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四氢大麻酚对中枢神经系统参数和心率的浓度-效应关系建模——深入了解其作用机制及用于大麻素临床研究与开发的工具

Modelling of the concentration--effect relationship of THC on central nervous system parameters and heart rate -- insight into its mechanisms of action and a tool for clinical research and development of cannabinoids.

作者信息

Strougo A, Zuurman L, Roy C, Pinquier J L, van Gerven J M A, Cohen A F, Schoemaker R C

机构信息

Centre for Human Drug Research, Statistics, Leiden, The Netherlands.

出版信息

J Psychopharmacol. 2008 Sep;22(7):717-26. doi: 10.1177/0269881108089870. Epub 2008 Jun 26.

Abstract

Pharmacokinetics after pulmonary administration of delta-9-tetrahydrocannabinol (THC) and its major metabolites 11-OH-THC and 11-nor-9-COOH-THC was quantified. Additionally, the relationship between THC and its effects on heart rate, body sway and several visual analogue scales was investigated using pharmacokinetic-pharmacodynamic (PK-PD) modelling. This provided insights useful for the research and development of novel cannabinoids and the physiology and pharmacology of cannabinoid systems. First, the PK-PD model gave information reflecting various aspects of cannabinoid systems. The delay between THC concentration and effect was quantified in equilibration half-lives of 7.68 min for heart rate and from 39.2 to 84.8 min for the CNS responses. This suggests that the effect of THC on the different responses could be due to different sites of action or different physiological mechanisms. Differences in the shape of the concentration-effect relationship could indicate various underlying mechanisms. Second, the PK-PD model can be used for prediction of THC concentration and effect profiles. It is illustrated how this can be used to optimise studies with entirely different trial designs. Third, many new cannabinoid agonists and antagonists are in development. PK-PD models for THC can be used as a reference for new agonists or as tools to quantitate the pharmacological properties of cannabinoid antagonists.

摘要

对δ-9-四氢大麻酚(THC)及其主要代谢物11-羟基-THC和11-去甲-9-羧基-THC经肺部给药后的药代动力学进行了定量研究。此外,使用药代动力学-药效学(PK-PD)模型研究了THC与其对心率、身体摇摆以及几个视觉模拟量表影响之间的关系。这为新型大麻素的研发以及大麻素系统的生理学和药理学研究提供了有用的见解。首先,PK-PD模型提供了反映大麻素系统各个方面的信息。THC浓度与效应之间的延迟以心率平衡半衰期7.68分钟以及中枢神经系统反应的39.2至84.8分钟进行了量化。这表明THC对不同反应的影响可能是由于不同的作用部位或不同的生理机制。浓度-效应关系形状的差异可能表明各种潜在机制。其次,PK-PD模型可用于预测THC浓度和效应曲线。说明了如何将其用于优化具有完全不同试验设计的研究。第三,许多新型大麻素激动剂和拮抗剂正在研发中。THC的PK-PD模型可作为新激动剂的参考或作为量化大麻素拮抗剂药理学特性的工具。

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