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Modelling concentration-analgesia relationships for morphine to evaluate experimental pain models

机译:为吗啡建立浓度-镇痛关系模型以评估实验性疼痛模型

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摘要

The aim of this study was to develop population pharmacokinetic-pharmacodynamic models for morphine in experimental pain induced by skin heat and muscle pressure, and to evaluate the experimental pain models with regard to assessment of morphine pharmacodynamics.In a randomised, double-blind, placebo-controlled, crossover study, 39 healthy volunteers received an oral dose of 30 mg morphine hydrochloride or placebo. Non-linear mixed effects modelling was used to describe the plasma concentrations of morphine and metabolites, and the analgesic effect of morphine on experimental pain in skin and muscle.Baseline pain metrics varied between individuals and occasions, and were described with interindivid-ual and interoccasion variability. Placebo-response did not change with time. For both pain metrics, morphine effect was proportional to baseline pain and was described with a linear model with interindividual variability on drug effect slope and linked to an effect compartment for muscle pressure. The models indicate that a steady-state morphine concentration of 21 ng/mi causes 33% and 0.84% increases in stimulus intensity from baseline for muscle pressure and skin heat, respectively.The population pharmacokinetk-pharmacodynamic models developed in this study indicate that mechanical stimulation of muscle is a more clinically relevant pain stimulus for the assessment of morphine pharmacodynamics than thermal stimulation of skin.
机译:这项研究的目的是建立由皮肤热和肌肉压力引起的实验性疼痛中吗啡的总体药代动力学-药效学模型,并评估有关吗啡药效学评估的实验性疼痛模型。在随机,双盲,安慰剂中对照的交叉研究中,有39名健康志愿者接受了30 mg盐酸吗啡或安慰剂的口服剂量。非线性混合效应模型用于描述吗啡和代谢产物的血浆浓度以及吗啡对皮肤和肌肉实验性疼痛的镇痛作用。基线疼痛指标因人而异,并因个人和场合而异变化性。安慰剂反应没有随时间变化。对于这两种疼痛指标,吗啡作用均与基线疼痛成正比,并通过线性模型进行描述,该模型在药物作用斜率上存在个体差异,并与肌肉压力的作用区相联系。该模型表明,吗啡的稳态浓度为21 ng / mi,分别导致肌肉压力和皮肤热的刺激强度分别比基线增加33%和0.84%。本研究开发的总体药代动力学模型表明,机械刺激与皮肤热刺激相比,肌肉酸痛是评估吗啡药效学的更临床相关的疼痛刺激。

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