Cytochrome P-4502B6 is responsible for interindividual variability of propofol hydroxylation by human liver microsomes

被引:168
作者
Court, MH
Duan, SX
Hesse, LM
Venkatakrishnan, K
Greenblatt, DJ
机构
[1] Tufts Univ, Dept Pharmacol & Expt Therapeut, Boston, MA 02111 USA
[2] Tufts Univ, Sch Vet Med, Dept Clin Sci, N Grafton, MA 01536 USA
关键词
D O I
10.1097/00000542-200101000-00021
中图分类号
R614 [麻醉学];
学科分类号
100217 ;
摘要
Background: Oxidation of propofol to 4-hydroxypropofol represents a significant pathway in the metabolism of this anesthetic agent in humans. The aim of this study was to identify the principal cytochrome P-450 (CYP) isoforms mediating this biotransformation. Methods: Propofol hydroxylation activities and enzyme kinetics mere determined using human liver microsomes and cDNA-expressed CYPs. CYP-specific marker activities and CYP2B6 protein content were also quantified in hepatic microsomes for correlational analyses. Finally, inhibitory antibodies were used to ascertain the relative contribution of CYPs to propofol hydroxylation by hepatic microsomes. Results: Propofol hydroxylation by hepatic microsomes showed more than 19-fold variability and was most closely correlated to CYP2B6 protein content (r = 0.904), and the CYP2B6 marker activities, S-mephenytoin N-demethylation (r = 0.919) and bupropion hydroxylation (r = 0.854). High- and intermediate-activity livers demonstrated high-affinity enzyme kinetics (K-m < 8 <mu>M), whereas low-activity livers displayed low-affinity kinetics (K-m > 80 muM). All of the CYPs evaluated were capable of hydroxylating propofol; however, CYP2B6 and CYP2C9 were most active. Kinetic analysis indicated that CYP2B6 is a high-affinity (K-m = 10 +/- 2 muM; mean +/- SE of the estimate), high-capacity enzyme, whereas CYP2C9 is a low-affinity (K-m = 41 +/- 8 muM), high-capacity enzyme. Furthermore, immunoinhibition showed a greater contribution of CYP2B6 (56 +/- 22% inhibition; mean +/- SD) compared with CYP2C isoforms (16 +/- 7% inhibition) to hepatic microsomal activity. Conclusions: Cytochrome P-450 2B6, and to a lesser extent CYP2C9, contribute to the oxidative metabolism of propofol. However, CYP2B6 is the principal determinant of interindividual variability in the hydroxylation of this drug by human liver microsomes.
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页码:110 / 119
页数:10
相关论文
共 38 条
[1]  
Akaike H., 1976, MATH SCI, V14, P5
[2]  
APFELBAUM JL, 1993, ANESTH ANALG, V77, pS10
[3]   Administration of propofol by target-controlled infusion in patients undergoing coronary artery surgery [J].
Barvais, L ;
Rausin, I ;
Glen, JB ;
Hunter, SC ;
DHulster, D ;
Cantraine, F ;
dHollander, A .
JOURNAL OF CARDIOTHORACIC AND VASCULAR ANESTHESIA, 1996, 10 (07) :877-883
[4]  
Code EL, 1997, DRUG METAB DISPOS, V25, P985
[5]   DETERMINATION OF BUPROPION AND ITS MAJOR BASIC METABOLITES IN PLASMA BY LIQUID-CHROMATOGRAPHY WITH DUAL-WAVELENGTH ULTRAVIOLET DETECTION [J].
COOPER, TB ;
SUCKOW, RF ;
GLASSMAN, A .
JOURNAL OF PHARMACEUTICAL SCIENCES, 1984, 73 (08) :1104-1107
[6]  
Court MH, 1999, DRUG METAB DISPOS, V27, P1293
[7]  
Court MH, 1997, BIOPHARM DRUG DISPOS, V18, P213, DOI 10.1002/(SICI)1099-081X(199704)18:3<213::AID-BDD15>3.0.CO
[8]  
2-0
[9]   XENOBIOTIC-INDUCIBLE TRANSCRIPTION OF CYTOCHROME-P450 GENES [J].
DENISON, MS ;
WHITLOCK, JP .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1995, 270 (31) :18175-18178
[10]   The role of CYP2B6 in human xenobiotic metabolism [J].
Ekins, S ;
Wrighton, SA .
DRUG METABOLISM REVIEWS, 1999, 31 (03) :719-754