Galenika a.d., R & D Institute, Belgrade, Serbia.
Drug Dev Ind Pharm. 2013 Jul;39(7):1020-7. doi: 10.3109/03639045.2012.694890. Epub 2012 Jun 8.
Solid dispersion systems have been widely used to enhance dissolution rate and oral bioavailability of poorly water-soluble drugs. However, the formulation process development and scale-up present a number of difficulties which has greatly limited their commercial applications. In this study, solid dispersions (SDs) of desloratadine (DSL) with povidone (PVP) and crospovidone (cPVP) were prepared by spray coating technique. The process involved the spray application of 96% ethanol solution of DSL and PVP/cPVP, and subsequent deposition of the coprecipitates onto microcrystalline cellulose pellets during drying by air flow in a mini spray coater. The results from the present study demonstrated that the spray coating process is efficient in preparing SDs with enhanced drug dissolution rate and it is highly efficient in organic solvent removal. Both PVP and cPVP greatly improved drug dissolution rate by SDs, with PVP showing better solubilization capability. Very fast drug dissolution rate is achieved from SDs containing PVP regardless of differences in K grade. SD with smaller particles of cPVP have higher drug dissolution rate in comparison to the cPVP with larger particles. Results from physical state characterization indicate that DSL in SDs exist in the amorphous (high free-energy) state which is probably stabilized by PVP/cPVP. After 6-month accelerated stability study, DSL remains amorphous, while PVP and cPVP act as anti-plasticizing agents, offering efficient steric hindrance for nucleation and crystal growth.
固体分散体系统已广泛用于提高难溶性药物的溶解速率和口服生物利用度。然而,制剂工艺的开发和放大存在许多困难,这极大地限制了它们的商业应用。在这项研究中,通过喷雾包衣技术制备了地氯雷他定(DSL)与聚乙烯吡咯烷酮(PVP)和交联聚维酮(cPVP)的固体分散体(SD)。该过程涉及将 DSL 和 PVP/cPVP 的 96%乙醇溶液喷雾涂覆,并在微型喷雾包衣机中通过空气流在干燥过程中将共沉淀物沉积到微晶纤维素丸上。本研究结果表明,喷雾包衣工艺在制备具有增强药物溶解速率的 SD 方面非常有效,并且在去除有机溶剂方面效率很高。PVP 和 cPVP 都通过 SD 大大提高了药物的溶解速率,其中 PVP 具有更好的溶解能力。无论 PVP 的 K 级差异如何,含有 PVP 的 SD 都能实现非常快速的药物溶解速率。与具有较大颗粒的 cPVP 相比,具有较小 cPVP 颗粒的 SD 具有更高的药物溶解速率。物理状态表征的结果表明,SD 中的 DSL 以无定形(高自由能)状态存在,这可能是由 PVP/cPVP 稳定的。经过 6 个月的加速稳定性研究,DSL 仍保持无定形,而 PVP 和 cPVP 作为抗塑化剂,为成核和晶体生长提供有效的空间位阻。