# | Aladdin ID | Assay Type | Description | Organism | Compounds | Reference | BAO Format | Source | |
---|---|---|---|---|---|---|---|---|---|
1. | ALA4264789 | B | Transrepression of recombinant human GAL4-DBD fused RORgammat LBD expressed in HEK293 cells after 20 hrs by luciferase reporter gene assay | Homo sapiens | 26 | cell-based format | Scientific Literature | ||
2. | ALA4264790 | B | Transrepression of recombinant mouse GAL4-DBD fused RORgammat LBD expressed in HEK293 cells after 20 hrs by luciferase reporter gene assay | Mus musculus | 26 | cell-based format | Scientific Literature | ||
3. | ALA4264791 | B | Displacement of [3H]-Digoxin from recombinant human GST-fused RORgammat LBD after 1 to 4 hrs by scintillation counting method | Homo sapiens | 13 | single protein format | Scientific Literature | ||
4. | ALA4264792 | B | Transrepression of RORgammat in anti-CD3/CD28 stimulated human PBMC derived CD4-positive T cells assessed as suppression of T cell differentiation to Th17 cells by measuring reduction in IL-17A level after 7 days by flow cytometry analysis | Homo sapiens | 9 | assay format | Scientific Literature | ||
5. | ALA4264793 | B | Transrepression of RORgammat in anti-CD3/CD28 stimulated C57BL/6 mouse CD4-positive T cells assessed as suppression of T cell differentiation to Th17 cells by measuring reduction in IL-17A level after 4 days by ELISA | Mus musculus | 9 | assay format | Scientific Literature | ||
6. | ALA4264794 | A | Stability in human liver microsomes assessed as parent compound remaining after 2 hrs by LC-MS/MS analysis | Homo sapiens | 18 | microsome format | Scientific Literature | ||
7. | ALA4264795 | A | Stability in rat liver microsomes assessed as parent compound remaining after 2 hrs by LC-MS/MS analysis | Rattus norvegicus | 18 | microsome format | Scientific Literature | ||
8. | ALA4264796 | P | Solubility of the compound in NaCl/HCl buffer at pH 1.2 by shake-flask method | 14 | small-molecule physicochemical format | Scientific Literature | |||
9. | ALA4264797 | P | Solubility of the compound in KH2PO4/Na2HPO4 buffer at pH 6.8 by shake-flask method | 14 | small-molecule physicochemical format | Scientific Literature |