Government College of Pharmacy, Aurangabad, Maharashtra, India.
Drug Dev Ind Pharm. 2013 Jan;39(1):138-45. doi: 10.3109/03639045.2012.660951. Epub 2012 Feb 28.
Pellets, reliant on pH-sensitivity and time-dependency for drug delivery, provide one of the most versatile opportunities for targeting colon. 5-Fluorouracil (5-FU) loaded pellets were prepared by extrusion-spheronization using Avicel(®) PH101 as a spheronization aid and hydroxypropylmethylcellulose K4M (HPMC K4M) solution as a binder. A 3(2) full factorial design was employed to optimize spheronization speed and time. Obtained pellets were evaluated for flow properties, pellet size, roundness and aspect ratio. Optimized batch was coated in a bottom-spray fluidized bed processor (FBP) with an inner coat of sustained release polymer Eudragit NE30D and an outer coat of pH-sensitive polymer Eudragit FS30D. The coating levels were statistically optimized and in vitro drug release was monitored by changing pH media method. Optimized system with 15% inner and outer coating levels revealed t(50%) (time required for 50% drug release) to be about 9 h while almost complete drug was released in 24 h (98.71 ± 1.33%) with highest dissolution efficiency (DE(24h)) of 58.71%. The optimization model was validated; the predicted and experimental/actual values for validation batch (M1) were in close tolerance and the standard error (SE) was also small. Drug release was also studied at pH 7.4. Scanning electron microscopy (SEM) demonstrated average coating thickness to be 32.50 ± 3.0 µm. Hence, the present study provides constructive results for colon targeting of 5-FU pellets with industrially feasible processes.
微丸依赖于 pH 值敏感性和时间依赖性来进行药物传递,为靶向结肠提供了最广泛的机会之一。使用 Avicel(®) PH101 作为球形化助剂和羟丙基甲基纤维素 K4M(HPMC K4M)溶液作为粘合剂,通过挤出-球形化法制备 5-氟尿嘧啶(5-FU)载药微丸。采用 3(2)完全析因设计优化球形化速度和时间。对获得的微丸进行流动特性、微丸粒径、圆整度和纵横比进行评价。优化批次在底部喷雾流化床处理器(FBP)中进行包衣,内涂层为缓释聚合物 Eudragit NE30D,外涂层为 pH 敏感聚合物 Eudragit FS30D。通过改变 pH 介质法监测体外药物释放,对包衣水平进行统计学优化。优化系统的内涂层和外涂层水平分别为 15%,显示 t(50%)(达到 50%药物释放所需的时间)约为 9 小时,而在 24 小时内几乎完全释放药物(98.71 ± 1.33%),最高溶解效率(DE(24h))为 58.71%。对优化模型进行验证;验证批次(M1)的预测值和实验/实际值接近公差,标准误差(SE)也较小。在 pH 7.4 下也研究了药物释放。扫描电子显微镜(SEM)显示平均涂层厚度为 32.50 ± 3.0 µm。因此,本研究为具有工业可行性的 5-FU 微丸结肠靶向提供了建设性的结果。