Pharmacokinetics of Sertindole and its Metabolite Dehydrosertindole in Rats and Characterization of their Comparative Pharmacodynamics based on In Vivo D2 Receptor Occupancy and Behavioural Conditioned Avoidance Response

被引:10
作者
Bundgaard, Christoffer [1 ]
Larsen, Frank [1 ]
Kreilgaard, Mads [1 ]
Brennum, Lise T. [1 ]
Olsen, Christina Kurre [1 ]
机构
[1] H Lundbeck AS R&D, DK-2500 Copenhagen, Denmark
关键词
conditioned avoidance response; pharmacokinetics; pharmacodynamics; occupancy; sertindole; DOPAMINE-RECEPTORS; ANTIPSYCHOTICS; SCHIZOPHRENIA; VOLUNTEERS; ANTAGONIST; CLOZAPINE; MIDAZOLAM; SUBTYPES; AGONIST; BINDING;
D O I
10.1002/bdd.656
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
The objectives of this study were to characterize the pharmacokinetics of sertindole and its active metabolite dehydrosertindole in rats and to evaluate the central modulatory and behavioural pharmacodynamics including a competitive interaction model between the compounds. Following oral administration of sertindole or dehydrosertindole, the plasma concentration-time courses were determined in conjunction with striatal dopamine D-2 receptor binding. In addition, the behavioural effects were recorded in the conditioned avoidance response (CAR) paradigm. A one-compartment model with Michaelis-Menten elimination best described the pharmacokinetics of sertindole. Formation of dehydrosertindole was incorporated into the pharmacokinetic model and exhibited first-order elimination. PK/PD modelling after administration of dehydrosertindole resulted in potency estimates of 165 and 424 ng/ml for D-2-occupancy (Kd) and CAR measurements (EC50), respectively. The pharmacokinetics of the parent-metabolite system was integrated into a competitive pharmacodynamic E-max model in order to quantitate the potency of sertindole with the pharmacodynamic parameters of the metabolite taken into account. Based on this approach, effect compartment concentrations of sertindole needed to attain 50% occupancy and half-maximal effect in the CAR paradigm were 133 and 338 ng/ml, respectively. The corresponding potency-estimates obtained after conventional modelling of the sertindole data without accounting for the metabolite amounted to 102 and 345 ng/ml. Based on competitive PK/PD analysis of the parent-metabolite interaction, the relative contribution of dehydrosertindole to the overall pharmacological effect after sertindole administration in rats appeared to be of minor significance. This could mainly be ascribed to the relatively low extent of bioconversion of sertindole into dehydrosertindole in this species. Copyright (C) 2009 John Wiley & Sons, Ltd.
引用
收藏
页码:209 / 220
页数:12
相关论文
共 34 条
[21]   Pharmacokinetic-pharmacodynamic modeling of the hydroxy lerisetron metabolite L6-OH in rats:: An integrated parent-metabolite model [J].
Ortega, F ;
Quintana, A ;
Suárez, E ;
Lukas, JC ;
Jauregizar, N ;
de la Fuente, L ;
Lucero, ML ;
Gonzalo, A ;
Orjales, A ;
Calvo, R .
PHARMACEUTICAL RESEARCH, 2005, 22 (11) :1769-1782
[22]   Metabolism of sertindole: Identification of the metabolites in the rat and dog, and species comparison of liver microsomal metabolism [J].
Sakamoto, K ;
Nakamura, Y ;
Aikoh, S ;
Baba, T ;
Perregaard, J ;
Pedersen, H ;
Moltzen, EK ;
Mulford, DJ ;
Yamaguchi, T .
XENOBIOTICA, 1995, 25 (12) :1327-1343
[23]   R-citalopram inhibits functional and 5-HTP-evoked behavioural responses to the SSRI, escitalopram [J].
Sánchez, C ;
Kreilgaard, M .
PHARMACOLOGY BIOCHEMISTRY AND BEHAVIOR, 2004, 77 (02) :391-398
[24]  
SHEINER LB, 1979, CLIN PHARMACOL THER, V25, P358
[25]  
Shen W W, 1999, Ann Clin Psychiatry, V11, P145, DOI 10.1023/A:1022312111429
[26]   EFFECTS OF CHRONIC TREATMENT WITH SELECTIVE AGONISTS ON THE SUBTYPES OF DOPAMINE-RECEPTORS [J].
SUBRAMANIAM, S ;
LUCKI, I ;
MCGONIGLE, P .
BRAIN RESEARCH, 1992, 571 (02) :313-322
[27]  
Tuk B, 1999, J PHARMACOL EXP THER, V289, P1067
[28]   The conditioned avoidance response test re-evaluated: is it a sensitive test for the detection of potentially atypical antipsychotics? [J].
Wadenberg, MLG ;
Hicks, PB .
NEUROSCIENCE AND BIOBEHAVIORAL REVIEWS, 1999, 23 (06) :851-862
[29]   Dopamine D2 receptor occupancy is a common mechanism underlying animal models of antipsychotics and their clinical effects [J].
Wadenberg, MLG ;
Soliman, A ;
VanderSpek, SC ;
Kapur, S .
NEUROPSYCHOPHARMACOLOGY, 2001, 25 (05) :633-641
[30]   Modeling of sertindole pharmacokinetic disposition in healthy volunteers in short term dose-escalation studies [J].
Wong, SL ;
Granneman, GR .
JOURNAL OF PHARMACEUTICAL SCIENCES, 1998, 87 (12) :1629-1631