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药物蛋白结合的自诱导可能性。

On the possibility of self-induction of drug protein binding.

机构信息

Genentech Inc., 1 DNA Way, South San Francisco, CA 94080, USA.

出版信息

J Pharm Sci. 2010 Oct;99(10):4400-5. doi: 10.1002/jps.22126.

Abstract

The equilibrium unbound drug fraction (f(u)) is an important pharmacokinetic parameter, which influences drug elimination and distribution in the body. Commonly the drug plasma concentration is substantially less then that of drug binding proteins, so that f(u) can be assumed constant independent of drug concentration. A general consideration of protein binding based on the mass-action law provides that the unbound drug fraction increases with the increase of drug concentration, which is also a usual experimental observation. For several drugs, though, a seemingly unusual sharp decrease of the unbound drug fraction with the increase of total drug concentration (R(o)) in the interval 0 < R(o) less, similar 5 microM was experimentally observed. A possible explanation of this apparently strange phenomenon is presented. The explanation is based on the consideration of a two-step mechanism of drug protein binding. The first step occurs as a drug binding to the site with relatively low affinity. Consequently this binding leads to the activation of a high affinity site, which otherwise is not available for binding. The suggested binding scheme yields the curves for f(u) dependence on the total drug concentration that are in good agreement with experimental measurements. The interpretation of pharmacokinetic data for the drugs with such unusual concentration dependence of f(u) appears to be a formidable problem.

摘要

平衡游离药物分数(f(u))是一个重要的药代动力学参数,它影响药物在体内的消除和分布。通常情况下,药物血浆浓度远低于药物结合蛋白的浓度,因此可以假设 f(u)在药物浓度不变的情况下保持恒定。根据质量作用定律对蛋白质结合的一般考虑表明,游离药物分数随着药物浓度的增加而增加,这也是通常的实验观察结果。然而,对于一些药物,尽管在总药物浓度(R(o))0 < R(o) < 5 microM 的范围内,实验观察到游离药物分数似乎异常急剧地随着总药物浓度的增加而降低。对这一明显奇怪现象提出了一种可能的解释。该解释基于药物蛋白结合的两步机制的考虑。第一步是药物与亲和力相对较低的位点结合。因此,这种结合导致高亲和力位点的激活,否则该位点无法结合。建议的结合方案产生了与实验测量值非常吻合的 f(u)对总药物浓度的依赖性曲线。对于具有这种游离药物分数异常浓度依赖性的药物,药代动力学数据的解释似乎是一个艰巨的问题。

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