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用于预测阿霉素从主动载药脂质体中释放的基于机制模型的关键参数的确定。

Determination of key parameters for a mechanism-based model to predict Doxorubicin release from actively loaded liposomes.

作者信息

Csuhai Eva, Kangarlou Sogol, Xiang Tian-Xiang, Ponta Andrei, Bummer Paul, Choi Duhyung, Anderson Bradley D

机构信息

Department of Natural Sciences and Mathematics, Transylvania University, Lexington, Kentucky, 40508.

出版信息

J Pharm Sci. 2015 Mar;104(3):1087-98. doi: 10.1002/jps.24307. Epub 2015 Jan 5.

Abstract

Despite extensive study of liposomal drug formulations, reliable predictive models of release kinetics in vitro and in vivo are still lacking. Progress in the development of robust, predictive release models has been hindered by a lack of systematic, quantitative characterization of these complex drug delivery systems with respect to the myriad of factors that may influence drug release kinetics and the wide range of dissolution media/methods employed to monitor release. In this paper, the key processes and parameters needed to develop a complete mechanism-based model for doxorubicin release from actively loaded liposomal formulations resembling Doxil(®) are determined. Quantitative models must account for the driving force(s) [i.e., activity gradient(s) of the permeable species between the intraliposomal and external media] and the permeability-area product(s) for lipid bilayer transport. These factors are intertwined as membrane permeability-area products require knowledge of the drug species and concentrations that account for the release. The necessary information includes values for the drug pKa, identity of the permeable species and species permeability coefficients, a model to describe drug self-association and the relevant equilibrium constant(s), the bilayer/water partition coefficient of the predominant drug species under relevant pH conditions, and the solubility product (Ksp ) for intraliposomal precipitates that exist in such formulations.

摘要

尽管对脂质体药物制剂进行了广泛研究,但体外和体内释放动力学的可靠预测模型仍然缺乏。由于缺乏对这些复杂药物递送系统的系统定量表征,涉及可能影响药物释放动力学的众多因素以及用于监测释放的广泛溶解介质/方法,稳健的预测释放模型的开发进展受到阻碍。本文确定了开发基于完整机制的阿霉素从类似Doxil®的主动负载脂质体制剂中释放模型所需的关键过程和参数。定量模型必须考虑驱动力(即脂质体内部和外部介质之间可渗透物质的活性梯度)以及脂质双层转运的渗透面积乘积。这些因素相互交织,因为膜渗透面积乘积需要了解解释释放的药物种类和浓度。必要信息包括药物pKa值、可渗透物质的身份和物质渗透系数、描述药物自缔合的模型和相关平衡常数、相关pH条件下主要药物种类的双层/水分配系数,以及此类制剂中存在的脂质体内部沉淀物的溶度积(Ksp)。

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