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肌肉松弛剂美索卡林在哺乳动物体内的药代动力学和药效学异速生长关系

Allometry of pharmacokinetics and pharmacodynamics of the muscle relaxant metocurine in mammals.

作者信息

Gronert G A, Fung D L, Jones J H, Shafer S L, Hildebrand S V, Disbrow E A

机构信息

Department of Anesthesiology, School of Medicine, University of California, Davis 95616-8634.

出版信息

Am J Physiol. 1995 Jan;268(1 Pt 2):R85-91. doi: 10.1152/ajpregu.1995.268.1.R85.

Abstract

We investigated the effects of body size on the pharmacokinetics and pharmacodynamics of the renally cleared muscle relaxant metocurine. We hypothesized that pharmacokinetics of the drug would change allometrically in proportion to physiological time [infinity Mb0.25, where Mb is body mass] and that pharmacodynamics would be independent of size because of the highly conserved structure of the acetylcholine receptor. Metocurine effects during general anesthesia were examined in 17 rats, 8 cats, 6 dogs, 5 pigs, 7 sheep, and 12 horses. Allometric analysis demonstrated size dependence for pharmacokinetics, which were affected by physiological time (Mb0.25). Pharmacodynamics were size independent, except for the value for effect compartment concentration associated with 50% twitch paralysis (IC50). Data from individual species had a bimodal distribution that was significant: pigs and sheep were more sensitive than other large species, and their IC50 appeared size independent. IC50 was size dependent in more active species (horse, dog, cat, rat). Although the mechanism is unknown, we speculate that this trend might relate to receptor density within the end plate. Thus pharmacokinetics changed in proportion to physiological time, and pharmacodynamics were in part size independent.

摘要

我们研究了体型对经肾脏清除的肌肉松弛剂美托库铵的药代动力学和药效学的影响。我们假设该药物的药代动力学将与生理时间[无穷大×体重的0.25次方,其中体重为Mb]呈异速生长变化,并且由于乙酰胆碱受体结构高度保守,药效学将与体型无关。在17只大鼠、8只猫、6只狗、5头猪、7只绵羊和12匹马中研究了全身麻醉期间美托库铵的作用。异速生长分析表明药代动力学存在体型依赖性,其受生理时间(体重的0.25次方)影响。药效学与体型无关,但与50%抽搐麻痹相关的效应室浓度值(IC50)除外。来自各个物种的数据呈双峰分布,具有显著性:猪和绵羊比其他大型物种更敏感,且它们的IC50似乎与体型无关。IC50在更活跃的物种(马、狗、猫、大鼠)中与体型有关。尽管机制尚不清楚,但我们推测这种趋势可能与终板内的受体密度有关。因此,药代动力学与生理时间成比例变化,而药效学部分与体型无关。

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