Karalis V, Claret L, Iliadis A, Macheras P
School of Pharmacy, University of Athens, Greece.
Pharm Res. 2001 Jul;18(7):1056-60. doi: 10.1023/a:1010965001162.
To develop the physiologically sound concept of fractal volume of drug distribution, vf, and evaluate its utility and applicability in interspecies pharmacokinetic scaling.
Estimates for vf of various drugs in different species were obtained from the relationship: vf = (v - Vpl)(Vap - Vpl)/V + Vpl where v is the total volume of the species (equivalent to its total mass assuming a uniform density Ig/mL), Vpl is the plasma volume of the species and Vap is the conventional volume of drug distribution. This equation was also used to calculate the fractal analogs of various volume terms of drug distribution (the volume of central compartment, Vc, the steady state volume of distribution, Vss, and the volume of distribution following pseudodistribution equilibrium, Vz). The calculated fractal volumes of drug distribution were correlated with body mass of different mammalian species and allometric exponents and coefficients were determined.
The calculated values of vf for selected drugs in humans provided meaningful and physiologically sound estimates for the distribution of drugs in the human body. For all fractal volume terms utilized, the allometric exponents were found to be either one or close to unity. The estimates of the allometric coefficients were found to be in the interval (0,1). These decimal values correspond to a fixed fraction of the fractal volume term relative to body mass in each one of the species.
Fractal volumes of drug distribution scale proportionally to mass. This confirms the theoretically expected relationship between volume and mass in mammalian species.
建立药物分布分形体积vf的生理学合理概念,并评估其在种间药代动力学标度中的实用性和适用性。
根据以下关系获得不同物种中各种药物的vf估计值:vf = (v - Vpl)(Vap - Vpl)/V + Vpl,其中v是物种的总体积(假设密度为1g/mL,等同于其总质量),Vpl是物种的血浆体积,Vap是传统的药物分布体积。该方程还用于计算药物分布各种体积项的分形类似物(中央室体积Vc、稳态分布体积Vss以及伪分布平衡后的分布体积Vz)。计算得到的药物分布分形体积与不同哺乳动物物种的体重相关,并确定了异速生长指数和系数。
计算得到的人体中选定药物的vf值为药物在人体内的分布提供了有意义且生理学合理的估计。对于所使用的所有分形体积项,发现异速生长指数要么为1,要么接近1。发现异速生长系数的估计值在区间(0,1)内。这些小数值对应于每个物种中分形体积项相对于体重的固定比例。
药物分布的分形体积与质量成比例标度。这证实了哺乳动物物种中体积与质量之间理论上预期的关系。