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WJ0679

Pharmaceutical compound From Wikipedia, the free encyclopedia

WJ0679 is a small-molecule oxytocin receptor agonist and vasopressin receptor antagonist.[1][2] It acts specifically as a very weak partial agonist of the oxytocin receptor (Ki = 422 nM; EC50Tooltip half-maximal effective concentration = 406 nM; EmaxTooltip maximal efficacy = 13%) and as an antagonist of the vasopressin V1A receptor (Ki = 105 nM; IC50Tooltip half-maximal inhibitory concentration = 2,203 nM), whereas no data were reported for the vasopressin V2 receptor.[1][2] Despite its low activational efficacy at the oxytocin receptor, WJ0679 induces prosocial effects, including increased time spent in close physical contact and increased active social investigation, in rodents.[1][2]

Other namesExample 15[1]
ATC code
  • None
Quick facts Clinical data, Other names ...
WJ0679
Clinical data
Other namesExample 15[1]
Drug classOxytocin receptor agonist; Vasopressin receptor antagonist; Vasopressin V1A receptor antagonist
ATC code
  • None
Identifiers
  • (3-fluorophenyl)-(1-methyl-4,10-dihydropyrazolo[4,5-c][1,5]benzodiazepin-5-yl)methanone
PubChem CID
Chemical and physical data
FormulaC18H15FN4O
Molar mass322.343 g·mol−1
3D model (JSmol)
  • CN1C2=C(CN(C3=CC=CC=C3N2)C(=O)C4=CC(=CC=C4)F)C=N1
  • InChI=1S/C18H15FN4O/c1-22-17-13(10-20-22)11-23(16-8-3-2-7-15(16)21-17)18(24)12-5-4-6-14(19)9-12/h2-10,21H,11H2,1H3
  • Key:KGAWZUYTLYAFPY-UHFFFAOYSA-N
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The chemical synthesis of WJ0679 has been described.[1] Along with its close analogue CA7, WJ0679 has the smallest chemical structure known for an oxytocin receptor agonist, with WJ0679 having about 60% of the molecular weight of LIT-001 and both WJ0679 and CA7 lacking LIT-001's tail component.[1][2] Many analogues of WJ0679 and CA7 have been described.[1][2]

WJ0679 was first described in the scientific literature by a group including Michael Kassiou, Michael Bowen, Iain McGregor, and others at the University of Sydney in 2018.[1][2] This group has founded a startup pharmaceutical company called Kinoxis Therapeutics and is developing small-molecule oxytocin-related drugs like KNX-100 and the KNX-200 series for potential medical use as of the 2020s.[3][4][5][6]

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