Department of Pharmacology, Faculty of Medicine and Dentistry, University of Alberta, Edmonton, Alberta, Canada.
Br J Clin Pharmacol. 2017 Nov;83(11):2426-2449. doi: 10.1111/bcp.13357. Epub 2017 Sep 13.
To design, construct and validate a pharmacokinetics simulator that offers students hands-on opportunities to participate in the design, administration and analysis of oral and intravenous dosing regimens.
The Alberta Drug Administration Modeller (ADAM) is a mechanical patient in which peristaltic circulation of water through a network of silicone tubing and glass bottles creates a representation of the outcomes of drug absorption, distribution, metabolism and elimination. Changing peristaltic pump rates and volumes in bottles allows values for pharmacokinetic constants to be varied, thereby simulating differences in drug properties and in patient physiologies and pathologies. Following administration of methylene blue dye by oral or intravenous routes, plasma and/or urine samples are collected and drug concentrations are determined spectrophotometrically. The effectiveness of the simulator in enhancing student competence and confidence was assessed in two undergraduate laboratory classes.
The simulator effectively models one- and two-compartment drug behaviour in a mathematically-robust and realistic manner. Data allow calculation of numerous pharmacokinetic constants, by traditional graphing methods or with curve-fitting software. Students' competence in solving pharmacokinetic problems involving calculations and graphing improved significantly, while an increase in confidence and understanding was reported.
The ADAM is relatively inexpensive and straightforward to construct, and offers a realistic, hands-on pharmacokinetics learning opportunity for students that effectively complements didactic lectures.
设计、构建和验证一个药代动力学模拟器,为学生提供参与设计、管理和分析口服和静脉给药方案的实践机会。
阿尔伯塔药物管理模型(ADAM)是一个机械患者,水通过硅酮管和玻璃瓶网络的蠕动循环模拟药物吸收、分布、代谢和消除的结果。改变蠕动泵在瓶中的速度和体积可以改变药代动力学常数的值,从而模拟药物性质以及患者生理和病理的差异。通过口服或静脉途径给予亚甲蓝染料后,收集血浆和/或尿液样本,并通过分光光度法测定药物浓度。该模拟器在两个本科实验室课程中增强学生能力和信心的效果进行了评估。
该模拟器以数学上稳健和现实的方式有效地模拟了单室和双室药物行为。数据允许通过传统的绘图方法或曲线拟合软件计算许多药代动力学常数。学生解决涉及计算和绘图的药代动力学问题的能力显著提高,同时报告了信心和理解的提高。
ADAM 构建相对便宜且简单,为学生提供了一个真实的、实践的药代动力学学习机会,有效地补充了理论讲座。