Compile Data Set for Download or QSAR
Report error Found 18 Enz. Inhib. hit(s) with all data for entry = 50015635
TargetPotassium voltage-gated channel subfamily H member 2(Human)
Shanghai Institute of Materia Medica

Curated by ChEMBL
LigandPNGBDBM50005836(4-amino-5-chloro-N-(1-(3-(4-fluorophenoxy)propyl)-...)
Affinity DataIC50: 40nMAssay Description:Inhibition of hERG potassium channel assessed as maximum inhibition rate at -80 mV holding potential incubated for 120 seconds by whole cell-automate...More data for this Ligand-Target Pair
In Depth
Date in BDB:
6/18/2023
Entry Details
PubMed
TargetPotassium voltage-gated channel subfamily H member 2(Human)
Shanghai Institute of Materia Medica

Curated by ChEMBL
LigandPNGBDBM50587921(CHEMBL5208405)
Affinity DataIC50: 1.23E+4nMAssay Description:Inhibition of hERG potassium channel assessed as maximum inhibition rate at -80 mV holding potential incubated for 120 seconds by whole cell-automate...More data for this Ligand-Target Pair
In Depth
Date in BDB:
6/18/2023
Entry Details
PubMed
TargetPotassium voltage-gated channel subfamily H member 2(Human)
Shanghai Institute of Materia Medica

Curated by ChEMBL
LigandPNGBDBM50587918(CHEMBL5189137)
Affinity DataIC50: 1.84E+4nMAssay Description:Inhibition of hERG potassium channel assessed as maximum inhibition rate at -80 mV holding potential incubated for 120 seconds by whole cell-automate...More data for this Ligand-Target Pair
In Depth
Date in BDB:
6/18/2023
Entry Details
PubMed
TargetPotassium voltage-gated channel subfamily H member 2(Human)
Shanghai Institute of Materia Medica

Curated by ChEMBL
LigandPNGBDBM50587920(CHEMBL5198082)
Affinity DataIC50: 4.00E+4nMAssay Description:Inhibition of hERG potassium channel assessed as maximum inhibition rate at -80 mV holding potential incubated for 120 seconds by whole cell-automate...More data for this Ligand-Target Pair
In Depth
Date in BDB:
6/18/2023
Entry Details
PubMed
TargetPotassium voltage-gated channel subfamily H member 2(Human)
Shanghai Institute of Materia Medica

Curated by ChEMBL
LigandPNGBDBM50587919(CHEMBL5173810)
Affinity DataIC50: 4.00E+4nMAssay Description:Inhibition of hERG potassium channel assessed as maximum inhibition rate at -80 mV holding potential incubated for 120 seconds by whole cell-automate...More data for this Ligand-Target Pair
In Depth
Date in BDB:
6/18/2023
Entry Details
PubMed
TargetPotassium voltage-gated channel subfamily H member 2(Human)
Shanghai Institute of Materia Medica

Curated by ChEMBL
LigandPNGBDBM50587922(CHEMBL5195776)
Affinity DataIC50: 4.00E+4nMAssay Description:Inhibition of hERG potassium channel assessed as maximum inhibition rate at -80 mV holding potential incubated for 120 seconds by whole cell-automate...More data for this Ligand-Target Pair
In Depth
Date in BDB:
6/18/2023
Entry Details
PubMed
TargetPotassium voltage-gated channel subfamily H member 2(Human)
Shanghai Institute of Materia Medica

Curated by ChEMBL
LigandPNGBDBM50587924(CHEMBL5187851)
Affinity DataIC50: 4.00E+4nMAssay Description:Inhibition of hERG potassium channel assessed as maximum inhibition rate at -80 mV holding potential incubated for 120 seconds by whole cell-automate...More data for this Ligand-Target Pair
In Depth
Date in BDB:
6/18/2023
Entry Details
PubMed
TargetPotassium voltage-gated channel subfamily H member 2(Human)
Shanghai Institute of Materia Medica

Curated by ChEMBL
LigandPNGBDBM50587923(CHEMBL5175419)
Affinity DataIC50: 4.00E+4nMAssay Description:Inhibition of hERG potassium channel assessed as maximum inhibition rate at -80 mV holding potential incubated for 120 seconds by whole cell-automate...More data for this Ligand-Target Pair
In Depth
Date in BDB:
6/18/2023
Entry Details
PubMed
TargetPotassium voltage-gated channel subfamily H member 2(Human)
Shanghai Institute of Materia Medica

Curated by ChEMBL
LigandPNGBDBM50587925(CHEMBL5180811)
Affinity DataIC50: 4.00E+4nMAssay Description:Inhibition of hERG potassium channel assessed as maximum inhibition rate at -80 mV holding potential incubated for 120 seconds by whole cell-automate...More data for this Ligand-Target Pair
In Depth
Date in BDB:
6/18/2023
Entry Details
PubMed
TargetPotassium voltage-gated channel subfamily H member 2(Human)
Shanghai Institute of Materia Medica

Curated by ChEMBL
LigandPNGBDBM50587928(CHEMBL5173672)
Affinity DataIC50: 4.00E+4nMAssay Description:Inhibition of hERG potassium channel assessed as maximum inhibition rate at -80 mV holding potential incubated for 120 seconds by whole cell-automate...More data for this Ligand-Target Pair
In Depth
Date in BDB:
6/18/2023
Entry Details
PubMed
TargetPotassium voltage-gated channel subfamily H member 2(Human)
Shanghai Institute of Materia Medica

Curated by ChEMBL
LigandPNGBDBM50587927(CHEMBL5181038)
Affinity DataIC50: 4.00E+4nMAssay Description:Inhibition of hERG potassium channel assessed as maximum inhibition rate at -80 mV holding potential incubated for 120 seconds by whole cell-automate...More data for this Ligand-Target Pair
In Depth
Date in BDB:
6/18/2023
Entry Details
PubMed
TargetPotassium voltage-gated channel subfamily H member 2(Human)
Shanghai Institute of Materia Medica

Curated by ChEMBL
LigandPNGBDBM50587930(CHEMBL5180991)
Affinity DataIC50: 4.00E+4nMAssay Description:Inhibition of hERG potassium channel assessed as maximum inhibition rate at -80 mV holding potential incubated for 120 seconds by whole cell-automate...More data for this Ligand-Target Pair
In Depth
Date in BDB:
6/18/2023
Entry Details
PubMed
TargetPotassium voltage-gated channel subfamily H member 2(Human)
Shanghai Institute of Materia Medica

Curated by ChEMBL
LigandPNGBDBM50587929(CHEMBL5172595)
Affinity DataIC50: 4.00E+4nMAssay Description:Inhibition of hERG potassium channel assessed as maximum inhibition rate at -80 mV holding potential incubated for 120 seconds by whole cell-automate...More data for this Ligand-Target Pair
In Depth
Date in BDB:
6/18/2023
Entry Details
PubMed
TargetPotassium voltage-gated channel subfamily H member 2(Human)
Shanghai Institute of Materia Medica

Curated by ChEMBL
LigandPNGBDBM50587932(CHEMBL5190841)
Affinity DataIC50: 4.00E+4nMAssay Description:Inhibition of hERG potassium channel assessed as maximum inhibition rate at -80 mV holding potential incubated for 120 seconds by whole cell-automate...More data for this Ligand-Target Pair
In Depth
Date in BDB:
6/18/2023
Entry Details
PubMed
TargetPotassium voltage-gated channel subfamily H member 2(Human)
Shanghai Institute of Materia Medica

Curated by ChEMBL
LigandPNGBDBM50587931(CHEMBL5209407)
Affinity DataIC50: 4.00E+4nMAssay Description:Inhibition of hERG potassium channel assessed as maximum inhibition rate at -80 mV holding potential incubated for 120 seconds by whole cell-automate...More data for this Ligand-Target Pair
In Depth
Date in BDB:
6/18/2023
Entry Details
PubMed
TargetPotassium voltage-gated channel subfamily H member 2(Human)
Shanghai Institute of Materia Medica

Curated by ChEMBL
LigandPNGBDBM50587929(CHEMBL5172595)
Affinity DataIC50: 4.00E+4nMAssay Description:Inhibition of hERG potassium channel assessed as maximum inhibition rate at -80 mV holding potential incubated for 120 seconds by whole cell-automate...More data for this Ligand-Target Pair
In Depth
Date in BDB:
6/18/2023
Entry Details
PubMed
TargetPotassium voltage-gated channel subfamily H member 2(Human)
Shanghai Institute of Materia Medica

Curated by ChEMBL
LigandPNGBDBM50587933(CHEMBL5183179)
Affinity DataIC50: 4.00E+4nMAssay Description:Inhibition of hERG potassium channel assessed as maximum inhibition rate at -80 mV holding potential incubated for 120 seconds by whole cell-automate...More data for this Ligand-Target Pair
In Depth
Date in BDB:
6/18/2023
Entry Details
PubMed
TargetPotassium voltage-gated channel subfamily H member 2(Human)
Shanghai Institute of Materia Medica

Curated by ChEMBL
LigandPNGBDBM50587926(CHEMBL5179034)
Affinity DataIC50: 5.15E+4nMAssay Description:Inhibition of hERG potassium channel assessed as maximum inhibition rate at -80 mV holding potential incubated for 120 seconds by whole cell-automate...More data for this Ligand-Target Pair
In Depth
Date in BDB:
6/18/2023
Entry Details
PubMed