Cheboyina Sreekhar, Wyandt Christy M
104A Faser Hall, Department of Pharmaceutics, School of Pharmacy, University of Mississippi, University, MS 38677, USA.
Int J Pharm. 2008 Jul 9;359(1-2):158-66. doi: 10.1016/j.ijpharm.2008.04.011. Epub 2008 Apr 12.
A novel freeze pelletization technique was evaluated for the preparation of wax-based matrix pellets. Pellets containing either theophylline or diltiazem HCl were prepared using various waxes. In this technique, molten waxes along with a dispersed active ingredient were introduced as droplets into an inert and immiscible column of liquid to form pellets. An 80% (w/w) aqueous glycerol solution was found to be the most suitable column liquid for preparing spherical wax pellets. The physical stability of the molten wax suspensions was substantially improved by the addition of a 5% (w/w) colloidal silica gel. Pellet size obtained was directly proportional to the cubic root of the outer radius of the needle tip used to form pellets. Pellet size increased as the ratio of interfacial tension (gamma(LL)) to the density difference (Deltarho) between the molten matrix and the column liquid increased. Moreover, an increase in the drug load of theophylline increased the pellet size. However, an addition of a surfactant to the matrix slightly decreased the pellet size. Microscopic studies indicated that theophylline was homogenously dispersed throughout the matrix and existed in a crystalline state at higher drug loads. The percent drug recoveries ranged from 90.7 to 102.3% with acceptable drug loads up to 20% (w/w). Therefore, wax pellets containing drugs of varying aqueous solubility were successfully prepared using this technique.
一种新型冷冻造粒技术被用于评估蜡基基质微丸的制备。使用各种蜡制备了含有茶碱或盐酸地尔硫䓬的微丸。在该技术中,将熔融蜡与分散的活性成分以液滴形式引入惰性且不混溶的液体柱中以形成微丸。发现80%(w/w)的甘油水溶液是制备球形蜡微丸最合适的柱液。通过添加5%(w/w)的胶体硅胶,熔融蜡悬浮液的物理稳定性得到显著提高。所获得的微丸尺寸与用于形成微丸的针尖外半径的立方根成正比。微丸尺寸随着熔融基质与柱液之间的界面张力(γ(LL))与密度差(Δρ)的比值增加而增大。此外,茶碱药物载量的增加会使微丸尺寸增大。然而,向基质中添加表面活性剂会使微丸尺寸略有减小。显微镜研究表明,茶碱在整个基质中均匀分散,并且在较高药物载量下以结晶状态存在。药物回收率在90.7%至102.3%之间,药物载量可达20%(w/w)时仍可接受。因此,使用该技术成功制备了含有不同水溶性药物的蜡微丸。