Dynamic Dialysis Method for Characterizing Ammonia-Driven Drug Release from Liposomal Doxorubicin: Applicability and Kinetic Modeling.

IF 1.3 4区 医学 Q4 CHEMISTRY, MEDICINAL
Yoshinori Maeda, Yuki Takechi-Haraya, Emi Kawarai, Yasuhiro Abe, Norihito Shibata, Yoji Sato, Kumiko Sakai-Kato
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Abstract

Characterizing the complex drug release profiles of nanoparticle-based pharmaceuticals is essential to ensure their efficacy and safety. In this study, we investigated the drug release of a representative liposomal drug, Doxil, to explore the applicability of the dynamic dialysis method (DDM), which offers the advantage of simple implementation. The DDM demonstrated considerable doxorubicin release from Doxil in response to increased ammonia concentration, supporting the hypothesis of ammonia-driven drug release from Doxil in tumor environments. To analyze the drug release of liposomal doxorubicin, we developed a mathematical model that (i) does not require strict sink conditions and (ii) avoids introducing numerous kinetic parameters. This model consolidates the complexities of drug partitioning into the liposomal membrane into a single apparent permeability constant. The release profiles of Doxil at 25°C and a physiological temperature of 40°C were successfully reproduced by the kinetic model, yielding reasonable permeability coefficients of 1.4 × 10-10 and 2.1 × 10-10 cm/s, respectively. Our model described the release behavior of the generic product Lipodox, yielding a permeability coefficient of 2.1 × 10-10 cm/s at 40°C, thereby confirming the utility of the DDM across products. Our results demonstrate that, with optimized conditions, the DDM can assess the drug release kinetics of liposomal doxorubicin. Furthermore, we believe that our study provides a valuable framework for evaluating and optimizing drug release phenomena in liposomal formulations.

动态透析法表征阿霉素脂质体氨驱动药物释放:适用性和动力学建模。
表征基于纳米颗粒的药物的复杂药物释放谱对于确保其有效性和安全性至关重要。在本研究中,我们研究了具有代表性的脂质体药物Doxil的药物释放,以探索动态透析方法(DDM)的适用性,该方法具有实施简单的优点。DDM显示,随着氨浓度的增加,Doxil释放了大量的阿霉素,这支持了氨驱动药物在肿瘤环境中从Doxil释放的假设。为了分析阿霉素脂质体的药物释放,我们建立了一个数学模型,该模型(i)不需要严格的吸收条件,(ii)避免引入大量动力学参数。该模型将药物分配到脂质体膜的复杂性整合为单一的表观通透性常数。动力学模型成功再现了Doxil在25°C和40°C生理温度下的释放曲线,得到合理的渗透系数分别为1.4 × 10-10和2.1 × 10-10 cm/s。我们的模型描述了通用产品Lipodox的释放行为,在40°C下产生2.1 × 10-10 cm/s的渗透系数,从而证实了DDM在产品中的效用。结果表明,在优化的条件下,DDM可以评估阿霉素脂质体的药物释放动力学。此外,我们相信我们的研究为评价和优化脂质体制剂中的药物释放现象提供了一个有价值的框架。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
3.20
自引率
5.90%
发文量
132
审稿时长
1.7 months
期刊介绍: The CPB covers various chemical topics in the pharmaceutical and health sciences fields dealing with biologically active compounds, natural products, and medicines, while BPB deals with a wide range of biological topics in the pharmaceutical and health sciences fields including scientific research from basic to clinical studies. For details of their respective scopes, please refer to the submission topic categories below. Topics: Organic chemistry In silico science Inorganic chemistry Pharmacognosy Health statistics Forensic science Biochemistry Pharmacology Pharmaceutical care and science Medicinal chemistry Analytical chemistry Physical pharmacy Natural product chemistry Toxicology Environmental science Molecular and cellular biology Biopharmacy and pharmacokinetics Pharmaceutical education Chemical biology Physical chemistry Pharmaceutical engineering Epidemiology Hygiene Regulatory science Immunology and microbiology Clinical pharmacy Miscellaneous.
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