Applying a multitarget rational drug design strategy: the first set of modulators with potent and balanced activity toward dopamine D3 receptor and fatty acid amide hydrolase
[EN] PHENYL CARBAMATES AND THEIR USE AS INHIBITORS OF THE FATTY ACID AMIDE HYDROLASE (FAAH) ENZYME AND MODULATORS OF THE D3 DOPAMINE RECEPTOR (D3DR)<br/>[FR] PHENYL CARBAMATES ET LEUR UTILISATION COMME INHIBITEURS DE L'ENZYME HYDROLASE D'AMIDES D'ACIDES GRAS (FAAH) ET MODULATEURS DU RÉCEPTEUR D3 DE LA DOPAMINE (D3DR)
申请人:FOND ISTITUTO ITALIANO DI TECNOLOGIA
公开号:WO2015007615A1
公开(公告)日:2015-01-22
The invention provides compounds of Formula (I) or pharmaceutically acceptable salts thereof wherein Ar', R1, R2, R3, R4, X, Y are as defined in the description of invention, as multi-target directed ligands (MTDLs) that are at the same time inhibitors of the fatty acid amide hydrolase (FAAH) enzyme and modulators of the D3 dopamine receptor (D3DR), their methods of preparation, formulations and therapeutic applications thereof.
Applying a multitarget rational drug design strategy: the first set of modulators with potent and balanced activity toward dopamine D3 receptor and fatty acid amide hydrolase
The first set of rationally conceived dual dopamine D3 receptor (DRD3) and fatty acid amide hydrolase (FAAH) modulators is presented.
第一套合理构思的双重多巴胺D3受体(DRD3)和脂肪酸酰胺水解酶(FAAH)调节剂被提出。
PHENYL CARBAMATES AND THEIR USE AS INHIBITORS OF THE FATTY ACID AMIDE HYDROLASE (FAAH) ENZYME AND MODULATORS OF THE D3 DOPAMINE RECEPTOR (D3DR)
申请人:FONDAZIONE ISTITUTO ITALIANO DI TECNOLOGIA
公开号:US20160194296A1
公开(公告)日:2016-07-07
The invention provides compounds of Formula (I) or pharmaceutically acceptable salts thereof
wherein Ar′, R
1
, R
2
, R
3
, R
4
, X, Y are as defined in the description of invention, as multi-target directed ligands (MTDLs) that are at the same time inhibitors of the fatty acid amide hydrolase (FAAH) enzyme and modulators of the D3 dopamine receptor (D3DR), their methods of preparation, formulations and therapeutic applications thereof.
Design, Synthesis, Structure–Activity Relationship Studies, and Three-Dimensional Quantitative Structure–Activity Relationship (3D-QSAR) Modeling of a Series of <i>O</i>-Biphenyl Carbamates as Dual Modulators of Dopamine D3 Receptor and Fatty Acid Amide Hydrolase
作者:Alessio De Simone、Debora Russo、Gian Filippo Ruda、Alessandra Micoli、Mariarosaria Ferraro、Rita Maria Concetta Di Martino、Giuliana Ottonello、Maria Summa、Andrea Armirotti、Tiziano Bandiera、Andrea Cavalli、Giovanni Bottegoni
DOI:10.1021/acs.jmedchem.6b01578
日期:2017.3.23
rationalized the structural features conducive to activities at the main targets and investigated activities at two off-targets: dopamine receptor subtype D2 and endocannabinoid receptor CB1. To understand the unexpected affinity for the CB1 receptor, we devised a 3D-QSARmodel, which we then prospectively validated. Compound 33 was selected for PK studies because it displayed balanced affinities for the main