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使用动力学模型预测达到平衡的时间以改进平衡透析中化合物未结合分数的估计

Prediction of the Time to Reach Equilibrium for Improved Estimation of the Unbound Fraction of Compounds in Equilibrium Dialysis Using kinetic Modeling.

作者信息

Bae Chan, Chung Gujin, Chung Suk-Jae

机构信息

College of Pharmacy and Research Institute of Pharmaceutical Sciences, Seoul National University, 1 Gwanak-ro, Gwanak-gu, Seoul, 08826, Republic of Korea.

Seoul National University Bundang Hospital Healthcare Innovation Park 6F, 172 Dolma-ro, Bundang-gu, Seongnam-si, 13605, Republic of Korea.

出版信息

J Pharm Sci. 2023 Nov;112(11):2901-2909. doi: 10.1016/j.xphs.2023.06.015. Epub 2023 Jun 29.

Abstract

Equilibrium dialysis (ED) is widely used in pharmacokinetics to determine the fraction of unbound (f) compounds in plasma; however, the kinetics of drugs in the ED system with respect to their permeation across semi-permeable membranes has not been systemically studied. Here, the kinetics of the ED system, including the binding of drugs to plasma proteins, non-specific binding, and permeation across the membrane, was described to enable verification of the equilibrium, prediction of the time to reach equilibrium, and estimations of f with data obtained during pre-equilibrium. Using data obtained during pre-equilibrium, the time to reach 90% equilibrium (t) and f were estimated with reasonable accuracy. Notably, f could be estimated reasonably well using one-time-point data for the calculation. Furthermore, the current modeling approach allowed concurrent estimations of f and the decomposition rate of compounds that were metabolically unstable in the plasma. Reasonable metabolic rate constants were determined for cefadroxil and diltiazem, demonstrating the practicality of this method for determining kinetics related to f characterization. Because the determination of f of compounds with 'unfavorable' physicochemical properties is known to be experimentally challenging, the current method may be useful in determining the f of compounds in vitro.

摘要

平衡透析(ED)在药代动力学中被广泛用于测定血浆中未结合化合物的分数(f);然而,在ED系统中药物跨半透膜渗透的动力学尚未得到系统研究。在此,描述了ED系统的动力学,包括药物与血浆蛋白的结合、非特异性结合以及跨膜渗透,以便能够验证平衡、预测达到平衡的时间,并利用平衡前获得的数据估算f。利用平衡前获得的数据,能够以合理的准确度估算达到90%平衡的时间(t)和f。值得注意的是,使用单次时间点数据进行计算也能较好地估算f。此外,当前的建模方法允许同时估算f以及血浆中代谢不稳定化合物的分解速率。确定了头孢羟氨苄和地尔硫䓬合理的代谢速率常数,证明了该方法在确定与f表征相关的动力学方面的实用性。由于已知测定具有“不利”物理化学性质的化合物的f在实验上具有挑战性,当前方法可能有助于在体外测定化合物的f。

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