Inoue Daisuke, Yamashita Ayari, To Hideto
Department of Medical Pharmaceutics, School of Pharmacy and Pharmaceutical Sciences, University of Toyama, 2630 Sugitani, Toyama 930-0194, Japan.
Molecular Pharmaceutics Laboratory, College of Pharmaceutical Sciences, Ritsumeikan University, 1-1-1 Noji-higashi, Kusatsu 525-8577, Japan.
Polymers (Basel). 2022 Jul 21;14(14):2954. doi: 10.3390/polym14142954.
Intranasal drug applications show significant therapeutic potential for diverse pharmaceutical modalities. Because the formulation applied to the nasal cavity is discharged to the pharyngeal side by mucociliary clearance, the formulation should be dissolved effectively in a limited amount of mucus within its retention time in the nasal cavity. In this study, to develop novel formulations with improved dissolution behavior and compatibility with the intranasal environment, a thin-film formulation including drug and polymer was prepared using a vacuum-drying method. The poorly water-soluble drugs ketoprofen, flurbiprofen, ibuprofen, and loxoprofen were dissolved in a solvent comprising water and methanol, and evaporated to obtain a thin film. Physical analyses using differential scanning calorimetry (DSC), powder X-ray diffraction analysis (PXRD), and scanning electron microscopy SEM revealed that the formulations were amorphized in the film. The dissolution behavior of the drugs was investigated using an in vitro evaluation system that mimicked the intranasal physiological environment. The amorphization of drugs formulated with polymers into thin films using the vacuum-drying method improved the dissolution rate in artificial nasal fluid. Therefore, the thin film developed in this study can be safely and effectively used for intranasal drug application.
鼻内给药显示出多种药物剂型的显著治疗潜力。由于应用于鼻腔的制剂会通过黏液纤毛清除作用排向咽部一侧,因此该制剂应在其于鼻腔内的保留时间内有效地溶解于有限量的黏液中。在本研究中,为开发具有改善的溶解行为且与鼻内环境相容的新型制剂,采用真空干燥法制备了包含药物和聚合物的薄膜制剂。将难溶性药物酮洛芬、氟比洛芬、布洛芬和洛索洛芬溶解于由水和甲醇组成的溶剂中,然后蒸发以获得薄膜。使用差示扫描量热法(DSC)、粉末X射线衍射分析(PXRD)和扫描电子显微镜(SEM)进行的物理分析表明,制剂在薄膜中呈无定形状态。使用模拟鼻内生理环境的体外评估系统研究了药物的溶解行为。采用真空干燥法将药物与聚合物制成薄膜的无定形化提高了在人工鼻液中的溶解速率。因此,本研究中开发的薄膜可安全有效地用于鼻内给药。