The metabolic fate of amitriptyline, nortriptyline and amitriptylinoxide in man

被引:73
作者
Breyer-Pfaff, U [1 ]
机构
[1] Univ Tubingen, Dept Pharmacol & Toxicol, D-72076 Tubingen, Germany
关键词
amitriptyline; nortriptyline; biotransformation; metabolite(s); enantioselective;
D O I
10.1081/DMR-200033482
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Amitriptyline (AT), the most widely used tricyclic antidepressant, undergoes oxidative metabolism in the side chain with production of the secondary amine nortriptyline (NT), a primary amine, and the N-oxide amitriptylinoxide (AT-NO); in addition, direct conjugation leads to a quaternary ammonium-linked glucuronide. Hydroxylation of AT or NT at the ethylene bridge of the central seven-membered ring results in four isomeric alcohols and occurs with high stereo- and enantioselectivity, the (-)-(E)-10-hydroxy compounds usually being the major products. The disposition of the alcohols is also partially enantioselective, for instance with regard to glucuronidation and reversible oxidation to ketones. Introduction of a second hydroxy group results in isomeric glycols. Oxidative attack at an aromatic ring is a minor pathway leading to dihydrodiols and phenols. Numerous metabolites originate by combinations of reactions in the ring system and the side chain. AT-NO is by about one-third excreted in unchanged form or as 10-hydroxy derivative; the major part is reduced to AT and metabolized further. The review covers current knowledge on the enzymes participating in the individual pathways. Their quantitative importance is inferred from kinetic studies in volunteers and patients and from experiments in vitro. Clinical consequences of biochemical findings mainly derive from the impact of the polymorphic CYP2D6 mediating (-)-(E)-10-hydroxylation and from its potential inhibition by other psychoactive drugs.
引用
收藏
页码:723 / 746
页数:24
相关论文
共 101 条
[11]   INVITRO METABOLISM IN THE RABBIT OF DESIPRAMINE AND NORTRIPTYLINE TO YIELD CARBOXYLIC-ACIDS [J].
BECKETT, AH ;
HUTT, AJ .
JOURNAL OF PHARMACY AND PHARMACOLOGY, 1982, 34 (09) :614-614
[12]   METABOLISM OF AMITRIPTYLINE, NORTRIPTYLINE, IMIPRAMINE AND ESIPRAMINE TO YIELD HYDROXYLAMINES [J].
BECKETT, AH ;
ALSARRAJ, S .
JOURNAL OF PHARMACY AND PHARMACOLOGY, 1973, 25 (04) :335-336
[13]   PRONOUNCED INHIBITION OF NORADRENALINE UPTAKE BY 10-HYDROXY-METABOLITES OF NORTRIPTYLINE [J].
BERTILSSON, L ;
MELLSTROM, B ;
SJOQVIST, F .
LIFE SCIENCES, 1979, 25 (15) :1285-1292
[14]   NORTRIPTYLINE AND ANTIPYRINE CLEARANCE IN RELATION TO DEBRISOQUINE HYDROXYLATION IN MAN [J].
BERTILSSON, L ;
EICHELBAUM, M ;
MELLSTROM, B ;
SAWE, J ;
SCHULZ, HU ;
SJOQVIST, F .
LIFE SCIENCES, 1980, 27 (18) :1673-1677
[15]   STEREOSPECIFIC HYDROXYLATION OF NORTRIPTYLINE IN MAN IN RELATION TO INTERINDIVIDUAL DIFFERENCES IN ITS STEADY-STATE PLASMA LEVEL [J].
BERTILSSON, L ;
ALEXANDERSON, B .
EUROPEAN JOURNAL OF CLINICAL PHARMACOLOGY, 1972, 4 (04) :201-+
[16]   Molecular genetics of CYP2D6:: Clinical relevance with focus on psychotropic drugs [J].
Bertilsson, L ;
Dahl, ML ;
Dalén, P ;
Al-Shurbaji, A .
BRITISH JOURNAL OF CLINICAL PHARMACOLOGY, 2002, 53 (02) :111-122
[17]   DISPOSITION OF SINGLE ORAL DOSES OF E-10-HYDROXYNORTRIPTYLINE IN HEALTHY-SUBJECTS, WITH SOME OBSERVATIONS ON PHARMACODYNAMIC EFFECTS [J].
BERTILSSON, L ;
NORDIN, C ;
OTANI, K ;
RESUL, B ;
SCHEININ, M ;
SIWERS, B ;
SJOQVIST, F .
CLINICAL PHARMACOLOGY & THERAPEUTICS, 1986, 40 (03) :261-267
[18]   Cerebral metabolism of imipramine and a purified flavin-containing monooxygenase from human brain [J].
Bhagwat, SV ;
Bhamre, S ;
Boyd, MR ;
Ravindranath, V .
NEUROPSYCHOPHARMACOLOGY, 1996, 15 (02) :133-142
[19]  
BICKEL MH, 1971, ARCH BIOCHEM BIOPHYS, V18, P54
[20]  
BICKEL MH, 1980, HDB EXPT PHARM, V55, P551