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hypoxia tumor

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Isotope-Labeled Compounds

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-105129A
    Pimonidazole
    4 Publications Verification

    Others Cancer
    Pimonidazole is a novel hypoxia marker for complementary study of tumor hypoxia and cell proliferation in tumor . Pimonidazole accumulates in hypoxic cells via covalent binding with macromolecules or by forming reductive metabolites after reduction of its nitro group, it can be used for qualitative and quantitative assessment of tumor hypoxia .
    Pimonidazole
  • HY-105129
    Pimonidazole hydrochloride
    4 Publications Verification

    Others Cancer
    Pimonidazole is a novel hypoxia marker for complementary study of tumor hypoxia and cell proliferation in tumor . Pimonidazole accumulates in hypoxic cells via covalent binding with macromolecules or by forming reductive metabolites after reduction of its nitro group, it can be used for qualitative and quantitative assessment of tumor hypoxia .
    Pimonidazole hydrochloride
  • HY-151465

    HIF/HIF Prolyl-Hydroxylase Cancer
    HIF-1α-IN-4 is a HIF-1α inhibitor with an IC50 value of 24 nM (in HEK293T cell). HIF-1α-IN-4 downregulates VEGF and PDK1 mRNA expressions under hypoxia. HIF-1α-IN-4 can be used in the research of cancer .
    HIF-1α-IN-4
  • HY-151466

    HIF/HIF Prolyl-Hydroxylase Monoamine Oxidase Cancer
    HIF-1α-IN-5 is a HIF-1α inhibitor with an IC50 value of 24 nM (in HEK293T cell). HIF-1α-IN-5 also inhibits MAO-A activity. HIF-1α-IN-5 downregulates VEGF and PDK1 mRNA expressions under hypoxia. HIF-1α-IN-5 can be used in the research of cancer .
    HIF-1α-IN-5
  • HY-163545

    Others Cancer
    Tc-Me2P is a 99MTC-labeled acrylamide (PnAO) derivative that contains two 4-methyl-2-nitroimidazole groups. The primary activity of Tc-Me2P is as an imaging agent for tumor hypoxia. By specifically binding to hypoxic regions in tumor tissue, it can be used for single photon emission computed tomography (SPECT) and positron emission tomography (PET) imaging to detect hypoxia in tumors. Tc-Me2P can be used to study the targeting of different chemical structures in tumors and normal tissues .
    Tc-Me2P
  • HY-105129AS

    Isotope-Labeled Compounds Cancer
    Pimonidazole-d10 is the deuterium labeled Pimonidazole. Pimonidazole is a novel hypoxia marker for complementary study of tumor hypoxia and cell proliferation in tumor[1]. Pimonidazole accumulates in hypoxic cells via covalent binding with macromolecules or by forming reductive metabolites after reduction of its nitro group, it can be used for qualitative and quantitative assessment of tumor hypoxia [2].
    Pimonidazole-d10
  • HY-124875

    HIF inhibitor 64B

    HIF/HIF Prolyl-Hydroxylase Neurological Disease
    Arylsulfonamide 64B (HIF inhibitor 64B) is an inhibitor of the hypoxia-induced factor (HIF). Arylsulfonamide 64B inhibits hypoxia/HIF-induced expression of c-Met and CXCR4 and reduces primary tumor growth and metastasis of uveal melanoma mouse model .
    Arylsulfonamide 64B
  • HY-147662

    Carbonic Anhydrase Cancer
    hCAIX-IN-5 (compound 6b) is a potent and selective hCAIX inhibitor with KIs of >10000, >10000, 130.7, 829.1 nM for hCAI, hCAII, hCAIV, hCAIX, respectively .
    hCAIX-IN-5
  • HY-147665

    Carbonic Anhydrase Cancer
    hCAIX-IN-7 (compound 6c) is a potent and selective hCAIX inhibitor with KIs of >10000, >10000, 43.0, 410.6 nM for hCAI, hCAII, hCAIV, hCAIX, respectively .
    hCAIX-IN-7
  • HY-163925

    Others Cancer
    Lu-AAZTA-NI-PSMA-093 is a bivalent radiopharmaceutical agent for prostate cancer, that enhances tumor uptake and retention by combining a hypoxia-sensitive nitroimidazole (NI) moiety with a targeting moiety to PSMA .
    Lu-AAZTA-NI-PSMA-093
  • HY-141510

    ITPP hexasodium

    Others Cancer
    myo-Inositol trispyrophosphate (ITPP) hexasodium, a modifier of haemoglobin, is an allosteric effector that reduces the oxygen‐binding affinity of haemoglobin and facilitates the release of oxygen by red blood cells. myo-Inositol trispyrophosphate can reverse hypoxia, control tumor growth and improve chemotherapy response .
    myo-Inositol trispyrophosphate hexasodium
  • HY-16406

    DNA Alkylator/Crosslinker Cancer
    PR-104 (sodium) is a selective hypoxia-activated DNA cross-linking agent and can be used for the research of multiple tumor xenograft models. PR-104 (sodium), as a nitrogen mustard pre-proagent, is converted efficiently to the more lipophilic dinitrobenzamide mustards alcohol PR-104A .
    PR-104 sodium
  • HY-16405

    DNA Alkylator/Crosslinker Cancer
    PR-104 is a selective hypoxia-activated DNA cross-linking agent and can be used for the research of multiple tumor xenograft models. PR-104, as a nitrogen mustard pre-proagent, is converted efficiently to the more lipophilic dinitrobenzamide mustards alcohol PR-104A .
    PR-104
  • HY-125059

    Others Cancer
    PTC-510 Free base is a compound that selectively inhibits hypoxia-induced VEGF expression in tumor cells. PTC-510 Free base demonstrates potent activity in reducing endogenous VEGF production under hypoxic conditions. PTC-510 Free base has been shown to control tumor growth effectively while minimizing toxicity. PTC-510 Free base represents a novel therapeutic strategy to address the limitations of current anti-VEGF therapies.
    PTC-510 free base
  • HY-149257

    JAK STAT Cancer
    HAT-SIL-TG-1&AT is a Janus tyrosine kinase (JAK) inhibitor with antitumor effects. HAT-SIL-TG-1&AT is the hypoxia-activated prodrug, witch inhibits JAK-STAT signaling in tumor tissue. And HAT-SIL-TG-1&AT inhibits HEL cells proliferation and downregulated phosphorylated STAT3/5 under hypoxic conditions .
    HAT-SIL-TG-1&AT
  • HY-152293

    VEGFR ERK Cancer
    EVT801 is an orally active and selective inhibitor of VEGFR-3 (IC50=11 nM), which has antitumor effects. EVT801 inhibits not only VEGF-C-induced human endothelial cell proliferation, but also tumor (lymphatic) angiogenesis in tumor mouse models. EVT801 can reduce tumor hypoxia, immunosuppressive cytokines (CCL4, CCL5) and myeloid derived suppressor cells (MDSC) production. EVT801 has synergistic effect with immune checkpoint therapy (ICT), which improves ICT response rate and has better inhibitory effect on cancer mouse models . EVT801 is a click chemistry reagent, it contains an Alkyne group and can undergo copper-catalyzed azide-alkyne cycloaddition (CuAAc) with molecules containing Azide groups.
    EVT801
  • HY-16438
    RRx-001
    Maximum Cited Publications
    12 Publications Verification

    CD47 Apoptosis Parasite Infection Inflammation/Immunology Cancer
    RRx-001, a hypoxia-selective epigenetic agent and studied as a radio- and chem-sensitizer, triggers apoptosis and overcomes agent resistance in myeloma. RRx-001 exhibits potent anti-tumor activity with minimal toxicity . RRx-001 is a dual small molecule checkpoint inhibitor by downregulating CD47 and SIRP-α . RRx-001 is a potent inhibitor of G6PD and shows potent antimalarial activity .
    RRx-001
  • HY-146540

    HIF/HIF Prolyl-Hydroxylase Apoptosis MDM-2/p53 Cancer
    GEM-5 is a gemcitabine-based conjugate containing a HIF-1α inhibitor (YC-1) (IC50=30 nM). GEM-5 can significantly down-regulate the expression of HIF-1α and up-regulate the expression of tumor suppressor p53. GEM-5 induces the apoptosis of A2780 cells and inhibits tumor growth .
    GEM-5
  • HY-155721

    22-(4′-Pyridinecarbonyl) jorunnamycin A

    Akt mTOR Cancer
    22-(4′-py)-JA is a semisynthetic derivative of junamycin A (JA) that can be isolated from the Thai blue sponge (Xestospongia sp.). 22-(4′-py)-JA has antimetastatic activity and can inhibit AKT/mTOR/p70S6K signaling. 22-(4′-py)-JA inhibits tumor cell invasion and tube formation in human umbilical vein endothelial cells (HUVEC), downregulates metalloproteinases (MMP-2 and MMP-9), hypoxia-inducible factor 1α (HIF-1α) and vascular endothelial growth factor (VEGF). 22-(4′-py)-JA has potent anticancer activity against non-small cell lung cancer (NSCLC) .
    22-(4′-py)-JA
  • HY-122094

    HIF/HIF Prolyl-Hydroxylase Cardiovascular Disease Cancer
    Steppogenin is a potent inhibitor of HIF-1α and DLL4, with IC50 values of 0.56 and 8.46 μM, respectively. Steppogenin can be sued for the research of angiogenic diseases, such as those involving solid tumors .
    Steppogenin

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