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BALB/c mice model

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9

Inhibitors & Agonists

1

Inhibitory Antibodies

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-169120

    Telomerase Cancer
    FKB04 is a telomeric repeat binding factor 2 (TRF2) inhibitor that exerts its antitumor activity by disrupting the telomere maintenance mechanism in liver cancer cells, leading to T-loop defects, telomere shortening, and cellular senescence. Additionally, FKB04 can inhibit tumor growth in a human liver cancer xenograft mouse model (with Huh-7 cells implanted in BALB/c mice). FKB04 can be used in liver cancer research .
    FKB04
  • HY-P990215

    Interleukin Related Infection Inflammation/Immunology
    Anti-Mouse IL-27 p28 Antibody (MM27.7B1) is a mouse-derived anti-mouse IL-27 p28 IgG2a, κ type antibody inhibitor. Anti-Mouse IL-27 p28 Antibody (MM27.7B1) can neutralize IL-27. Anti-Mouse IL-27 p28 Antibody (MM27.7B1) delays CD8+ T cell reconstitution mediated by IL-27 after murine anti-thymocyte globulin (mATG) treatment in BALB/c heart allografts mice models .
    Anti-Mouse IL-27 p28 Antibody (MM27.7B1)
  • HY-15616

    Melanocortin Receptor Cancer
    BMS-470539 is a synthetic MC-1R agonist with potent anti-inflammatory properties. BMS-470539 selectively activates human and murine MC-1R with EC50 values ??of 16.8 nM and 11.6 nM, respectively. In vitro studies have shown that BMS-470539 is able to dose-dependently inhibit TNF-alpha-induced NF-kB activation in human melanoma cells expressing MC-1R. In vivo, subcutaneous injection of BMS-470539 into BALB/c mice effectively inhibited LPS-induced TNF-alpha production with an ED50 of approximately 10 μmol/kg and a pharmacodynamic half-life of approximately 8 hours. It also significantly reduced leukocyte infiltration in a lung inflammation model and attenuated paw swelling in a delayed-type hypersensitivity model, highlighting its efficacy as an anti-inflammatory agent through MC-1R modulation .
    BMS-470539
  • HY-169928

    DNA/RNA Synthesis Cancer
    WRN inhibitor 14 (compound S35) is an orally active WRN inhibitor with anticancer activity. WRN inhibitor 14 results in tumor growth inhibition in the SW48 xenograft model in BALB/c nude mice .
    WRN inhibitor 14
  • HY-123237

    c-Met/HGFR FLT3 Trk Receptor Apoptosis Autophagy Cancer
    KRC-108, an aminopyridine, is an orally active multiple kinase inhibitor with IC50s of 80 nM, 23 nM, 3 nM, 70 nM, 30 nM, 39 nM for c-Met, c-Met M1250T, c-Met Y1230D, Ron, Flt3 and TrkA, respectively. KRC-108 induces cell cycle arrest, apoptotic cell death, and autophagy. KRC-108 exhibits anti-tumor activity in vivo in HT29 colorectal cancer, NCI-H441 lung cancer xenograft models in athymic BALB/c nu/nu mice .
    KRC-108
  • HY-175643

    COX Inflammation/Immunology
    COX-2-IN-58 is a COX-2 inhibitor. COX-2-IN-58 exhibits remarkable anti-inflammatory activity in Carrageenan (HY-125474)-induced paw edema model of Balb/C mice. COX-2-IN-58 can be used for the research of inflammation .
    COX-2-IN-58
  • HY-170773

    Bacterial Infection
    Mtb-IN-9 (Compound M1) is a specific Mtb inhibitor that inhibits MtbFadD32 and MtbFadD28 activity. Mtb-IN-9 curtails the Mtb survival in infected macrophages and reduces Mtb burden and tubercular granulomas in a chronic infection model of BALB/c mice. Mtb-IN-9 is promising for research of tuberculosis .
    Mtb-IN-9
  • HY-181146

    TBD09

    Bacterial Infection
    MK-7762 is an orally active xazolidinone compound with antitubercular activity. MK-7762 inhibits MAO-B and mammalian mitochondrial protein synthesis. MK-7762 reduces lung bacterial burden in BALB/c mouse models of acute and chronic tuberculosis infection, penetrates caseous necrotic lung lesions in C3HeB/FeJ mice, and maintains concentrations above unbound MIC in lesion compartments. MK-7762 can be used for the research of tuberculosis .
    MK-7762
  • HY-181996

    Btk Caspase Apoptosis PARP Cancer
    BTK-IN-47 (Compound 9e) is a covalent, selective BTK inhibitor with an IC50 of 5.15 nM against BTK. BTK-IN-47 inhibits the BTK signaling pathway, induces cell cycle arrest, and activates the canonical Caspase-dependent Apoptotic pathway (promoting the cleavage of Caspase-3, Caspase-7 and PARP), without inducing necroptosis, pyroptosis or ferroptosis. BTK-IN-47 exerts dose-dependent antiproliferative activity against hematologic tumor cell lines. BTK-IN-47 exhibits dose-dependent in vivo antitumor activity in a Ramos cell xenograft model in BALB/c nude mice. BTK-IN-47 can be used for the research of hematologic malignancies .
    BTK-IN-47

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