    Afatinib N-Oxide is an oxidative degradation product of Afatinib dimaleate, an irreversible inhibitor of the epidermal growth factor receptor (EGFR) family. This compound serves as a valuable tool for characterizing the stability and degradation pathways of Afatinib in chemical research. It may also aid in understanding the mechanistic effects of EGFR inhibition in various biological contexts.
  25. EPAC1 Activator, STAT3 Modulator

    DM243 is an EPAC1 activator and STAT3 modulator known for its ability to increase GTP-bound Rap1 levels specifically in EPAC1-expressing cells, while exhibiting no effects on EPAC2 or PKA. This compound effectively reduces IL-6/IL-6Rα-induced STAT3 phosphorylation in endothelial cells and suppresses TGF-β1-mediated fibroblast-to-myofibroblast transition, leading to decreased levels of α-smooth muscle actin and Collagen I in lung fibroblasts. Additionally, DM243 demonstrates minimal cytotoxicity in normal human lung fibroblasts, making it a valuable tool for studies related to fibrosis and inflammation.
  26. JAK/STAT Inhibitor

    Phenylpyropene C is a JAK/STAT pathway inhibitor known to effectively inhibit interferon-gamma (IFN-γ) mediated expression of reporter genes, with an IC50 range of 5.4 to 10.8 μM. Additionally, it serves as an inhibitor of acyl-CoA, exhibiting an IC50 of 16.0 μM. This compound is valuable for research applications focusing on the modulation of immune responses and the exploration of cytokine signaling pathways.
  27. STAT6 Modulator

    Medrysone, also known as 6α-Methyl-11β-hydroxyprogesterone, functions as a STAT6 modulator with significant implications for macrophage polarization. This compound enhances IL-4-induced STAT6 activation, leading to increased expression of M2 macrophage markers and elevated secretion of pro-angiogenic factors such as VEGF and CCL2. Additionally, Medrysone promotes the migratory capacity of M2-like macrophages towards endothelial cells, thereby facilitating tissue repair processes. Its efficacy in regulating macrophage polarization makes it a valuable tool for research on corneal injury and wound healing applications.
  28. JAK2 inhibitor

    XL019 is an orally bioavailable inhibitor of Janus-associated kinase 2 (JAK2) with potential antineoplastic activity.
  29. PKC inhibitor

    Go6976 is a potent PKC inhibitor with IC50 of 7.9 nM, 2.3 nM, and 6.2 nM for PKC (Rat brain), PKCα, and PKCβ1, respectively. Also a potent inhibitor of JAK2 and Flt3.
  30. Butein is a plant polyphenol that acts as a specific protein tyrosine kinase inhibitor.
  31. EGFR inhibitor

    CHMFL-EGFR-202 is a potent, irreversible inhibitor of epidermal growth factor receptor (EGFR) mutant kinase, with IC50s of 5.3 nM and 8.3 nM for drug-resistant mutant EGFR T790M and WT EGFR kinases, respectively.
  32. pan-JAK inhibitor

    PF-06263276 (PF 6263276) is a potent and selective pan-JAK inhibitor, with IC50s of 2.2 nM, 23.1 nM, 59.9 nM and 29.7 nM for JAK1, JAK2, JAK3 and TYK2, respectively.
  33. EGFR inhibitor

    EGFR-IN-2 is a a noncovalent, irreversible, mutant-selective second generation EGFR inhibitor.
  34. PKC inhibitor

    PKC 412 is a broad spectrum protein kinase inhibitor. Inhibits conventional PKC isoforms α/β/γ, PDFRβ, VEGFR2, Syk, Flk-1, Flt3, Cdk1/B, PKA, c-Kit, c-Fgr, c-Src, VEGFR1 and EGFR. Displays potent antitumor activity.
  35. EGFR inhibitor

    PD168393 is a potent, cell-permeable, irreversible inhibitor of EGFR with IC50 value of 700 pM.
  36. JAK2 Inhibitor

    CEP33779 is a selective JAK2 inhibitor with IC50 of 1.8 nM.
  37. EGFR inhibitor

    CGP-52411 is a slective inhibitor of the epidermal growth factor receptor (EGFR) (IC50 = 0.3 μM in vitro). Also inhibits and reverses the formation of Aβ42 fibers associated with Alzheimer's disease.
  38. ErbB inhibitor

    ARRY-543 is a novel, oral ErbB family inhibitor that, unlike approved ErbB inhibitors, targets all members of the ErbB family, including ErbB3, either directly or indirectly, and has potential advantages in treating tumors that signal through multiple ErbB family members.
  39. Pdia3/ERp57 activator, STAT3 inhibitor

    Diosgenin glucoside, a saponin compound extracted from Tritulus terrestris L., provides neuroprotection by regulating microglial M1 polarization. Diosgenin glucoside protects against spinal cord injury by regulating autophagy and alleviating apoptosis .
  40. Pim Inhibitor

    CX-6258 is a potent, selective, and orally efficacious pan-Pim kinases inhibitor.
  41. EGFR inhibitor

    AG 1517 is a potent and selective ATP competitive inhibitor of the epidermal growth factor receptor tyrosine kinase EGFR.
  42. EGFR inhibitor

    CO-1686 is a novel, oral, targeted covalent (irreversible) inhibitor of the cancer-causing mutant forms of epidermal growth factor receptor (EGFR) currently being studied for the treatment of non-small cell lung cancer (NSCLC).
  43. EGFR inhibitor

    CL-387785 is an irreversible inhibitor of EGFR with IC50 of 370+/-120 pM; is able to overcome resistance caused by the T790M mutation on a functional level.
  44. JAK2/HDAC dual inhibitor

    JAK/HDAC-IN-1 is a potent JAK2/HDAC dual inhibitor, exhibits antiproliferative and proapoptotic activities in several hematological cell lines.
  45. EGFR Inhibitor

    AST-1306, a novel anilino-quinazoline compound, inhibits the enzymatic activities of wild-type epidermal growth factor receptor (EGFR) and ErbB2 as well as EGFR resistant mutant in both cell-free and cell-based systems.
  46. JAK2 inhibitor

    TG101209, a novel JAK2 inhibitor, has significant in vitro activity in multiple myeloma and displays preferential cytotoxicity for CD45+ myeloma cells.

  47. JAK inhibitor

    NVP-BSK805 is a potent and selective inhibition of polycythemia by the quinoxaline JAK2 inhibitor that potently suppressed recombinant human erythropoietin-induced polycythemia and extramedullary erythropoiesis in mice and rats.

  48. EGFR Inhibitor

    BMS 599626 is an orally bioavailable inhibitor of the HER1, HER2 and HER4 tyrosine kinases (IC50=22, 32 and 190 nM, respectively) with potential antineoplastic activity.
  49. HER2/EGFR inhibitor

    TAK-285 is an investigational HER2/EGFR inhibitor that penetrates the CNS in Rats with an Intact Blood Brain Barrier (BBB). TAK-285 has inhibitory activity against HER2 and EGFR kinases with IC50 values for HER2 and EGFR of 17 nmol/L (95% CI 12-24) and 23 nmol/L (95% CI 18-30), respectively.[1]
  50. JAK inhibitor

    BMS-911543 is an orally available small molecule targeting a subset of Janus-associated kinase (JAK) with potential antineoplastic activity.

Items 451-500 of 1052

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