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

CHEMBL838121

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

Functional
Effective concentration against HIV-I RTMDR1 in MT-4 cells
18
Total Activities
18
Compounds Tested
1
Activity Types
0
Assay Parameters

Assay Information

Assay Type Functional
Organism human immunodeficiency virus type i
Cell Type MT4
Confidence 0 — Uncurated / Unknown
Curated By Autocuration

Target

Unchecked (CHEMBL612545)
Type UNCHECKED

Publication

Anti-AIDS agents. 60. Substituted 3'R,4'R-di-O-(-)-camphanoyl-2',2'-dimethyldihydropyrano[2,3-f]chromone (DCP) analogues as potent anti-HIV agents.
Yu D, Chen CH, Brossi A, Lee KH.
J Med Chem (2004) 47 : 4072 -4082
PubMed 15267246 · DOI

Activity Statistics

Type Count Avg pChEMBL Best pChEMBL
EC50 18 6.20 7.22

Compounds Tested

Compound Name Phase Activities Best pChEMBL
CHEMBL435294 1 7.22
CHEMBL129 ZIDOVUDINE 4.0 1 7.00
CHEMBL406752 1 6.85
CHEMBL359776 1 6.85
CHEMBL360379 1 6.77
CHEMBL361146 1 6.72
CHEMBL365426 1 6.55
CHEMBL185270 1 6.52
CHEMBL362142 1 6.51
CHEMBL361705 1 6.43
CHEMBL365717 1 6.23
CHEMBL362899 1 5.96
CHEMBL361580 1 5.89
CHEMBL184849 1 5.66
CHEMBL360533 1 5.35
CHEMBL359975 1 5.13
CHEMBL431573 1 5.03
CHEMBL269559 1 4.92

Activity Data

Compound Name Type Rel. Value Units pChEMBL
CHEMBL435294 EC50 = 60.0 nM 7.22
CHEMBL129 ZIDOVUDINE EC50 = 100.0 nM 7.00
CHEMBL406752 EC50 = 140.0 nM 6.85
CHEMBL359776 EC50 = 140.0 nM 6.85
CHEMBL360379 EC50 = 170.0 nM 6.77
CHEMBL361146 EC50 = 190.0 nM 6.72
CHEMBL365426 EC50 = 280.0 nM 6.55
CHEMBL185270 EC50 = 300.0 nM 6.52
CHEMBL362142 EC50 = 310.0 nM 6.51
CHEMBL361705 EC50 = 370.0 nM 6.43
CHEMBL365717 EC50 = 590.0 nM 6.23
CHEMBL362899 EC50 = 1090.0 nM 5.96
CHEMBL361580 EC50 = 1280.0 nM 5.89
CHEMBL184849 EC50 = 2200.0 nM 5.66
CHEMBL360533 EC50 = 4460.0 nM 5.35
CHEMBL359975 EC50 = 7360.0 nM 5.13
CHEMBL431573 EC50 = 9430.0 nM 5.03
CHEMBL269559 EC50 = 12060.0 nM 4.92