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生物相关溶解度:利伐沙班、呋塞米、罂粟碱和尼氟酸。

Biorelevant solubility of poorly soluble drugs: rivaroxaban, furosemide, papaverine and niflumic acid.

机构信息

Department of Pharmaceutical Chemistry, Semmelweis University, H-1092 Hőgyes Endre street 9, Budapest, Hungary.

出版信息

J Pharm Biomed Anal. 2013 Sep;83:279-85. doi: 10.1016/j.jpba.2013.05.011. Epub 2013 May 18.

Abstract

In this work the biorelevant solubility of four drugs representing different acid-base property, wide range of lipohilicity and low aqueous solubility was studied. The equilibrium solubility of rivaroxaban (non-ionizable), furosemide (acid), papaverine (base) and niflumic acid (ampholyte) was determined in simulated gastric fluid (SGF pH 1.2), in simulated intestinal fluid fasted state (FaSSIF pH 6.5) and fed state (FeSSIF pH 5.0) and their corresponding blank buffers at a temperature of 37 °C using saturation shake-flask method. The concentration was measured by optimized HPLC analysis. The solubilizing effect of bile acid/lipid micelles as additive components of biorelevent media (BRM) is expressed with the solubility ratio (SR: SBRM/Sblank buffer) and the food effect was estimated from SFeSSIF/SFaSSIF coefficient. It was revealed that ionization plays primarily role in solubility of compounds which undergo ionization in BRM. The solubilizing effect in FaSSIF was marginal for the neutral compound (rivaroxaban) and for molecules are anionic at pH 6.5 (furosemide and niflumic acid). The higher concentration of solubilizing agents in FeSSIF improved the solubility of papaverine carrying positive charge and niflumic acid being partially zwitterionic at pH 5.0.

摘要

在这项工作中,研究了四种具有不同酸碱性质、广泛脂溶性和低水溶性的药物的生物相关溶解度。使用饱和摇瓶法在 37°C 下,在模拟胃液(SGF pH 1.2)、空腹状态下的模拟肠液(FaSSIF pH 6.5)和进食状态下的模拟肠液(FeSSIF pH 5.0)及其相应的空白缓冲液中测定了利伐沙班(非离解型)、呋塞米(酸)、罂粟碱(碱)和尼氟灭酸(两性离子)的平衡溶解度。浓度通过优化的 HPLC 分析进行测量。生物相关介质(BRM)中添加成分胆汁酸/脂质胶束的增溶作用用溶解度比(SR:SBRM/Sblank buffer)表示,并且从 SFeSSIF/SFaSSIF 系数估计食物效应。结果表明,在 BRM 中发生电离的化合物的溶解度主要受电离作用的影响。对于中性化合物(利伐沙班)和在 pH 6.5 下带负电荷的分子(呋塞米和尼氟灭酸),FaSSIF 中的增溶作用微不足道。在 FeSSIF 中增加增溶剂的浓度可以提高在 pH 5.0 下带正电荷的罂粟碱和部分两性离子的尼氟灭酸的溶解度。

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