Compile Data Set for Download or QSAR
Report error Found 26 Enz. Inhib. hit(s) with all data for entry = 50014298
TargetMonoglyceride lipase(Human)
University of Pisa

Curated by ChEMBL
LigandPNGBDBM50574654(CHEMBL4870906)
Affinity DataIC50: 1.30nMAssay Description:Inhibition of human recombinant MAGL using 4-NPA as substrate by microplate reader methodMore data for this Ligand-Target Pair
In DepthDetails Article
PubMed
TargetMonoglyceride lipase(Human)
University of Pisa

Curated by ChEMBL
LigandPNGBDBM50574655(CHEMBL4852896)
Affinity DataIC50: 1.5nMAssay Description:Inhibition of human recombinant MAGL using 4-NPA as substrate by microplate reader methodMore data for this Ligand-Target Pair
In DepthDetails Article
PubMed
TargetMonoglyceride lipase(Human)
University of Pisa

Curated by ChEMBL
LigandPNGBDBM50574656(CHEMBL4866490)
Affinity DataIC50: 1.90nMAssay Description:Inhibition of human recombinant MAGL using 4-NPA as substrate by microplate reader methodMore data for this Ligand-Target Pair
In DepthDetails Article
PubMed
TargetMonoglyceride lipase(Human)
University of Pisa

Curated by ChEMBL
LigandPNGBDBM50574650(CHEMBL4867862)
Affinity DataIC50: 5.70nMAssay Description:Inhibition of human recombinant MAGL using 4-NPA as substrate by microplate reader methodMore data for this Ligand-Target Pair
In DepthDetails Article
PubMed
TargetMonoglyceride lipase(Human)
University of Pisa

Curated by ChEMBL
LigandPNGBDBM50574644(CHEMBL4875176)
Affinity DataIC50: 6.20nMAssay Description:Inhibition of human recombinant MAGL using 4-NPA as substrate by microplate reader methodMore data for this Ligand-Target Pair
In DepthDetails Article
PubMed
TargetMonoglyceride lipase(Human)
University of Pisa

Curated by ChEMBL
LigandPNGBDBM50574648(CHEMBL4871787)
Affinity DataIC50: 6.90nMAssay Description:Inhibition of human recombinant MAGL using 4-NPA as substrate by microplate reader methodMore data for this Ligand-Target Pair
In DepthDetails Article
PubMed
TargetMonoglyceride lipase(Human)
University of Pisa

Curated by ChEMBL
LigandPNGBDBM50574641(CHEMBL4871592)
Affinity DataIC50: 14nMAssay Description:Inhibition of human recombinant MAGL using 4-NPA as substrate by microplate reader methodMore data for this Ligand-Target Pair
In DepthDetails Article
PubMed
TargetMonoglyceride lipase(Human)
University of Pisa

Curated by ChEMBL
LigandPNGBDBM50574651(CHEMBL4847718)
Affinity DataIC50: 17nMAssay Description:Inhibition of human recombinant MAGL using 4-NPA as substrate by microplate reader methodMore data for this Ligand-Target Pair
In DepthDetails Article
PubMed
TargetMonoglyceride lipase(Human)
University of Pisa

Curated by ChEMBL
LigandPNGBDBM50574652(CHEMBL4867550)
Affinity DataIC50: 18nMAssay Description:Inhibition of human recombinant MAGL using 4-NPA as substrate by microplate reader methodMore data for this Ligand-Target Pair
In DepthDetails Article
PubMed
TargetMonoglyceride lipase(Human)
University of Pisa

Curated by ChEMBL
LigandPNGBDBM50574645(CHEMBL4870413)
Affinity DataIC50: 21nMAssay Description:Inhibition of human recombinant MAGL using 4-NPA as substrate by microplate reader methodMore data for this Ligand-Target Pair
In DepthDetails Article
PubMed
TargetMonoglyceride lipase(Human)
University of Pisa

Curated by ChEMBL
LigandPNGBDBM50574646(CHEMBL4865408)
Affinity DataIC50: 23nMAssay Description:Inhibition of human recombinant MAGL using 4-NPA as substrate by microplate reader methodMore data for this Ligand-Target Pair
In DepthDetails Article
PubMed
TargetMonoglyceride lipase(Human)
University of Pisa

Curated by ChEMBL
LigandPNGBDBM50574649(CHEMBL4871757)
Affinity DataIC50: 25nMAssay Description:Inhibition of human recombinant MAGL using 4-NPA as substrate by microplate reader methodMore data for this Ligand-Target Pair
In DepthDetails Article
PubMed
TargetMonoglyceride lipase(Human)
University of Pisa

Curated by ChEMBL
LigandPNGBDBM50574653(CHEMBL4857833)
Affinity DataIC50: 26nMAssay Description:Inhibition of human recombinant MAGL using 4-NPA as substrate by microplate reader methodMore data for this Ligand-Target Pair
In DepthDetails Article
PubMed
TargetMonoglyceride lipase(Human)
University of Pisa

Curated by ChEMBL
LigandPNGBDBM50574647(CHEMBL4865940)
Affinity DataIC50: 32nMAssay Description:Inhibition of human recombinant MAGL using 4-NPA as substrate by microplate reader methodMore data for this Ligand-Target Pair
In DepthDetails Article
PubMed
TargetMonoglyceride lipase(Human)
University of Pisa

Curated by ChEMBL
LigandPNGBDBM50574639(CHEMBL4878533)
Affinity DataIC50: 50nMAssay Description:Inhibition of human recombinant MAGL using 4-NPA as substrate by microplate reader methodMore data for this Ligand-Target Pair
In DepthDetails Article
PubMed
TargetMonoglyceride lipase(Human)
University of Pisa

Curated by ChEMBL
LigandPNGBDBM50574640(CHEMBL4858780)
Affinity DataIC50: 51nMAssay Description:Inhibition of human recombinant MAGL using 4-NPA as substrate by microplate reader methodMore data for this Ligand-Target Pair
In DepthDetails Article
PubMed
TargetMonoglyceride lipase(Human)
University of Pisa

Curated by ChEMBL
LigandPNGBDBM50562151(CHEMBL4789288)
Affinity DataIC50: 74nMAssay Description:Inhibition of human recombinant MAGL using 4-NPA as substrate by microplate reader methodMore data for this Ligand-Target Pair
In DepthDetails Article
PubMed
TargetMonoglyceride lipase(Human)
University of Pisa

Curated by ChEMBL
LigandPNGBDBM50574643(CHEMBL4853706)
Affinity DataIC50: 96nMAssay Description:Inhibition of human recombinant MAGL using 4-NPA as substrate by microplate reader methodMore data for this Ligand-Target Pair
In DepthDetails Article
PubMed
TargetMonoglyceride lipase(Human)
University of Pisa

Curated by ChEMBL
LigandPNGBDBM50574642(CHEMBL4852294)
Affinity DataIC50: 100nMAssay Description:Inhibition of human recombinant MAGL using 4-NPA as substrate by microplate reader methodMore data for this Ligand-Target Pair
In DepthDetails Article
PubMed
TargetMonoglyceride lipase(Human)
University of Pisa

Curated by ChEMBL
LigandPNGBDBM50470454(CHEMBL4282040)
Affinity DataIC50: 845nMAssay Description:Inhibition of human recombinant MAGL using 4-NPA as substrate by microplate reader methodMore data for this Ligand-Target Pair
In DepthDetails Article
PubMed
TargetFatty acid 2-hydroxylase(Human)
University of Pisa

Curated by ChEMBL
LigandPNGBDBM50574654(CHEMBL4870906)
Affinity DataIC50: 2.00E+4nMAssay Description:Inhibition of human recombinant FAAH using AMC arachidonoyl amyl as substrate by fluorescence based assayMore data for this Ligand-Target Pair
In DepthDetails Article
PubMed
TargetFatty acid 2-hydroxylase(Human)
University of Pisa

Curated by ChEMBL
LigandPNGBDBM50574655(CHEMBL4852896)
Affinity DataIC50: 2.00E+4nMAssay Description:Inhibition of human recombinant FAAH using AMC arachidonoyl amyl as substrate by fluorescence based assayMore data for this Ligand-Target Pair
In DepthDetails Article
PubMed
TargetFatty acid 2-hydroxylase(Human)
University of Pisa

Curated by ChEMBL
LigandPNGBDBM50574656(CHEMBL4866490)
Affinity DataIC50: 2.00E+4nMAssay Description:Inhibition of human recombinant FAAH using AMC arachidonoyl amyl as substrate by fluorescence based assayMore data for this Ligand-Target Pair
In DepthDetails Article
PubMed
TargetMonoglyceride lipase(Human)
University of Pisa

Curated by ChEMBL
LigandPNGBDBM50574654(CHEMBL4870906)
Affinity DataKi:  1.10nMAssay Description:Inhibition of human recombinant MAGL assessed as dissociation constant using 4-NPA as substrateMore data for this Ligand-Target Pair
In DepthDetails Article
PubMed
TargetMonoglyceride lipase(Human)
University of Pisa

Curated by ChEMBL
LigandPNGBDBM50574655(CHEMBL4852896)
Affinity DataKi:  1.10nMAssay Description:Inhibition of human recombinant MAGL assessed as dissociation constant using 4-NPA as substrateMore data for this Ligand-Target Pair
In DepthDetails Article
PubMed
TargetMonoglyceride lipase(Human)
University of Pisa

Curated by ChEMBL
LigandPNGBDBM50574656(CHEMBL4866490)
Affinity DataKi:  1.10nMAssay Description:Inhibition of human recombinant MAGL assessed as dissociation constant using 4-NPA as substrateMore data for this Ligand-Target Pair
In DepthDetails Article
PubMed