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评估(相互)作用代谢物在体内药效学研究中作用的策略:以庚巴比妥为例的模型研究

Strategy to assess the role of (inter)active metabolites in pharmacodynamic studies in-vivo: a model study with heptabarbital.

作者信息

Dingemanse J, Thomassen D, Mentink B H, Danhof M

机构信息

Division of Pharmacology, University of Leiden, Sylvius Laboratories, The Netherlands.

出版信息

J Pharm Pharmacol. 1988 Aug;40(8):552-7. doi: 10.1111/j.2042-7158.1988.tb05301.x.

DOI:10.1111/j.2042-7158.1988.tb05301.x
PMID:2907009
Abstract

The purpose of this investigation was to develop a universal experimental strategy by which the role of (inter)active metabolites in in-vivo pharmacodynamic studies can be examined. Heptabarbital was chosen as a model drug and several pharmacokinetic variables which may affect in-vivo concentration-pharmacological response relationships were examined. Adult female rats received an i.v. infusion of the drug at one of three different rates (0.225-1.50 mg min-1) until the animals lost their righting reflex (after 11 +/- 1 to 88 +/- 8 min of infusion). The serum concentration of the drug at onset of loss of righting reflex (LRR) increased slightly with increasing infusion rate. The drug concentrations in brain tissue and cerebrospinal fluid (CSF), (mean +/- s.d.: 67 +/- 5 mg kg-1 and 24 +/- 4 mg L-1, respectively, for the lowest infusion rate) were not affected by the infusion rate. The possible contribution of (inter)active metabolites to the pharmacological response of heptabarbital was determined by administration of different i.v. bolus doses (14.1-22.5 mg) resulting in widely differing sleeping-times (7 +/- 3 to 119 +/- 20 min). The concentrations of heptabarbital in serum, brain tissue and CSF at offset of LRR (mean +/- s.d.: 77 +/- 8 mg L-1, 76 +/- 7 mg kg-1 and 29 +/- 5 mg L-1, respectively, for the highest dose) were not affected by the administered dose.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

本研究的目的是开发一种通用的实验策略,通过该策略可以研究(相互)作用代谢物在体内药效学研究中的作用。选择庚巴比妥作为模型药物,并研究了几个可能影响体内浓度-药理反应关系的药代动力学变量。成年雌性大鼠以三种不同速率之一(0.225 - 1.50 mg min-1)静脉输注该药物,直至动物失去翻正反射(输注11±1至88±8分钟后)。翻正反射丧失(LRR)开始时药物的血清浓度随输注速率增加而略有升高。脑组织和脑脊液(CSF)中的药物浓度(最低输注速率时,分别为平均±标准差:67±5 mg kg-1和24±4 mg L-1)不受输注速率影响。通过静脉注射不同的大剂量(14.1 - 22.5 mg)来确定(相互)作用代谢物对庚巴比妥药理反应的可能贡献,这些剂量导致睡眠时间差异很大(7±3至119±20分钟)。LRR结束时血清、脑组织和CSF中庚巴比妥的浓度(最高剂量时,分别为平均±标准差:77±8 mg L-1、76±7 mg kg-1和29±5 mg L-1)不受给药剂量影响。(摘要截断于250字)

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