Reduction of N-hydroxylated compounds:: amidoximes (N-hydroxyamidines) as pro-drugs of amidines

被引:112
作者
Clement, B [1 ]
机构
[1] Univ Kiel, Inst Pharmaceut, D-24118 Kiel, Germany
关键词
N-hydroxyamines; amidoximes; amidines; pro-drugs; P450; N-hydroxy-reductases; benzamidoxime-reductase; cytochrome b5; cytochrome b5 reductase; reduction;
D O I
10.1081/DMR-120005643
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
In order to examine the importance of metabolic cycles and in particular of reductions of N-hydroxylated compounds, the reversible metabolism at the amidine, guanidine, and amidinohydrazone nitrogen atoms of various drugs and model compounds was investigated. Many of these N-oxygenated metabolites are very easily reduced back into the starting materials. A comparison of the kinetic data for the N-hydroxylation and reduction suggests that the reduction should, predominate in vivo. This could be verified by in vivo studies. Thus, N-hydroxylated amidines (amidoximes) can be used as pro-drugs of amidines. Because of their strong basicity, amidines, guanidines, and amidino-hydrazones. are protonated under physiological conditions, are very hydrophilic, and are usually not absorbed from, the gastrointestinal tract. The N-hydroxylated derivatives of amidines (amidoximes), guanidines (N-hydroxyamidines), and amidinohydrazones (N-hydroxyamidinohydrazones) are less basic because of the introduction of the oxygen atom. They are absorbed from the gastrointestinal tract and then reduced to the active amidines, guanidines, and amidinohydrdzones. The-pro-drug principle Was originally developed in our laboratory for pentamidine and then applied to other amidines such as sibrafiban and melagatran (ximelagatran). The enzymatic basis of N-oxidative processes is very well understood, whereas reductions have been less extensively investigated. We purified an enzyme system from pig and human liver consisting of cytochrome b(5), its reductase, and a P450 enzyme, which is involved in the reduction of the N-hydroxylated compounds. Similar activities were found in all species studied so far. Furthermore, comparable reductive reactions could also be demonstrated with microsomal fractions from organs other than liver. In addition, mitochondria are highly capable of performing the reductions of these N-hydroxylated compounds. Thus, several organs and cell organelles are involved in the reduction explaining the extensive reduction of the pro-drugs in vivo underlying the suitability of the concept for drug development.
引用
收藏
页码:565 / 579
页数:15
相关论文
共 57 条
[1]   HYDROXYLAMINE REDUCTASE OF MITOCHONDRIA [J].
BERNHEIM, ML .
ARCHIVES OF BIOCHEMISTRY AND BIOPHYSICS, 1969, 134 (02) :408-&
[2]   Anti-pneumocystis activity of bis-amidoximes and bis-O-alkylamidoximes prodrugs [J].
Boykin, DW ;
Kumar, A ;
Hall, JE ;
Bender, BC ;
Tidwell, RR .
BIOORGANIC & MEDICINAL CHEMISTRY LETTERS, 1996, 6 (24) :3017-3020
[3]  
Cannon CP, 1998, CIRCULATION, V97, P340
[4]   BIOTRANSFORMATIONS OF BENZAMIDINE AND BENZAMIDOXIME IN-VIVO [J].
CLEMENT, B ;
IMMEL, M ;
SCHMITT, S ;
STEINMANN, U .
ARCHIV DER PHARMAZIE, 1993, 326 (10) :807-812
[5]   Isolation and characterization of the protein components of the liver microsomal O-2-insensitive NADH-benzamidoxime reductase [J].
Clement, B ;
Lomb, R ;
Moller, W .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1997, 272 (31) :19615-19620
[6]  
CLEMENT B, 1993, MOL PHARMACOL, V43, P335
[7]   ENZYMATIC REDUCTION OF BENZAMIDOXIME TO BENZAMIDINE [J].
CLEMENT, B ;
SCHMITT, S ;
ZIMMERMANN, M .
ARCHIV DER PHARMAZIE, 1988, 321 (12) :955-956
[8]   Microsomal catalyzed N-hydroxylation of guanabenz and reduction of the N-hydroxylated metabolite: Characterization of the two reactions and genotoxic potential of guanoxabenz [J].
Clement, B ;
Demesmaeker, M ;
Linne, S .
CHEMICAL RESEARCH IN TOXICOLOGY, 1996, 9 (04) :682-688
[9]   Reduction of amphetamine hydroxylamine and other aliphatic hydroxylamines by benzamidoxime reductase and human liver microsomes [J].
Clement, B ;
Behrens, D ;
Möller, W ;
Cashman, JR .
CHEMICAL RESEARCH IN TOXICOLOGY, 2000, 13 (10) :1037-1045
[10]   CYTOCHROME P450-DEPENDENT N-HYDROXYLATION OF AN AMINOGUANIDINE (AMIDINOHYDRAZONE) AND MICROSOMAL RETROREDUCTION OF THE N-HYDROXYLATED PRODUCT [J].
CLEMENT, B ;
SCHULTZEMOSGAU, MH ;
RICHTER, PH ;
BESCH, A .
XENOBIOTICA, 1994, 24 (07) :671-688