Department of Pharmacy, School of Pharmaceutical Sciences, University of São Paulo (USP), São Paulo 05508-000, SP, Brazil.
Center for Natural Sciences and Humanities (CCNH), Federal University of ABC (UFABC), Santo André 09210580, SP, Brazil.
Int J Pharm. 2022 Feb 25;614:121456. doi: 10.1016/j.ijpharm.2022.121456. Epub 2022 Jan 10.
The FDA-approved anthelmintic flubendazole has shown potential to be repositioned to treat cancer and dry macular degeneration; however, its poor water solubility limits its use. Amorphous solid dispersions may overcome this challenge, but the balance of excipients may impact the preparation method and drug release. The purpose of this study was to evaluate the influence of adjuvants and drug loading on the development of an amorphous solid dispersion of flubendazole-copovidone by hot-melt extrusion. The drug, copovidone, and adjuvants (magnesium stearate and hydroxypropyl cellulose) mixtures were statistically designed, and the process was performed in a twin-screw extruder. The study showed that flubendazole and copovidone mixtures were highly extrudable, except when drug loading was high (>40%). Furthermore, magnesium stearate positively impacted the extrusion and was more effective than hydroxypropyl cellulose. The extruded materials were evaluated by modulated differential scanning calorimetry and X-ray powder diffraction, obtaining positive amorphization and physical stability results. Pair distribution function analysis indicated the presence of drug-rich domains with medium-range order structure and no evidence of polymer-drug interaction. All extrudates presented faster dissolution (HCl, pH 1.2) than pure flubendazole, and both adjuvants had a notable influence on the dissolution rate. In conclusion, hot-melt extrusion may be a viable option to obtain stable flubendazole:copovidone amorphous dispersions.
美国食品和药物管理局批准的驱虫药氟苯达唑具有重新定位治疗癌症和干性黄斑变性的潜力;然而,其较差的水溶性限制了其应用。无定形固体分散体可以克服这一挑战,但赋形剂的平衡可能会影响制剂方法和药物释放。本研究旨在评估赋形剂和载药量对热熔挤出氟苯达唑-共聚维酮无定形固体分散体的影响。药物、共聚维酮和赋形剂(硬脂酸镁和羟丙纤维素)混合物采用统计设计,并在双螺杆挤出机中进行加工。研究表明,除载药量较高(>40%)外,氟苯达唑和共聚维酮混合物具有高度可挤出性。此外,硬脂酸镁对挤出具有积极影响,效果优于羟丙纤维素。通过调制差示扫描量热法和 X 射线粉末衍射对挤出材料进行了评估,得到了积极的非晶化和物理稳定性结果。配对分布函数分析表明存在具有中程有序结构的药物富域,并且没有聚合物-药物相互作用的证据。所有挤出物在 HCl(pH 1.2)中的溶解速度都比纯氟苯达唑快,两种赋形剂对溶解速率都有显著影响。总之,热熔挤出可能是获得稳定的氟苯达唑:共聚维酮无定形分散体的可行选择。