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伊曲康唑与β-环糊精在超临界二氧化碳作用下的相溶解度及包合物

Phase solubility and inclusion complex of itraconazole with beta-cyclodextrin using supercritical carbon dioxide.

作者信息

Al-Marzouqi Ali H, Shehatta Ibrahim, Jobe Baboucarr, Dowaidar Ali

机构信息

Department of Chemical & Petroleum Engineering, UAE. University, Al-Ain, United Arab Emirates.

出版信息

J Pharm Sci. 2006 Feb;95(2):292-304. doi: 10.1002/jps.20535.

Abstract

Phase-solubility techniques were used to assess the formation of inclusion complex between itraconazole and beta-cyclodextrin. The stability constant and free energies of transfer of itraconazole from aqueous solution to the cavity of beta-cyclodextrin were calculated. Itraconazole solubility in supercritical carbon dioxide (SC CO(2)) was measured at different temperatures and pressures. Drug formulations of itraconazole were prepared by complexation of the drug into beta-cyclodextrin using SC CO(2). Effects of temperature and pressure on inclusion yield of the prepared complexes were studied. The solvent-free inclusion complexes obtained from this method were characterized by UV spectroscopy, differential scanning calorimetry, powder X-ray diffraction, and scanning electron microscopy and compared to those obtained from physical mixing and coprecipitation methods. Results showed that beta-cyclodextrin significantly improved solubility of itraconazole in aqueous solutions. The free energies of transfer of itraconazole from aqueous solution to the cavity of beta-cyclodextrin increased negatively with increasing beta-cyclodextrin concentration. Higher inclusion yields were obtained in the SC CO(2) method compared to physical mixing and coprecipitation methods. Both temperature and pressure had significant effects on itraconazole solubility in SC CO(2) and the inclusion yield of the complex prepared by SC CO(2) method.

摘要

采用相溶解度技术评估伊曲康唑与β-环糊精之间包合物的形成。计算了伊曲康唑从水溶液转移至β-环糊精空腔的稳定常数和转移自由能。在不同温度和压力下测定了伊曲康唑在超临界二氧化碳(SC CO₂)中的溶解度。通过使用SC CO₂将药物与β-环糊精络合制备伊曲康唑药物制剂。研究了温度和压力对所制备络合物包合产率的影响。通过紫外光谱、差示扫描量热法、粉末X射线衍射和扫描电子显微镜对该方法获得的无溶剂包合物进行表征,并与通过物理混合和共沉淀法获得的包合物进行比较。结果表明,β-环糊精显著提高了伊曲康唑在水溶液中的溶解度。随着β-环糊精浓度的增加,伊曲康唑从水溶液转移至β-环糊精空腔的转移自由能呈负增加。与物理混合和共沉淀法相比,SC CO₂法获得的包合产率更高。温度和压力对伊曲康唑在SC CO₂中的溶解度以及SC CO₂法制备的络合物的包合产率均有显著影响。

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