Grabowski Tomasz, Jaroszewski Jerzy J, Borucka Beata, Ziółkowski Hubert
Polpharma Biologics, ul. Trzy Lipy 3, 80-172, Gdańsk, Poland,
Eur J Drug Metab Pharmacokinet. 2013 Jun;38(2):131-8. doi: 10.1007/s13318-012-0101-1. Epub 2012 Jul 14.
The aim of this study was to verify the values of maximal observed concentration (C max,obs) and the time, at which maximum concentration is observed (t max,obs) using the analysis of the absorption rate constant (k ab). It focused on the changes in concentration over time (C-T) for drugs, for which several peaks of concentration occur. In addition, the attempt was made to use Fibonacci sequence to facilitate the visual analysis of the dynamics in changes of concentration on C-T graphs. The analyses were conducted with the use of three hypothetical data groups (groups I, II and III), which had distinct C-T profiles, and with the in vivo data form healthy subjects (n = 10) taking part in a bioequivalence study, who was given a single oral dose of topiramate (100 mg). The comparison of hypothetical and real in vivo data demonstrated that for the C-T curves, in which there are several peaks of concentration C max,obs and t max,obs values can easily be miscalculated when the increase in concentration is not properly related to the appropriate absorption phase (63.2, 87.50, 96.88 %). It was also demonstrated that the data transformation with the use of Fibonacci sequence exposes slight differences in the observed concentration values in a semi-logarithmic scale. The results of this study show that in case of C-T curves with several peaks of concentration, the verification of C max and t max data obtained taking into account different absorption phases enables more precise evaluation of these parameters.
本研究的目的是通过分析吸收速率常数(kab)来验证最大观察浓度(Cmax,obs)以及观察到最大浓度的时间(tmax,obs)的值。它关注的是药物浓度随时间的变化(C-T),这类药物会出现多个浓度峰值。此外,还尝试使用斐波那契数列来促进对C-T图上浓度变化动态的直观分析。分析使用了三个假设数据组(I组、II组和III组),它们具有不同的C-T曲线,以及参与生物等效性研究的健康受试者(n = 10)的体内数据,这些受试者单次口服托吡酯(100 mg)。假设数据与实际体内数据的比较表明,对于存在多个浓度峰值的C-T曲线,当浓度增加与适当的吸收阶段没有正确关联时,Cmax,obs和tmax,obs值很容易被误算(分别为63.2%、87.50%、96.88%)。研究还表明,使用斐波那契数列进行数据转换会在半对数尺度上揭示观察到的浓度值的细微差异。本研究结果表明,对于具有多个浓度峰值的C-T曲线,考虑不同吸收阶段获得的Cmax和tmax数据的验证能够更精确地评估这些参数。