University Institute of Pharmaceutical Sciences, UGC Centre of Advanced Study, Panjab University, Chandigarh, India.
Drug Dev Ind Pharm. 2013 Feb;39(2):342-51. doi: 10.3109/03639045.2012.681382. Epub 2012 May 4.
The poor solubility of itraconazole (ITR) results in its variable oral absorption and bioavailability and has also proven to be a major setback in developing an efficient oral delivery system. To improve its solubility and dissolution profile, itraconazolium dinitrate salt (ITRDNT) was prepared and characterized using various spectral and thermal techniques. The morphology of the salt was studied using optical and scanning electron microscopy (SEM). Broth microdilution assay demonstrated antifungal efficacy of ITRDNT similar to ITR against four different fungal strains namely, Asparagillus fumigatus, Microsporum canis, Microsporum gypsum and Trichophyton rubrum. The salt exhibited better solubility profile than ITR in water and a number of pharmaceutical solvents. Dissolution studies revealed the total amount of drug released from ITRDNT in 3 h was four times greater than that of ITR. To further improve dissolution characteristics, the physical mixtures of ITR and ITRDNT with two cyclodextrins, β-cyclodextrin (β-CD) and HP-β-cyclodextrin (HP-β-CD) were prepared and their molar ratios were optimized. It was observed that about 75% of drug was released in 30 min from 1:3 molar ratio of ITRDNT and HP-β-CD physical mixture, which was distinctly higher than ITR commercial capsules (70%). Owing to its facile and economical preparation and substantially better in vitro release profile, the ITRDNT and its CD physical mixtures could be better and cost effective alternatives to ITR and commercial ITR capsules.
伊曲康唑(ITR)的溶解度较差,导致其口服吸收和生物利用度不稳定,这也成为开发高效口服给药系统的主要障碍。为了提高其溶解度和溶解特性,制备了伊曲康唑硝酸盐(ITRDNT)盐,并使用各种光谱和热技术对其进行了表征。使用光学和扫描电子显微镜(SEM)研究了盐的形态。肉汤微量稀释法测定结果表明,ITRDNT 盐对四种不同真菌菌株(烟曲霉、犬小孢子菌、石膏样小孢子菌和红色毛癣菌)的抗真菌功效与 ITR 相似。该盐在水中和多种药用溶剂中的溶解度特性优于 ITR。溶解研究表明,ITRDNT 在 3 小时内释放的药物总量是 ITR 的四倍。为了进一步改善溶解特性,将 ITR 和 ITRDNT 与两种环糊精(β-环糊精(β-CD)和 HP-β-环糊精(HP-β-CD)制成物理混合物,并优化了它们的摩尔比。观察到,在 1:3 摩尔比的 ITRDNT 和 HP-β-CD 物理混合物中,约有 75%的药物在 30 分钟内释放,明显高于 ITR 商业胶囊(70%)。由于其制备简便、经济,体外释放特性明显改善,因此 ITRDNT 及其 CD 物理混合物可能是 ITR 和商业 ITR 胶囊的更好、更具成本效益的替代品。