Trasi Niraj S, Bhujbal Sonal V, Zemlyanov Dmitry Y, Zhou Qi Tony, Taylor Lynne S
Department of Industrial and Physical Pharmacy, College of Pharmacy, Purdue University, West Lafayette, Indiana 47907, USA.
Birck Nanotechnology Center, Purdue University, West Lafayette, Indiana 47907, USA.
Int J Pharm X. 2020 Jul 16;2:100052. doi: 10.1016/j.ijpx.2020.100052. eCollection 2020 Dec.
Amorphous solid dispersions (ASDs) of lumefantrine, which has low aqueous solubility, have been shown to improve bioavailability relative to crystalline formulations. Herein, the crystallization tendency and release properties of a variety of lumefantrine ASD granules, formed on a blend of microcrystalline cellulose and anhydrous lactose, prepared using a simple solvent evaporation method, were evaluated. Several polymers, a majority of which contained acidic moieties, and different drug loadings were assessed. Crystallinity as a function of time following exposure to stress storage conditions of 40 °C and 75% relative humidity was monitored for the various dispersions. Release testing was performed and ASD characteristics were further evaluated using infrared and X-ray photoelectron spectroscopy (XPS). A large difference in stability to crystallization was observed between the various ASDs, most notably depending on polymer chemistry. This could be largely rationalized based on the extent of drug-polymer interactions, specifically the degree of lumefantrine-polymer salt formation, which could be readily assessed with XPS spectroscopy. Lumefantrine release from the ASDs also varied considerably, whereby the best polymer for promoting physical stability did not lead to the highest extent of drug release. Several formulations led to concentrations above the amorphous solubility of lumefantrine, with the formation of nano-sized drug-rich aggregates. A balance between the ability of a given polymer to promote physical stability and drug release may need to be sought.
蒿甲醚的水溶性较低,其无定形固体分散体(ASD)已被证明相对于结晶制剂可提高生物利用度。在此,评估了使用简单溶剂蒸发法在微晶纤维素和无水乳糖混合物上形成的多种蒿甲醚ASD颗粒的结晶趋势和释放特性。评估了几种聚合物,其中大多数含有酸性基团以及不同的药物载量。监测了各种分散体在40°C和75%相对湿度的加速储存条件下随时间变化的结晶度。进行了释放测试,并使用红外光谱和X射线光电子能谱(XPS)进一步评估了ASD的特性。在各种ASD之间观察到结晶稳定性存在很大差异,最显著的是取决于聚合物化学性质。这在很大程度上可以根据药物-聚合物相互作用的程度,特别是蒿甲醚-聚合物盐形成的程度来解释,这可以通过XPS光谱轻松评估。蒿甲醚从ASD中的释放也有很大差异,因此促进物理稳定性的最佳聚合物并未导致最高程度的药物释放。几种制剂导致的浓度高于蒿甲醚的无定形溶解度,并形成了纳米级富含药物的聚集体。可能需要在给定聚合物促进物理稳定性和药物释放的能力之间寻求平衡。