Budapest University of Technology and Economics, Department of Organic Chemistry and Technology, Hungary.
Budapest University of Technology and Economics, Department of Organic Chemistry and Technology, Hungary.
Int J Pharm. 2015 Mar 1;480(1-2):137-42. doi: 10.1016/j.ijpharm.2015.01.025. Epub 2015 Jan 14.
High speed electrospinning (HSES), compatible with pharmaceutical industry, was used to demonstrate the viability of the preparation of drug-loaded polymer nanofibers with radically higher productivity than the known single-needle electrospinning (SNES) setup. Poorly water-soluble itraconazole (ITRA) was formulated with PVPVA64 matrix polymer using four different solvent-based methods such as HSES, SNES, spray drying (SD) and film casting (FC). The formulations were assessed in terms of improvement in the dissolution rate of ITRA (using a "tapped basket" dissolution configuration) and analysed by SEM, DSC and XRPD. Despite the significantly increased productivity of HSES, the obtained morphology was very similar to the SNES nanofibrous material. ITRA transformed into an amorphous form, according to the DSC and XRPD results, in most cases except the FC samples. The limited dissolution of crystalline ITRA could be highly improved: fast dissolution occurred (>90% within 10min) in the cases of both (the scaled-up and the single-needle) types of electrospun fibers, while the improvement in the dissolution rate of the spray-dried microspheres was significantly lower. Production of amorphous solid dispersions (ASDs) with the HSES system proved to be flexibly scalable and easy to integrate into a continuous pharmaceutical manufacturing line, which opens new routes for the development of industrially relevant nanopharmaceuticals.
高速静电纺丝(HSES)与制药工业兼容,用于展示制备载药聚合物纳米纤维的可行性,其生产率比已知的单针静电纺丝(SNES)装置高得多。将疏水性的伊曲康唑(ITRA)与 PVPVA64 基质聚合物通过四种不同的溶剂法,如 HSES、SNES、喷雾干燥(SD)和薄膜铸造(FC)进行配方。通过“敲击篮”溶解配置评估 ITRA 溶解速率的提高,并通过 SEM、DSC 和 XRPD 进行分析。尽管 HSES 的生产率显著提高,但获得的形态与 SNES 纳米纤维材料非常相似。根据 DSC 和 XRPD 的结果,除了 FC 样品外,大多数情况下 ITRA 都转化为无定形形式。结晶 ITRA 的有限溶解可以得到极大改善:在(规模化和单针)两种类型的静电纺丝纤维的情况下,快速溶解(在 10 分钟内超过 90%),而喷雾干燥微球的溶解速率的提高则显著降低。通过 HSES 系统生产无定形固体分散体(ASD)证明具有灵活性和可扩展性,并且易于集成到连续制药生产线上,为开发具有工业相关性的纳米药物开辟了新途径。