Lee Yeongbin, Thapa Prakash, Jeong Seong Hoon, Woo Mi Hee, Choi Du Hyung
Department of Pharmaceutical Engineering, Inje University.
Chem Pharm Bull (Tokyo). 2017 Feb 1;65(2):166-177. doi: 10.1248/cpb.c16-00757. Epub 2016 Nov 30.
Even though experimental designs are becoming popular especially for conventional dosage forms, limited studies have been performed to optimize formulations of orally disintegrating films (ODFs). This study aimed to evaluate sildenafil citrate-loaded ODFs for a controlled release with hydroxypropyl methylcellulose as a film-forming polymer. A factorial design was utilized for optimization with three control factors: ethanol ratio, plasticizer ratio, and the type of plasticizer. Tensile strength, disintegration time, water contact angle, and thickness were chosen as responses. For optimization, water contact angle, disintegration time, and thickness were minimized, while the tensile strength was maximized. Based on the conditions, optimal formulations were achieved for each type of plasticizer. Evaluation of desirability indicated that the response values were close to the target. When these optimal formulations were validated, the optimal solutions and target values were similar with small biases. The formulations were characterized using scanning electron microscopy, differential scanning calorimetry, Fourier transform infrared spectroscopy, surface pH, in vitro dissolution, and drug release simulation with a mathematical modeling. After the drug was homogenously dispersed throughout the film, the crystalline form of the drug provided strong hydrogen bonds between the drug and the film components. Moreover, it showed a controlled drug release profiles that were well matched with simulated results. This study suggests that the optimized films may present a better alternative to conventional tablets for the treatment of male erectile dysfunction.
尽管实验设计尤其在传统剂型方面正变得流行,但针对口腔崩解膜(ODF)制剂优化的研究却很有限。本研究旨在评估以羟丙基甲基纤维素为成膜聚合物的载枸橼酸西地那非口腔崩解膜的控释性能。采用析因设计进行优化,有三个控制因素:乙醇比例、增塑剂比例和增塑剂类型。选择拉伸强度、崩解时间、水接触角和厚度作为响应指标。为了优化,使水接触角、崩解时间和厚度最小化,同时使拉伸强度最大化。基于这些条件,针对每种增塑剂类型都获得了最佳配方。合意性评估表明响应值接近目标值。当对这些最佳配方进行验证时,最佳解决方案与目标值相似,偏差较小。使用扫描电子显微镜、差示扫描量热法、傅里叶变换红外光谱、表面pH值、体外溶出度以及用数学模型进行药物释放模拟对配方进行了表征。药物在整个膜中均匀分散后,药物的晶型在药物与膜成分之间提供了强大的氢键。此外,它显示出与模拟结果良好匹配的控释曲线。本研究表明,优化后的膜对于治疗男性勃起功能障碍可能是传统片剂的更好替代品。