Design, synthesis, and biological activity of 1,3-Disubstituted ureas as potent inhibitors of the soluble epoxide hydrolase of increased water solubility

被引:146
作者
Kim, IH
Morisseau, C
Watanabe, T
Hammock, BD
机构
[1] Univ Calif Davis, Dept Entomol, Davis, CA 95616 USA
[2] Univ Calif Davis, Ctr Canc, Davis, CA 95616 USA
关键词
D O I
10.1021/jm030514j
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
The soluble epoxide hydrolase (sEH) is involved in the metabolism of endogenous chemical mediators that play an important role in blood pressure regulation and inflammation. 1,3-Disubstituted ureas are potent inhibitors of sEH that are active both in vitro and in vivo. However, their poor solubility in either water or lipid reduces their in vivo efficacy and makes them difficult to formulate. To improve these physical properties, the effect of incorporating polar functional groups into one of the alkyl chains was evaluated on their inhibitor potencies, water solubility, octanol/water partition coefficients (log P), and melting points. No loss of inhibition potency was observed when a polar functional group was incorporated at least five atoms (similar to7.5 Angstrom) from the central urea carbonyl. In addition, the presence of a polar group at least 11 atoms away from the urea carbonyl group for the mouse and human sEHs, respectively, did not alter the inhibitor potency. The resulting compounds have better water solubility and generally lower log P values and melting points than nonfanctionalized liphophilic ureas. These properties will make the compounds more bioavailable and more soluble in either water- or oil-based formulations.
引用
收藏
页码:2110 / 2122
页数:13
相关论文
共 39 条
[1]   Binding of alkylurea inhibitors to epoxide hydrolase implicates active site tyrosines in substrate activation [J].
Argiriadi, MA ;
Morisseau, C ;
Goodrow, MH ;
Dowdy, DL ;
Hammock, BD ;
Christianson, DW .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (20) :15265-15270
[2]   Detoxification of environmental mutagens and carcinogens: Structure, mechanism, and evolution of liver epoxide hydrolase [J].
Argiriadi, MA ;
Morisseau, C ;
Hammock, BD ;
Christianson, DW .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1999, 96 (19) :10637-10642
[3]   Evaluation of the Dmt-Tic pharmacophore:: Conversion of a potent δ-opioid receptor antagonist into a potent δ agonist and ligands with mixed properties [J].
Balboni, G ;
Guerrini, R ;
Salvadori, S ;
Bianchi, C ;
Rizzi, D ;
Bryant, SD ;
Lazarus, LH .
JOURNAL OF MEDICINAL CHEMISTRY, 2002, 45 (03) :713-720
[4]   WATER SOLUBILITY AND OCTANOL-WATER PARTITION-COEFFICIENTS OF ORGANICS - LIMITATIONS OF THE SOLUBILITY-PARTITION COEFFICIENT CORRELATION [J].
BANERJEE, S ;
YALKOWSKY, SH ;
VALVANI, SC .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 1980, 14 (10) :1227-1229
[5]   CDNA CLONING AND EXPRESSION OF A SOLUBLE EPOXIDE HYDROLASE FROM HUMAN LIVER [J].
BEETHAM, JK ;
TIAN, TG ;
HAMMOCK, BD .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 1993, 305 (01) :197-201
[6]   New role for epoxyeicosatrienoic acids as anti-inflammatory mediators [J].
Campbell, WB .
TRENDS IN PHARMACOLOGICAL SCIENCES, 2000, 21 (04) :125-127
[7]  
Capdevila JH, 2000, J LIPID RES, V41, P163
[8]   A new class of lipid mediators: cytochrome P450 arachidonate metabolites [J].
Carroll, MA ;
McGiff, JC .
THORAX, 2000, 55 :S13-S16
[9]   SPECTROPHOTOMETRIC SUBSTRATES FOR CYTOSOLIC EPOXIDE HYDROLASE [J].
DIETZE, EC ;
KUWANO, E ;
HAMMOCK, BD .
ANALYTICAL BIOCHEMISTRY, 1994, 216 (01) :176-187
[10]   Lipid oxidation products in ischemic porcine heart tissue [J].
Dudda, A ;
Spiteller, G ;
Kobelt, F .
CHEMISTRY AND PHYSICS OF LIPIDS, 1996, 82 (01) :39-51