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Results for "

NNMT inhibitor

" in MedChemExpress (MCE) Product Catalog:
Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-112584
    JBSNF-000088
    3 Publications Verification

    6-Methoxynicotinamide

    Others Metabolic Disease
    JBSNF-000088 (6-Methoxynicotinamide), a analog of nicotinamide (NA), is a potent and orally active Nicotinamide N-methyltransferase (NNMT) inhibitor with IC50s of 1.8 µM, 2.8 µM, and 5.0 µM for human NNMT, monkey NNMT and mouse NNMT, respectively. JBSNF-000088 inhibits NNMT activity, reduces MNA levels and drives insulin sensitization, glucose modulation and body weight reduction in animal models of metabolic disease .
    JBSNF-000088
  • HY-128464

    Others Metabolic Disease
    LL320 is a selective NNMT inhibitor with a Ki,app of 6.8 nM. LL320 exhibits interactions with RNMT, DPH5, and SAHH .
    LL320
  • HY-132890

    Others Cancer
    NNMT-IN-2 is a potent NNMT inhibitor with an IC50 value of 3.7 nM.
    NNMT-IN-2
  • HY-151813

    Others Cancer
    NNMT-IN-4 (compound 38) is a selective, uncompetitive and membrane permeability nicotinamide N-methyltransferase (NNMT) inhibitor with IC50 values of 42 and 38 nM in vitro biochemical and cell-based assays, respectively. NNMT-IN-4 shows favorable PK/PD and safety profiles as well as excellent oral bioavailability and pharmaceutical properties. NNMT-IN-4 can be used as a vivo chemical probe of NNMT .
    NNMT-IN-4
  • HY-151500

    Others Metabolic Disease
    JBSNF-000028 is an orally active nicotinamide N-methyltransferase (NNMT) inhibitor with IC50s of 0.033 µM, 0.19 µM and 0.21 µM against human NNMT (hNNMT), monkey NNMT (mkNNMT), and mouse NNMT (mNNMT), respectively. JBSNF-000028 can be used for the research of metabolic disorders .
    JBSNF-000028 free base
  • HY-151500B

    Others Metabolic Disease
    JBSNF-000028 hydrochloride is an orally active nicotinamide N-methyltransferase (NNMT) inhibitor with IC50s of 0.033 μM, 0.19 μM and 0.21 μM against human NNMT (hNNMT), monkey NNMT (mkNNMT), and mouse NNMT (mNNMT), respectively. JBSNF-000028 hydrochloride can be used for the research of metabolic disorders .
    JBSNF-000028 hydrochloride
  • HY-161316

    Others Neurological Disease Metabolic Disease Cancer
    NNMT-IN-5 (Compound 3-12) is a potent nicotinamide N-methyltransferase (NNMT) inhibitor (IC50 = 47.9 ± 0.6 nM). NNMT-IN-5 also has an excellent selectivity profile over a panel of human methyltransferases. NNMT-IN-5 can be used for the research of cancer, diabetes, metabolic disorders, and neurodegenerative diseases .
    NNMT-IN-5
  • HY-151500A

    Others Metabolic Disease
    JBSNF-000028 TFA is an orally active nicotinamide N-methyltransferase (NNMT) inhibitor with IC50s of 0.033 μM, 0.19 μM and 0.21 μM against human NNMT (hNNMT), monkey NNMT (mkNNMT), and mouse NNMT (mNNMT), respectively. JBSNF-000028 TFA can be used for the research of metabolic disorders .
    JBSNF-000028 TFA
  • HY-151193

    Others Metabolic Disease Cancer
    NNMT-IN-3 (compound 14) is a potent and selective nicotinamide N-methyltransferase NNMT inhibitor with IC50 values of 1.1 nM and 0.4 μM in cell-free and cell-based assays, respectively. NNMT-IN-3 can be used to research obesity, type 2 diabetes, alcohol-related liver disease, cancer, sarcopenia and so on .
    NNMT-IN-3
  • HY-131042
    NNMTi
    1 Publications Verification

    Others Metabolic Disease
    NNMTi is a potent nicotinamide N-methyltransferase (NNMT) inhibitor (IC50=1.2 μM) and selectively binds to the NNMT substrate-binding site residues . NNMTi  promotes myoblast differentiation in vitro and enhances fusion and regenerative capacity of muscle stem cells (muSCs) in aged mice .
    NNMTi
  • HY-163174

    Others Cardiovascular Disease Neurological Disease Metabolic Disease Cancer
    II399 is a potent, selective NNMT bisubstrate inhibitor containing an unconventional SAM mimic, with a Ki of 5.9 nM. II399 exhibits an explicit pattern of competitive inhibition for NAM. II399 occupies both the substrate and cofactor binding pockets. II399 has the potential for the research of cancers, metabolic, cardiovascular, and neurodegenerative diseases .
    II399

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