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甘精胰岛素及其他胰岛素制剂的综合药代动力学模型。

Comprehensive pharmacokinetic model of insulin Glargine and other insulin formulations.

作者信息

Tarín C, Teufel E, Picó J, Bondia J, Pfleiderer H-J

机构信息

Department of Systems Engineering and Control DISA, Technical University of Valencia UPV, 46022 Valencia, Spain.

出版信息

IEEE Trans Biomed Eng. 2005 Dec;52(12):1994-2005. doi: 10.1109/TBME.2005.857681.

Abstract

In this paper, a comprehensive pharmacokinetic model for different insulin formulations including insulin Glargine is developed based on the model proposed by Trajanoski et al. (1993). Current models show limitations for insulin Glargine due to the appearance of an uncharacteristic peak in the concentration-time evolution of plasma insulin that does not coincide with real experimental data. This important limitation has been solved in this paper by introducing a new virtual insulin state called the bound state, in addition to the dimeric and hexameric ones. Trying to describe the retarded action of insulin Glargine, the modeling idea behind this approach is that immediately after the subcutaneous injection all the insulin resides in the bound state, and only then small amounts of insulin in the hexameric form disengage from the bound state. For the model evaluation different simulation results are compared. Using experimental data published by Lepore et al. (2000), the developed model turned out to be capable of at least qualitatively predicting the concentration-time profile of plasma insulin. Both exogenous insulin flow simulations and spatial diffusion simulations show the plausibility and correct implementation of the derived model. Considering all these simulation results, the here presented new pharmacokinetic model demonstrates to be able to reproduce real patient behavior simulating even complete insulin regimes including long-acting, intermediate and short-acting insulin formulations.

摘要

在本文中,基于Trajanoski等人(1993年)提出的模型,开发了一种针对包括甘精胰岛素在内的不同胰岛素制剂的综合药代动力学模型。由于血浆胰岛素浓度 - 时间演变中出现了一个与实际实验数据不符的非典型峰值,当前模型在描述甘精胰岛素时存在局限性。本文通过引入一种除二聚体和六聚体状态之外的新的虚拟胰岛素状态——结合状态,解决了这一重要局限性。为了描述甘精胰岛素的延迟作用,这种方法背后的建模思路是,皮下注射后所有胰岛素立即处于结合状态,然后只有少量六聚体形式的胰岛素从结合状态解离。为了评估模型,比较了不同的模拟结果。利用Lepore等人(2000年)发表的实验数据,所开发的模型至少能够定性地预测血浆胰岛素的浓度 - 时间曲线。外源性胰岛素流量模拟和空间扩散模拟均表明所推导模型的合理性和正确实施。综合所有这些模拟结果,本文提出的新药代动力学模型能够模拟包括长效、中效和短效胰岛素制剂在内的完整胰岛素治疗方案,从而再现真实患者的情况。

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