Highly Selective Dopamine D<sub>3</sub> Receptor (D<sub>3</sub>R) Antagonists and Partial Agonists Based on Eticlopride and the D<sub>3</sub>R Crystal Structure: New Leads for Opioid Dependence Treatment
作者:Vivek Kumar、Alessandro Bonifazi、Michael P. Ellenberger、Thomas M. Keck、Elie Pommier、Rana Rais、Barbara S. Slusher、Eliot Gardner、Zhi-Bing You、Zheng-Xiong Xi、Amy Hauck Newman
DOI:10.1021/acs.jmedchem.6b00860
日期:2016.8.25
The recent and precipitous increase in opioid analgesic abuse and overdose has inspired investigation of the dopamineD3receptor (D3R) as a target for therapeutic intervention. Metabolic instability or predicted toxicity has precluded successful translation of previously reported D3R-selective antagonists to clinical use for cocaine abuse. Herein, we report a series of novel and D3R crystal structure-guided
[EN] DOPAMINE D3 RECEPTOR SELECTIVE ANTAGONISTS/PARTIAL AGONISTS; METHOD OF MAKING; AND USE THEREOF<br/>[FR] ANTAGONISTES/AGONISTES PARTIELS SÉLECTIFS DU RÉCEPTEUR D3 DE LA DOPAMINE ; PROCÉDÉ DE PRÉPARATION ; ET UTILISATION ASSOCIÉE
申请人:US HEALTH
公开号:WO2017160552A1
公开(公告)日:2017-09-21
Disclosed herein novel dopamine D3 receptor selective antagonists/partial agonists compounds with high affinity and metabolic stability useful for the treatment of psychiatric and neurological disorders and as research and diagnostic tools. Also disclosed are methods of making the compounds.
[EN] BENZOFURANS AS IRAK4 MODULATORS<br/>[FR] BENZOFURANES UTILISÉS EN TANT QUE MODULATEURS D'IRAK4
申请人:HOFFMANN LA ROCHE
公开号:WO2018234343A1
公开(公告)日:2018-12-27
Compounds of Formula (0), and stereoisomers and pharmaceutically acceptable salts thereof, as well as methods of use as Interleukin-1 Receptor Associated Kinase (IRAK4) inhibitors are described herein.
An antibiotic compound having a novel mechanism of action, weak cytotoxicity, high solubility in water, effective in inhibiting both DNA gyrase GyrB and topoisomerase IV ParE subunits, and having antibacterial activity.
Compounds of Formula 0, and stereoisomers and pharmaceutically acceptable salts thereof, as well as methods of use as Interleukin-1 Receptor Associated Kinase (IRAK4) inhibitors are described herein.