Huang_2010_J.Med.Chem_53_8376

Reference

Title : Incorporation of piperazino functionality into 1,3-disubstituted urea as the tertiary pharmacophore affording potent inhibitors of soluble epoxide hydrolase with improved pharmacokinetic properties - Huang_2010_J.Med.Chem_53_8376
Author(s) : Huang SX , Li HY , Liu JY , Morisseau C , Hammock BD , Long YQ
Ref : Journal of Medicinal Chemistry , 53 :8376 , 2010
Abstract :

The inhibition of the mammalian soluble epoxide hydrolase (sEH) is a promising new therapy in the treatment of hypertension, inflammation, and other disorders. However, the problems of limited water solubility, high melting point, and low metabolic stability complicated the development of 1,3-disubstituted urea-based sEH inhibitors. The current study explored the introduction of the substituted piperazino group as the tertiary pharmacophore, which resulted in substantial improvements in pharmacokinetic parameters over previously reported 1-adamantylurea based inhibitors while retaining high potency. The SAR studies revealed that the meta- or para-substituted phenyl spacer and N(4)-acetyl or sulfonyl substituted piperazine were optimal structures for achieving high potency and good physical properties. The 1-(4-(4-(4-acetylpiperazin-1-yl)butoxy)phenyl)-3-adamantan-1-yl urea (29c) demonstrated excellent in vivo pharmacokinetic properties in mice: T1/2 =14 h, Cmax = 84 nM, AUC = 40 200 nM.min, and IC50 = 7.0 nM against human sEH enzyme.

PubMedSearch : Huang_2010_J.Med.Chem_53_8376
PubMedID: 21070033

Related information

Citations formats

Huang SX, Li HY, Liu JY, Morisseau C, Hammock BD, Long YQ (2010)
Incorporation of piperazino functionality into 1,3-disubstituted urea as the tertiary pharmacophore affording potent inhibitors of soluble epoxide hydrolase with improved pharmacokinetic properties
Journal of Medicinal Chemistry 53 :8376

Huang SX, Li HY, Liu JY, Morisseau C, Hammock BD, Long YQ (2010)
Journal of Medicinal Chemistry 53 :8376