Design, parallel synthesis and SAR of novel urotensin II receptor agonists
摘要:
A 30-membered library of amides based on the potent urotensin II (UII) receptor agonist FL104, has been synthesized from ten different carboxylic acids and three amines. A synthetic protocol producing the amides in 47-98% yield has been developed in which the purification involved only extractions and in a few cases filtration through an ion-exchange resin. It was found that 5 mg of starting material was enough to obtain reproducible results and excellent purities. Thus, the procedure is estimated to be transferable to fully automated systems. The synthesized compounds were evaluated for their Ull receptor agonistic activities using a cell-based assay (R-SAT). The most active compounds were the 4-trifluoromethylcinnamic amides of 1-(4-chlorophenyt)-3-dimethylamino-propylamine and 1-(2-naphthyl)-3-dimethylamino-propylamine, both showed EC50 values of 130 nM. (c) 2006 Elsevier Masson SAS. All rights reserved.
[EN] UII-MODULATING COMPOUNDS AND THEIR USE<br/>[FR] COMPOSES MODULATEURS D'UII ET UTILISATION
申请人:ACADIA PHARM INC
公开号:WO2006135694A2
公开(公告)日:2006-12-21
[EN] Disclosed herein are novel aromatic-containing compounds and methods for using various aromatic-containing compounds for treatment and prevention of diseases and disorders related to the Urotensin II receptor. [FR] Composés à éléments aromatiques et procédés d'utilisation concernant divers composés de ce type pour le traitement et la prévention de maladies et de troubles liés au récepteur d'urotensine II.
Design, parallel synthesis and SAR of novel urotensin II receptor agonists
作者:Fredrik Lehmann、Lisa Lake、Erika A. Currier、Roger Olsson、Uli Hacksell、Kristina Luthman
DOI:10.1016/j.ejmech.2006.09.015
日期:2007.2
A 30-membered library of amides based on the potent urotensin II (UII) receptor agonist FL104, has been synthesized from ten different carboxylic acids and three amines. A synthetic protocol producing the amides in 47-98% yield has been developed in which the purification involved only extractions and in a few cases filtration through an ion-exchange resin. It was found that 5 mg of starting material was enough to obtain reproducible results and excellent purities. Thus, the procedure is estimated to be transferable to fully automated systems. The synthesized compounds were evaluated for their Ull receptor agonistic activities using a cell-based assay (R-SAT). The most active compounds were the 4-trifluoromethylcinnamic amides of 1-(4-chlorophenyt)-3-dimethylamino-propylamine and 1-(2-naphthyl)-3-dimethylamino-propylamine, both showed EC50 values of 130 nM. (c) 2006 Elsevier Masson SAS. All rights reserved.