Metabolism of sertindole: Identification of the metabolites in the rat and dog, and species comparison of liver microsomal metabolism

被引:21
作者
Sakamoto, K
Nakamura, Y
Aikoh, S
Baba, T
Perregaard, J
Pedersen, H
Moltzen, EK
Mulford, DJ
Yamaguchi, T
机构
[1] H LUNDBECK & CO AS,MED CHEM RES,DK-2500 COPENHAGEN,DENMARK
[2] ABBOTT LABS,ABBOTT PK,IL 60064
关键词
D O I
10.3109/00498259509061921
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
1. The main exretion pathways of a novel antipsychotic drug, sertindole, in the rat and dog are faecal excretion via intestinal secretion and biliary excretion respectively. 2. Similar liver microsomal metabolic patterns were observed in the rat, monkey, and man, and Lu 30-131 (5-hydroxy-serindole) and Lu 30-148 (4-hydroxy-serindole) were the major metabolites, and Lu 25-073 (nor-sertindole) and Lu 28-092 (dehydro-sertindole) were minor ones. In the dog, however, Lu 31-096 (3'-fluoro-4'-hydroxy-sertindole) and Lu 30-148 (4-hydroxy-sertindole) were the major metabolites, and Lu 25-073 (nor-sertindole), Lu 28-092 (dehydro-sertindole), and Lu 30-131 (5-hydroxy-sertindole) were minor ones. These findings suggest that the metabolism of sertindole in man resembles those in the rat and monkey and is different from that in the dog. 3. Rat in vitro and in vivo liver metabolites, dog liver microsomal metabolites, and dog biliary metabolites were isolated and identified by liquid chromatography/mass spectrometry and/or H-1-nmr. 4. Two metabolites, Lu 31-096 (3'-fluoro-4'-hydroxy-sertindole) and Lu 31-154 (3'-fluoro-4'-hydroxy-dehydro-sertindole), were formed via the 'NIH shift' mechanism. 5. Sertindole is metabolized by hydroxylation at the 4- and 5-positions on the imidazolidinone ring, N-dealkylation, and an NIH shift at the fluorophenyl group. Further metabolism (dehydration, oxidation, hydroxylation, glucuronidation and sulphation) was also observed. 6. In the rat, oxidation at the imidazolidinone ring and N-dealkylation are the main metabolic reactions. On the other hand, in the dog, the NIH shift at the fluorophenyl group, followed by conjugation is the main metabolic pathway.
引用
收藏
页码:1327 / 1343
页数:17
相关论文
共 23 条
[11]   THE ACUTE EFFECT OF SERTINDOLE ON BRAIN 5-HT2, D2 AND ALPHA-1 RECEPTORS (EXVIVO RADIORECEPTOR BINDING-STUDIES) [J].
HYTTEL, J ;
NIELSEN, JB ;
NOWAK, G .
JOURNAL OF NEURAL TRANSMISSION-GENERAL SECTION, 1992, 89 (1-2) :61-69
[12]   TRANSPORT OF CELIPROLOL ACROSS HUMAN INTESTINAL EPITHELIAL (CACO-2) CELLS - MEDIATION OF SECRETION BY MULTIPLE TRANSPORTERS INCLUDING P-GLYCOPROTEIN [J].
KARLSSON, J ;
KUO, SM ;
ZIEMNIAK, J ;
ARTURSSON, P .
BRITISH JOURNAL OF PHARMACOLOGY, 1993, 110 (03) :1009-1016
[13]   ENZYMIC CONVERSION OF 4-FLUOROPHENYLALANINE TO TYROSINE [J].
KAUFMAN, S .
BIOCHIMICA ET BIOPHYSICA ACTA, 1961, 51 (03) :619-&
[14]   METABOLISM OF HIGHER CHLORINATED BENZENE ISOMERS [J].
KOHLI, J ;
JONES, D ;
SAFE, S .
CANADIAN JOURNAL OF BIOCHEMISTRY, 1976, 54 (03) :203-208
[15]  
LAUTERBACH F, 1987, ARCH PHARM, V335, pR5
[16]  
NORIKURA R, 1993, XENOBIOTIC METABOLIS, V8, P113
[17]   MICROSOMAL METABOLISM OF FLUOROANILINES [J].
RIETJENS, IMCM ;
VERVOORT, J .
XENOBIOTICA, 1989, 19 (11) :1297-1305
[18]   OCCURRENCE OF AROMATIC METHYL MIGRATION (NIH-SHIFT) DURING OXIDATION OF PARA-METHYLANISOLE BY HEMIN-THIOLESTER COMPLEX AS A CYTOCHROME-P-450 MODEL [J].
SAKURAI, H ;
HATAYAMA, E ;
FUJITANI, K ;
KATO, H .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 1982, 108 (04) :1649-1654
[19]   SERTINDOLE - A LIMBIC SELECTIVE NEUROLEPTIC WITH POTENT ANXIOLYTIC EFFECTS [J].
SANCHEZ, C ;
ARNT, J ;
COSTALL, B ;
DOMENEY, AM ;
KELLY, E ;
NAYLOR, RJ .
DRUG DEVELOPMENT RESEARCH, 1995, 34 (01) :19-29
[20]   NEUROCHEMICAL AND INVIVO PHARMACOLOGICAL PROFILE OF SERTINDOLE, A LIMBIC-SELECTIVE NEUROLEPTIC COMPOUND [J].
SANCHEZ, C ;
ARNT, J ;
DRAGSTED, N ;
HYTTEL, J ;
LEMBOL, HL ;
MEIER, E ;
PERREGAARD, J ;
SKARSFELDT, T .
DRUG DEVELOPMENT RESEARCH, 1991, 22 (03) :239-250