University of Ljubljana, Faculty of Pharmacy, 1000 Ljubljana, Aškerčeva 7, Slovenia.
University of Ljubljana, Faculty of Pharmacy, 1000 Ljubljana, Aškerčeva 7, Slovenia.
Int J Pharm. 2021 Jun 15;603:120700. doi: 10.1016/j.ijpharm.2021.120700. Epub 2021 May 12.
Polymer nanofibers represent a promising delivery system for poorly water-soluble drugs; however, their supersaturating potential has not been explored yet. Here, carvedilol-loaded nanofibers based on poly(ethyleneoxide) and on amphiphilic block copolymer poloxamer 407 were produced by electrospinning. These nanofibers provided high carvedilol loading and improved dissolution of carvedilol. Their dissolution resulted in a supersaturated system that was not stable, and thus to avoid carvedilol precipitation, hydroxypropyl methylcelluloses or polyvinyl caprolactam-polyvinyl acetate-polyethylene glycol graft copolymer (Soluplus) were additionally incorporated into the nanofibers. The morphology of the electrospun product was not affected by incorporation of carvedilol and the polymer precipitation inhibitors, as shown by scanning electron microscopy. The hydroxypropyl methylcelluloses were not effective polymer precipitation inhibitors for carvedilol. Incorporation of Soluplus significantly extended the duration of carvedilol supersaturation (>24 h) compared to the dissolution of nanofibers without Soluplus. Moreover, after 1 h of dissolution, incorporation of Soluplus into the nanofibers provided significantly higher carvedilol concentration (94.4 ± 2.5 μg/mL) compared to the nanofibers without Soluplus (32.7 ± 5.8 μg/mL), the polymer film (24.0 ± 2.2 μg/mL), and the physical mixture (3.3 ± 0.4 μg/mL). Thus, this study shows the great potential for hydrophilic nanofibers as a delivery system for sustained carvedilol supersaturation.
聚合物纳米纤维是一种很有前途的难溶性药物传递系统;然而,它们的过饱和潜力尚未被探索。在此,通过静电纺丝制备了载有卡维地洛的基于聚环氧乙烷和两亲嵌段共聚物泊洛沙姆 407 的纳米纤维。这些纳米纤维提供了高的卡维地洛载药量并改善了卡维地洛的溶解。它们的溶解导致了一个不稳定的过饱和系统,因此为了避免卡维地洛沉淀,羟丙基甲基纤维素或聚乙烯基己内酰胺-聚醋酸乙烯酯-聚乙二醇接枝共聚物(Soluplus)被额外地加入到纳米纤维中。扫描电子显微镜表明,掺入卡维地洛和聚合物沉淀抑制剂并没有影响电纺产物的形态。羟丙基甲基纤维素对卡维地洛不是有效的聚合物沉淀抑制剂。与不含 Soluplus 的纳米纤维的溶解相比,Soluplus 的加入显著延长了卡维地洛过饱和的持续时间(>24 小时)。此外,在 1 小时的溶解后,与不含 Soluplus 的纳米纤维(32.7 ± 5.8 μg/mL)、聚合物薄膜(24.0 ± 2.2 μg/mL)和物理混合物(3.3 ± 0.4 μg/mL)相比,Soluplus 的加入到纳米纤维中提供了显著更高的卡维地洛浓度(94.4 ± 2.5 μg/mL)。因此,这项研究表明了亲水纳米纤维作为持续卡维地洛过饱和的传递系统的巨大潜力。