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用于评估右美沙芬代谢表型的药代动力学参数分析。

Analysis of pharmacokinetic parameters for assessment of dextromethorphan metabolic phenotypes.

作者信息

Yeh Geng-Chang, Tao Pao-Luh, Ho Hsiu-O, Lee Yung-Jin, Chen Julia Yi-Ru, Sheu Ming-Thau

机构信息

Department of Pediatrics, Taipei Medical University Hospital, Graduate Institute of Medical Science, College of Medicine, Taipei, Taiwan, ROC.

出版信息

J Biomed Sci. 2003 Sep-Oct;10(5):552-64. doi: 10.1007/BF02256117.

Abstract

In this study, the metabolic ratios of dextromethorphan to dextrorphan (DM/DX) in plasma were calculated at steady state after administering 2 dosage forms (Medicon) and Detusiv) of DM with different release rates. The urinary metabolic ratio for each subject was also determined based on the total drug concentration in the urine. An analysis of pharmacokinetic parameters for determining the DM metabolic phenotype was conducted. Results demonstrate that double logarithmic correlations between the metabolic ratios based on pharmacokinetic parameters of either AUC(0-tau,ss), C(max,ss), C(min,ss), or C(ave,ss) for Medicon and Detusiv and the urinary metabolic ratios were all significant. Probit plots of the metabolic ratios based on these pharmacokinetic parameters revealed 2 clusters of distribution, representing extensive and intermediate metabolizers. An antimode of 2.0 for total drug based on these pharmacokinetic parameters was determined and correspondingly referred to an antimode of 0.02 for the urinary metabolic ratio to delineate extensive and intermediate metabolizers. This model was also verified to be appropriate when using total plasma concentrations of DM and DX at any time during the period of the dosing interval at steady state to calculate the metabolic ratio for identifying extensive and intermediate metabolizers. Therefore, the metabolic ratio based on the pharmacokinetic parameters of either AUC(0-tau,ss), C(max,ss), C(min,ss), or C(ave,ss) and plasma concentrations of DM and DX in a single blood sample at steady state are proposed as an alternative way to identify phenotypes of CYP2D6.

摘要

在本研究中,给予两种不同释放速率的右美沙芬剂型(美迪康和德图西)后,在稳态下计算血浆中右美沙芬与右啡烷的代谢比(DM/DX)。还根据尿液中的总药物浓度确定了每个受试者的尿液代谢比。进行了用于确定右美沙芬代谢表型的药代动力学参数分析。结果表明,基于美迪康和德图西的AUC(0-tau,ss)、C(max,ss)、C(min,ss)或C(ave,ss)等药代动力学参数的代谢比与尿液代谢比之间的双对数相关性均具有显著性。基于这些药代动力学参数的代谢比的概率图显示出两个分布簇,分别代表广泛代谢者和中间代谢者。确定了基于这些药代动力学参数的总药物的反众数为2.0,并相应地将尿液代谢比的反众数定为0.02,以区分广泛代谢者和中间代谢者。当使用稳态给药间隔期间任何时间的右美沙芬和右啡烷的总血浆浓度来计算代谢比以识别广泛代谢者和中间代谢者时,该模型也被验证是合适的。因此,建议基于AUC(0-tau,ss)、C(max,ss)、C(min,ss)或C(ave,ss)的药代动力学参数以及稳态下单份血样中右美沙芬和右啡烷的血浆浓度的代谢比作为识别CYP2D6表型的替代方法。

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