# | Aladdin ID | Assay Type | Description | Organism | Compounds | Reference | BAO Format | Source | |
---|---|---|---|---|---|---|---|---|---|
1. | ALA664616 | B | Compound was evaluated for its ability to inhibit the potassium -induced release of [3H]- acetylcholine release in mouse striatal membranes by stimulating Dopamine receptor D2 | 1 | cell membrane format | Scientific Literature | |||
2. | ALA671848 | F | Compound was tested in vivo for methyl phenidate-induced gnawing behavior antagonistic activity against dopamine D-2 receptor in mice; NT=Not tested | 3 | organism-based format | Scientific Literature | |||
3. | ALA670361 | F | Compound was tested in vivo for methyl phenidate-induced gnawing behavior antagonistic activity against dopamine receptor D2 in mice | 3 | organism-based format | Scientific Literature | |||
4. | ALA670362 | F | Compound was tested in vivo for methyl phenidate-induced gnawing behavior antagonistic activity against dopamine receptor D2 in mice; NT=Not tested | 1 | organism-based format | Scientific Literature | |||
5. | ALA670363 | B | Inhibitory activity against Dopamine receptor D2 from mice | Mus musculus | 8 | single protein format | Scientific Literature | ||
6. | ALA670364 | B | Inhibition of mouse Dopamine receptor D2 | Mus musculus | 12 | single protein format | Scientific Literature | ||
7. | ALA670365 | B | The compound was tested in vitro for its binding affinity towards Dopamine receptor D2 | 1 | single protein format | Scientific Literature | |||
8. | ALA670366 | B | In vitro binding affinity towards dopamine receptor D2 | 120 | single protein format | Scientific Literature | |||
9. | ALA670367 | F | The dissociation constant for the inhibition of agonist effect on the K+ evoked release of [3H]- acetylcholine in mouse striatal membranes | 3 | cell membrane format | Scientific Literature | |||
10. | ALA670978 | F | The dissociation constant for the inhibition of agonist effect on the K+ evoked release of [3H]- acetylcholine in mouse striatal membranes; NS means No statistically significant antagonism observed in rat striatal membranes | 1 | cell membrane format | Scientific Literature | |||
11. | ALA670979 | B | Binding affinity to Dopamine receptor D2 using [3H]spiperone as radioligand in stably transfected NIH3T3 cells | 3 | cell-based format | Scientific Literature | |||
12. | ALA672773 | B | Binding affinity towards Dopamine receptor D2 | 1 | single protein format | Scientific Literature | |||
13. | ALA672774 | B | Compound was tested for its ability to displace [3H]- spiperone from D2 binding site in rat striatal membranes | 1 | cell membrane format | Scientific Literature | |||
14. | ALA672775 | B | Percent inhibition of radioligand [3H]raclopride binding to D2 receptor at 10 uM concentration | Mus musculus | 1 | single protein format | Scientific Literature | ||
15. | ALA670747 | B | Effective dose through peroral route for in vivo inhibition against dopamine receptor D2 in male CF-1 mice by using radioligand [3H]raclopride | 5 | organism-based format | Scientific Literature | |||
16. | ALA670748 | B | Compound was evaluated for its ability to inhibit the potassium -induced release of [3H]- acetylcholine release in mouse striatal membranes by stimulating D2 receptor | 1 | cell membrane format | Scientific Literature | |||
17. | ALA670749 | B | Compound was evaluated for its ability to inhibit the potassium -induced release of [3H]- acetylcholine release in mouse striatal membranes by stimulating Dopamine receptor D2 | 1 | cell membrane format | Scientific Literature | |||
18. | ALA670750 | B | Compound was evaluated for its ability to inhibit the potassium -induced release of [3H]- acetylcholine release in mouse striatal membranes by stimulating dopamine receptor D2 | 3 | cell membrane format | Scientific Literature | |||
19. | ALA670751 | F | Compound was tested in vivo for methyl phenidate-induced gnawing behavior antagonistic activity against dopamine D-2 receptor in mice | 3 | organism-based format | Scientific Literature | |||
20. | ALA883974 | F | Tested in vivo for methyl phenidate-induced gnawing behavior antagonistic activity against dopamine D2 receptor in mice | 27 | organism-based format | Scientific Literature |