使用间接反应模型的昼夜皮质醇浓度的数学建模:几种方法的比较。

A Chakraborty, W Krzyzanski, W J Jusko
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引用次数: 82

摘要

评估了描述皮质醇浓度的时间生物学的六个数学函数。对吸入丙酸氟替卡松剂量比例研究的平均数据进行了间接响应模型拟合,该模型使用各种生物节律函数(单余弦函数、双斜坡函数、双零阶函数、双余弦函数和2次和n次谐波的傅立叶级数)来模拟生产速率。使用ADAPT II程序生成已知参数和随机变化的数据并进行拟合。对拟合参数、模型估计准则和运行试验进行了比较。具有预先分配函数的模型:双坡道、双零阶和双余弦提供皮质醇释放率的最大和最小时间,适用于描述不对称昼夜节律模式并产生IC50值。傅里叶分析与其他方法的不同之处在于它使用安慰剂数据来恢复皮质醇分泌率的方程,而不是通过假设。非线性回归的傅里叶分析,而不是l2 -范数方法,是有用的表征基线皮质醇数据,但仅限于两个谐波的最大值。除了预测对称皮质醇浓度的单一余弦函数外,所有方法在描述基线和抑制皮质醇浓度方面都令人满意。另一方面,具有l2范数的傅立叶级数对基线模式产生了最好的无偏估计。傅里叶方法灵活、准确,可扩展到其他药物引起的正常周期节律变化。
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Mathematical modeling of circadian cortisol concentrations using indirect response models: comparison of several methods.

Six mathematical functions to describe the chronobiology of cortisol concentrations were assessed. Mean data from a dose-proportionality study of inhaled fluticasone propionate were fitted with an indirect response model using various biorhythmic functions (single cosine, dual ramps, dual zero-order, dual cosines, and Fourier series with 2 and n-harmonics) for production rate. Data with known parameters and random variation were also generated and fitted using the ADAPT II program. Fitted parameters, model estimation criteria, and runs tests were compared. Models with preassigned functions: the dual ramps, the dual zero-order and the dual cosines provide maximum and minimum times for cortisol release rate, were suitable for describing asymmetric circadian patterns and yielding IC50 values. Fourier analysis differs from the other methods in that it uses the placebo data to recover equations for cortisol secretion rate rather than by postulation. Nonlinear regression for Fourier analysis, instead of the L2-norm method, was useful to characterize the baseline cortisol data but was restricted to a maximum of two harmonics. Apart from the single cosine function, which predicts symmetrical cortisol concentrations, all methods were satisfactory in describing the baseline and suppressed cortisol concentrations. On the other hand, Fourier series with L2-norm produced the best unbiased estimate for baseline patterns. The Fourier method is flexible, accurate, and can be extended to other drug-induced changes in normal periodic rhythms.

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Edward R. Garrett 1920–1993 Edward R. Garrett: A biographical sketch Erratum to: Simple approximate formulas for calculating the time to clear drug and the time to accumulate drug when the plasma disposition curve of the drug is multiexponential Erratum to: Simplified methods for the evaluation of the parameters of the time course of plasma concentration in the one-compartment body model with first-order invasion and first-order drug elimination including methods for ascertaining when such rate constants are equal Erratum to: Comparative physiological pharmacokinetics of fenatyl and alfenatil in rats and humans based on parametric single-tissue models
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