Wajima Toshihiro, Yano Yoshitaka, Oguma Takayoshi
Developmental Research Laboratories, Shionogi & Co, Ltd, Osaka, Japan.
J Pharm Pharmacol. 2002 Jul;54(7):929-34. doi: 10.1211/002235702760089045.
A new and simple pharmacokinetic model that can explain enterohepatic circulation profiles for both single and repeated dosing was developed, and its applicability and usefulness were assessed by an actual published data set and simulation study. The model is basically a conventional compartment model, and the transfer rate from the bile compartment to the central compartment is assumed to change periodically, with the sine function being used to describe this periodical change. Using this model, the effect of the parameter values on plasma time-course profiles was examined by simulation, and the applicability of the model was tested by curve fitting to obtain the parameter estimates using an actual published data set. These studies confirmed that our model can simulate the periodical increase of the concentration due to re-absorption. By averaging the sine function in the transfer rate from the bile compartment to the central compartment, a smoothed time-course profile in the elimination phase that is independent of the enterohepatic cycle can be obtained. Also, the apparent half-life in the elimination phase can be estimated, whith is useful especially for evaluating drug accumulation during repeated dosing. It was suggested that the present model can be used to evaluate the drug disposition profile with enterohepatic circulation. The effects of sampling points and sampling time on parameter estimation are also discussed.
开发了一种新的简单药代动力学模型,该模型能够解释单次给药和重复给药时的肠肝循环特征,并通过实际发表的数据集和模拟研究评估了其适用性和实用性。该模型基本上是一个传统的房室模型,假定从胆汁房室到中央房室的转运速率会周期性变化,采用正弦函数来描述这种周期性变化。利用该模型,通过模拟研究了参数值对血浆时程曲线的影响,并通过曲线拟合使用实际发表的数据集来测试模型的适用性以获得参数估计值。这些研究证实我们的模型能够模拟由于重吸收导致的浓度周期性增加。通过对从胆汁房室到中央房室的转运速率中的正弦函数求平均值,可以得到消除相内与肠肝循环无关的平滑时程曲线。此外,还可以估计消除相的表观半衰期,这对于评估重复给药期间的药物蓄积尤为有用。结果表明,该模型可用于评估具有肠肝循环的药物处置特征。同时还讨论了采样点和采样时间对参数估计的影响。