Skip to main content
Free research Free research Free assay review with research home and workspace preview
Quick search ChEMBL 36
Assay Detail

CHEMBL879742

Review assay metadata, readout intent, target linkage, and publication context from the same page.

Functional
Tested against MXF7 breast carcinoma (sensitive) cell line in the sulforhodamine B assay.
16
Total Activities
16
Compounds Tested
1
Activity Types
0
Assay Parameters

Assay Information

Assay Type Functional
Organism Homo sapiens
Cell Type MCF7
Confidence 1 — Organism
Curated By Expert

Target

MCF7 (CHEMBL387)
Type CELL-LINE
Organism Homo sapiens

Publication

6- and 7-substituted 2-[2'-(dimethylamino)ethyl]-1,2-dihydro-3H-dibenz[de,h] isoquinoline-1,3-diones: synthesis, nucleophilic displacements, antitumor activity, and quantitative structure-activity relationships.
Sami SM, Dorr RT, Sòlyom AM, Alberts DS, Iyengar BS, Remers WA.
J Med Chem (1996) 39 : 1609 -1618
PubMed 8648600 · DOI

Activity Statistics

Type Count Avg pChEMBL Best pChEMBL
IC50 16 7.78 9.00

Compounds Tested

Compound Name Phase Activities Best pChEMBL
CHEMBL44207 1 9.00
CHEMBL40515 1 8.41
CHEMBL58 MITOXANTRONE 4.0 1 8.06
CHEMBL43809 1 8.00
CHEMBL43931 1 7.96
CHEMBL40865 1 7.96
CHEMBL42100 1 7.85
CHEMBL42490 1 7.75
CHEMBL290677 AZONAFIDE 1 7.75
CHEMBL40716 1 7.70
CHEMBL42201 1 7.70
CHEMBL40924 1 7.64
CHEMBL53463 DOXORUBICIN 4.0 1 7.55
CHEMBL288699 1 7.17
CHEMBL289120 1 7.10
CHEMBL288217 1 6.82

Activity Data

Compound Name Type Rel. Value Units pChEMBL
CHEMBL44207 IC50 = 1.0 nM 9.00
CHEMBL40515 IC50 = 3.9 nM 8.41
CHEMBL58 MITOXANTRONE IC50 = 8.7 nM 8.06
CHEMBL43809 IC50 = 10.0 nM 8.00
CHEMBL43931 IC50 = 11.0 nM 7.96
CHEMBL40865 IC50 = 11.0 nM 7.96
CHEMBL42100 IC50 = 14.0 nM 7.85
CHEMBL42490 IC50 = 18.0 nM 7.75
CHEMBL290677 AZONAFIDE IC50 = 18.0 nM 7.75
CHEMBL40716 IC50 = 20.0 nM 7.70
CHEMBL42201 IC50 = 20.0 nM 7.70
CHEMBL40924 IC50 = 23.0 nM 7.64
CHEMBL53463 DOXORUBICIN IC50 = 28.0 nM 7.55
CHEMBL288699 IC50 = 68.0 nM 7.17
CHEMBL289120 IC50 = 80.0 nM 7.10
CHEMBL288217 IC50 = 150.0 nM 6.82