In vitro biotransformation of the selective serotonin reuptake inhibitor citalopram, its enantiomers and demethylated metabolites by monoamine oxidase in rat and human brain preparations

被引:0
作者
M Kosel
C Gnerre
P Voirol
M Amey
B Rochat
C Bouras
B Testa
P Baumann
机构
[1] Unité de Biochimie et Psychopharmacologie Clinique,Département Universitaire de Psychiatrie Adulte
[2] Psychiatric Neuroimaging Group,Département de Psychiatrie
[3] Inselspital,undefined
[4] Institut de Chimie Thérapeutique,undefined
[5] Ecole de Pharmacie,undefined
[6] Université de Lausanne,undefined
[7] Biozentrum,undefined
[8] Universität Basel,undefined
[9] Dept of Clinical Pharmacy,undefined
[10] University of California,undefined
[11] Novartis,undefined
[12] Hôpitaux Universitaires de Genève,undefined
来源
Molecular Psychiatry | 2002年 / 7卷
关键词
citalopram; human brain; rat brain; drug metabolism; monoamine oxidase; cytochrome P-450;
D O I
暂无
中图分类号
学科分类号
摘要
This study was conducted to identify enzyme systems eventually catalysing a local cerebral metabolism of citalopram, a widely used antidepressant of the selective serotonin reuptake inhibitor type. The metabolism of citalopram, of its enantiomers and demethylated metabolites was investigated in rat brain microsomes and in rat and human brain mitochondria. No cytochrome P-450 mediated transformation was observed in rat brain. By analysing H2O2 formation, monoamine oxidase A activity in rat brain mitochondria could be measured. In rat whole brain and in human frontal cortex, putamen, cerebellum and white matter of five brains monoamine oxidase activity was determined by the stereoselective measurement of the production of citalopram propionate. All substrates were metabolised by both forms of MAO, except in rat brain, where monoamine oxidase B activity could not be detected. Apparent Km and Vmax of S-citalopram biotransformation in human frontal cortex by monoamine oxidase B were found to be 266 μM and 6.0 pmol min−1 mg−1 protein and by monoamine oxidase A 856 μM and 6.4 pmol min−1 mg−1 protein, respectively. These Km values are in the same range as those for serotonin and dopamine metabolism by monoamine oxidases. Thus, the biotransformation of citalopram in the rat and human brain occurs mainly through monoamine oxidases and not, as in the liver, through cytochrome P-450.
引用
收藏
页码:181 / 188
页数:7
相关论文
共 179 条
[1]  
Strobel HW(1997)Cytochrome P450-dependent biotransformation of drugs and other xenobiotic substrates in neural tissue Drug Metab Rev 29 1079-1105
[2]  
Geng J(1998)Metabolism of xenobiotics in the central nervous system—implications and challenges Biochem Pharmacol 56 547-551
[3]  
Kawashima H(1998)Monoamine oxidases and related amine oxidases as phase 1 enzymes in the metabolism of xenobiotics J Neural Transm S52 149-171
[4]  
Wang H(1990)The MPTP story: MAO activates tetrahydropyridine derivatives to toxins causing parkinsonism Drug Metab Rev 22 291-332
[5]  
Ravindranath V(1994)Combined SSRI-moclobemide treatment of psychiatric disease J Clin Psychiatry 55 24-25
[6]  
Strolin Benedetti M(1996)Safety and tolerability of combined treatment with moclobemide and SSRIs: a systematic study of 50 patients Int Clin Psychopharmacol 11 187-191
[7]  
Tipton KF(1996)Safety and tolerability of combined treatment with moclobemide and SSRIs: a preliminary study of 19 patients J Psychopharmacol 10 241-245
[8]  
Maret G(1995)Moclobemide and fluvoxamine co-administration: a prospective study in healthy volunteers to investigate the potential development of the ‘serotonin syndrome’ Hum Psychopharmacol 10 25-31
[9]  
Testa B(1991)The serotonin syndrome Am J Psychiatry 148 705-713
[10]  
Jenner P(1994)Serotonin syndrome—incidence, symptoms and treatment CNS Drugs 2 132-143