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水飞蓟宾增溶:共溶剂与包合作用的协同效应。

Silibinin solubilization: combined effect of co-solvency and inclusion complex formation.

机构信息

Department of Pharmaceutical Nanotechnology, School of Pharmacy, Zanjan University of Medical Sciences, Zanjan, Iran.

Department of Pharmaceutics, School of Pharmacy, Alborz University of Medical Sciences, Karaj, Iran.

出版信息

Drug Dev Ind Pharm. 2024 May;50(5):470-480. doi: 10.1080/03639045.2024.2343016. Epub 2024 Apr 24.

Abstract

OBJECTIVE

Belonging to the class II drugs according to the biopharmaceutics classification system, silibinin (SLB) benefits from high permeability but suffers poor solubility that negatively affects the development of any delivery system. This research aimed to improve SLB solubility by combined use of co-solvency and complexation phenomena.

METHODS

Solubility studies were performed using the phase solubility analysis according to the shake-flask method in the presence of ethanol and 2-hydroxypropyl-β-cyclodextrin (HP-β-CD) as a co-solvent and inclusion complexing agent, respectively. SLB release studies from chitosan nanoparticles were carried out in double-wall, diffusion cells using the optimized drug release medium.

RESULTS

SLB solubility was mathematically optimized constraining to using the lowest concentrations of ethanol and HP-β-CD. SLB solubility increased linearly with the increase of HP-β-CD concentration. The solubility in PBS-ethanol mixtures followed a log-linear model. SLB solubility in the presence of the ethanol co-solvent and HP-β-CD complexing agent was optimized by adopting a genetic algorithm suggesting the phosphate buffer saline solution supplemented by 6%v/v ethanol and 8 mM HP-β-CD as an optimized medium. The optimized solution was examined to study SLB release from chitosan nanoparticles (4.5 ± 0.2% drug loading) at 37 °C under static conditions. The sigmoidal release profile of SLB from the particles indicated a combination of erosion and diffusion mechanisms governing drug release from the nanoparticles.

CONCLUSION

SLB solubility in a buffered solution supplemented by ethanol co-solvent and HP-β-CD complexing agent is a function of free drug present in the semi-aqueous media, the drug-ligand binary complex, and the drug/ligand/co-solvent ternary complex.

摘要

目的

根据生物药剂学分类系统,水飞蓟宾(SLB)属于 II 类药物,具有较高的渗透性,但溶解度较差,这对任何给药系统的发展都有负面影响。本研究旨在通过共溶剂和络合现象的联合使用来提高 SLB 的溶解度。

方法

采用摇瓶法相溶解度分析,分别以乙醇和 2-羟丙基-β-环糊精(HP-β-CD)作为共溶剂和包合络合剂,进行溶解度研究。采用优化的药物释放介质,在双层扩散池中,对壳聚糖纳米粒中 SLB 的释放进行研究。

结果

通过采用最低浓度的乙醇和 HP-β-CD,对 SLB 溶解度进行了数学优化。SLB 溶解度随 HP-β-CD 浓度的增加呈线性增加。在 PBS-乙醇混合物中的溶解度遵循对数线性模型。采用遗传算法优化了乙醇共溶剂和 HP-β-CD 络合剂存在下的 SLB 溶解度,建议在磷酸盐缓冲盐水溶液中补充 6%v/v 乙醇和 8 mM HP-β-CD 作为优化介质。在 37°C 下静态条件下,研究了优化溶液中壳聚糖纳米粒(载药量为 4.5±0.2%)中 SLB 的释放情况。SLB 从粒子中的释放呈 S 型曲线,表明侵蚀和扩散机制共同控制着药物从纳米粒子中的释放。

结论

缓冲溶液中补充乙醇共溶剂和 HP-β-CD 络合剂后,SLB 的溶解度是半水介质中游离药物、药物-配体二元复合物和药物/配体/共溶剂三元复合物的函数。

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